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strangemusictriumph · 2 years
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Frozen Food Market - Forecast (2022 - 2027)
Frozen Food market Overview:
According to the Food and Agriculture Organization of United Nations, nearly one third of the food produced every year amounting to roughly $680 billion (approximately 1.3 billion tons) gets either wasted, or lost[1]
.  The issue of food wastage has given birth to the frozen food market which is experiencing a colossal growth with an increase in disposable income, and accentuated refrigeration technology. According to the analyst at Industry ARC, the global frozen food market size in 2018 stood between $225 billion to $228 billion. The market is estimated to grow steadily with a normal CAGR of 3.5%-5% during the forecast period of 2019-2025. Geographically, Europe led the frozen food market with a regional share of 30%-32% in 2018 owing to an increase in mergers and acquisitions between vendors and hypermarkets. On-the-go consumption of food is also driving the European frozen food market. 
Frozen Food Market Outlook: 
The prospect for frozen food market has never seemed brighter. With a growing awareness in food trends, consumers are resorting to cooking fresh meals at home which are free from any preservatives. For this, they require frozen foods which come in extensive categories these days, some of which are dairy-free, vegan, gluten-free, sugar-free, low fat, etc. Availability of high quality frozen foods makes market growth easier, and less prone to negative fluctuation. Recent trends in technology have introduced cryogenic freezing which prevents addition of any artificial preservatives, while maintaining negligible growth of microorganisms at the same time. Ready meals, a key segment of the frozen food market, is expected to grow at a standard CAGR of 2.5%-4%. It is a convenient, and accessible option for the working class society which is perpetually busy, and consistently short on time. 
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Frozen Food Market Growth Drivers:
An Increasing Demand for Preservative Free Food
With an increase in organic produce demand, consumers are incessantly on the lookout for fresh vegetables, seafood, and fruits that do not have a short shelf life. Since most of the organic produce expires quickly, hypermarkets are resorting to freezing of frozen foods which customers are interested in buying. Cryogenic freezing of food items extends their shelf lives, and makes them free from any added preservatives. Consumers flock towards these products, and help frozen food market in attaining noticeable growth.
The Shopping Trends of Millennials
Contrary to popular beliefs on millennials being irresponsible buyers, frozen food market heavily relies on their purchasing trends. Millennials are ready to experiment, and invest on novel things unlike the generation before them. They also tend to buy products that preserve their time, and are easy to handle. These traits fuel the market growth of frozen foods as they are convenient, and ready to use, exactly how millennials might prefer. This generation, which drowns in student debts, and underpaying jobs relies majorly on the frozen food market for their nutritional needs.  
Frozen Food Market Challenges: 
One of the basic challenges faced by the frozen food market is the lack of a proper supply chain system, and the consistent fear of cold chain systems failing. Since frozen foods require a set optimum temperature around -18°C, even the slightest failure in cold chain system can result in massive wastage. A thoroughly functioning power backup, and consistent vigilance is required for assuring negligible frozen food loss. 
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Frozen Food Market Key Players Perspective:
According to the analyst at IndustryArc, some of the key players in the frozen food market are Nestle SA, Unilever, Kellogg Company , General Mills Inc, Conagra Brands, Inc., Grupo Bimbo S.A.B. de C.V., McCain Foods Limited , Kraft Heinz Company, and Associated British. 
In 2018, after recognizing the frozen food preference patterns of millennials, and losing out to rivals like LeanMeals, Nestle increased production in its US factories, and introduced a plethora of items in its lineup like frozen coconut chickpea curry, and sweet earth lover’s veggie pizza[2]
 Frozen Food Market Trends:
Improved Supply Chain Management
In order to make sure that the frozen food market continues to grow, and is not obstructed by food wastage, companies are employing an ameliorated supply chain management system. Reefer trucks are being used to consistently maintain an optimum environment for frozen foods to stay fresh. These trucks are now being fitted with third party GPS technologies for timely deliveries. This being a primary market disruption, is driving the growth of frozen food market in a positive direction. 
The Rise Of IQF Food
IQF stands for ‘individually quick frozen’ which implies that all the items in a frozen food packet are frozen individually, and not as a block. The method involves passing of every individual piece of food through a blast chiller on a conveyor belt. This assures freshness in the food items even after thawing. An amount of peas for example, if frozen using IQF technique and packed in a carton, lidded tray, or crystallized PET tray will sell faster owing to its freshness as compared to the one frozen using ordinary refrigerant technique. 
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Frozen Food Market Research Scope:
The base year of the study is 2018, with forecast done up to 2025. The study presents a thorough analysis of the competitive landscape, taking into account the market shares of the leading companies. It also provides information on unit shipments. These provide the key market participants with the necessary business intelligence and help them understand the future of the frozen food market. The assessment includes the forecast, an overview of the competitive structure, the market shares of the competitors, as well as the market trends, market demands, market drivers, market challenges, and product analysis. The market drivers and restraints have been assessed to fathom their impact over the forecast period. This report further identifies the key opportunities for growth while also detailing the key challenges and possible threats. The key areas of focus include the types of cheese in the frozen food market, and their specific applications in different areas.
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Frozen Food market Report: Industry Coverage
Frozen food market can be segmented on the basis of type, and distribution channels. Based on distribution channels, the market can be divided into supermarkets, hypermarkets, online stores, and convenience stores. On the basis of type, the market can be bifurcated into ready to eat meals, seafood, vegetables, fruits, etc. 
The frozen food market report also analyzes the major geographic regions for the market as well as the major countries for the market in these regions. The regions and countries covered in the study include:
North America: The U.S., Canada, Mexico
South America: Brazil, Venezuela, Argentina, Ecuador, Peru, Colombia, Costa Rica
Europe: The U.K., Germany, Italy, France, The Netherlands, Belgium, Spain, Denmark
APAC: China, Japan, Australia, South Korea, India, Taiwan, Malaysia, Hong Kong
Middle East and Africa: Israel, South Africa, Saudi Arabia
For more Food and Beverage Market related reports, please click here
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globalgrowthinsights · 2 months
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Gluten Free Food Market 2024: Emerging Trends, Major Driving Factors, Business Growth Opportunities
Gluten Free Food Market provides in-depth analysis of the market state of Gluten Free Food manufacturers, including best facts and figures, overview, definition, SWOT analysis, expert opinions, and the most current global developments. The research also calculates market size, price, revenue, cost structure, gross margin, sales, and market share, as well as forecasts and growth rates. The report assists in determining the revenue earned by the selling of this report and technology across different application areas.
Geographically, this report is segmented into several key regions, with sales, revenue, market share and growth Rate of Gluten Free Food in these regions till the forecast period
North America
Middle East and Africa
Asia-Pacific
South America
Europe
Key Attentions of Gluten Free Food Market Report:
The report offers a comprehensive and broad perspective on the global Gluten Free Food Market.
The market statistics represented in different Gluten Free Food segments offers complete industry picture.
Market growth drivers, challenges affecting the development of Gluten Free Food are analyzed in detail.
The report will help in the analysis of major competitive market scenario, market dynamics of Gluten Free Food.
Major stakeholders, key companies Gluten Free Food, investment feasibility and new market entrants study is offered.
Development scope of Gluten Free Food in each market segment is covered in this report. The macro and micro-economic factors affecting the Gluten Free Food Market
Advancement is elaborated in this report. The upstream and downstream components of Gluten Free Food and a comprehensive value chain are explained.
Browse More Details On This Report at @https://www.globalgrowthinsights.com/market-reports/gluten-free-food-market-100550
 Global Growth Insights
Web: https://www.globalgrowthinsights.com
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businessindustry · 2 months
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Liquefied Natural Gas (LNG) Liquefaction Equipment Market Analysis & Forecasts 2024-2032
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The Reports and Insights, a leading market research company, has recently releases report titled “Liquefied Natural Gas (LNG) Liquefaction Equipment Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Liquefied Natural Gas (LNG) Liquefaction Equipment Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Liquefied Natural Gas (LNG) Liquefaction Equipment Market?
The Liquefied Natural Gas (LNG) liquefaction equipment market size reached US$ 811.2 Million in 2023. Looking forward, Reports and Insights expects the market to reach US$ 1,226.5 Million by 2032, exhibiting a growth rate (CAGR) of 4.7% during 2024-2032.
What are Liquefied Natural Gas (LNG) Liquefaction Equipment?                                                                                                                                                                            
Liquefied Natural Gas (LNG) liquefaction equipment is utilized to convert natural gas into its liquid state for more convenient transportation and storage. This process involves lowering the temperature of the gas to -162 degrees Celsius, causing it to condense into a clear, colorless, and non-toxic liquid. The primary components of LNG liquefaction equipment include compressors, heat exchangers, and cryogenic storage tanks. Compressors elevate the gas pressure before it enters the heat exchangers, where it is cooled using refrigerants. Once cooled, the gas is stored in cryogenic tanks until it is ready for shipment. This equipment is engineered to function efficiently under extremely low temperatures and high pressures, ensuring the safe and dependable production of LNG.
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What are the growth prospects and trends in the Liquefied Natural Gas (LNG) Liquefaction Equipment industry?
The liquefied natural gas (LNG) liquefaction equipment market growth is driven by various factors. The market for Liquefied Natural Gas (LNG) liquefaction equipment is experiencing notable expansion due to the increasing global demand for natural gas as a cleaner energy alternative. This growth is marked by the continual development of more advanced and efficient liquefaction technologies to meet the rising need for LNG. Key drivers include the ongoing expansion of LNG infrastructure, particularly in emerging markets, and the growing adoption of LNG as a fuel in various industries including transportation. Moreover, innovations in liquefaction equipment design, such as modular and space-saving units, are improving operational efficiency and reducing upfront costs. However, challenges such as high initial investments and stringent regulatory standards may pose obstacles to market growth. Hence, all these factors contribute to liquefied natural gas (LNG) liquefaction equipment market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Equipment Type:
Liquefaction Units
Heat Exchangers
Compressors
Storage Tanks
Pumps
Others
By Capacity:
Small-Scale (<0.5 MTPA)
Mid-Scale (0.5-2 MTPA)
Large-Scale (>2 MTPA)
By Process Cycle:
Cascade Process
Mixed Refrigerant Process
Shell-And-Tube Process
Others
By Technology:
Conventional LNG Liquefaction
Floating LNG Liquefaction
Modular LNG Liquefaction
By End-Use Industry:
Power Generation
Transportation
Industrial
Residential & Commercial
By Application:
Export/Import Terminals
Bunkering Facilities
Peak Shaving Plants
Distributed LNG Production Units
Segmentation By Region:
North America:
United States
Canada
Europe:
Germany
The U.K.
France
Spain
Italy
Russia
Poland
BENELUX
NORDIC
Rest of Europe
Asia Pacific:
China
Japan
India
South Korea
ASEAN
Australia & New Zealand
Rest of Asia Pacific
Latin America:
Brazil
Mexico
Argentina
Middle East & Africa:
Saudi Arabia
South Africa
United Arab Emirates
Israel
Who are the key players operating in the industry?
The report covers the major market players including:
Air Products and Chemicals, Inc.
Linde plc
TechnipFMC plc
Siemens Energy AG
Chart Industries, Inc.
Mitsubishi Heavy Industries, Ltd.
General Electric Company
Bechtel Corporation
McDermott International, Inc.
Baker Hughes Company
Chiyoda Corporation
Saipem S.p.A.
JGC Corporation
Samsung Engineering Co., Ltd.
KBR, Inc.
View Full Report: https://www.reportsandinsights.com/report/Liquefied Natural Gas (LNG) Liquefaction Equipment-market
If you require any specific information that is not covered currently within the scope of the report, we will provide the same as a part of the customization.
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Reports and Insights consistently mееt international benchmarks in the market research industry and maintain a kееn focus on providing only the highest quality of reports and analysis outlooks across markets, industries, domains, sectors, and verticals. We have bееn catering to varying market nееds and do not compromise on quality and research efforts in our objective to deliver only the very best to our clients globally.
Our offerings include comprehensive market intelligence in the form of research reports, production cost reports, feasibility studies, and consulting services. Our team, which includes experienced researchers and analysts from various industries, is dedicated to providing high-quality data and insights to our clientele, ranging from small and medium businesses to Fortune 1000 corporations.
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robertsteven65 · 2 months
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Industrial Gases Market: Navigating the Impact of Geopolitical Tension
Overview
Industrial Gases Market size was valued to be worth USD 100.5 Billion in 2022. From 2023 to 2032, it is estimated to reach USD 192.6 billion growing at a CAGR of 6.9%.
The industrial gases market refers to the industry involved in the production and distribution of gases like nitrogen, oxygen, carbon dioxide, and hydrogen, which are crucial for various industrial applications. These gases are typically supplied to end-use industries, such as food and beverage, electronics, healthcare, and steel manufacturing, in both liquefied and gaseous forms. 
They are produced using cryogenic air filtration techniques in air separation units, and their applications range from refrigeration and fuel to specialty and medical uses. The market's growth is driven by the increasing demand for these gases across diverse sectors, particularly as industries continue to globalize and expand their manufacturing and processing capabilities.
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This expansion is further supported by the rapid development of sectors such as steel, glass, oil, and fiber optics in developing countries, which require substantial amounts of industrial gases. As these industries continue to grow, the demand for industrial gases is expected to rise, creating new growth opportunities for market players and contributing to the overall expansion of the industrial gases market.
Key Market Segments
Product
Oxygen
Nitrogen
Carbon dioxide
Hydrogen
Argon
Acetylene
Other Products
Application
Packaging
Coolant
Carbonation
Cryogenic
Cutting & Welding
Laboratory
Air Separation
Other Applications
Distribution
Onsite
Bulk (Liquid Gas Transport)
Cylinder (Merchant)
End-User
Metallurgy
Healthcare
Chemical
Food & beverage
Oil & Gas
Power
Pulp & Paper
Electronics
Water Treatment
Mining
Other End-Users
The industrial gases market is significantly influenced by the dominance of the oxygen segment, which held a 27.5% share in 2022. Oxygen is crucial for steel melting, fabrication, and medical applications, enhancing fuel efficiency and aiding in environmental cleanup. Nitrogen's primary role is in creating ammonia for fertilizers and explosives, Carbon dioxide, utilized as refrigerants and coolants, also plays a vital role in the chemical and food industries due to its inert properties.
Market Key Players:
Yingde Gases Group Company Limited
Air Liquide S.A
Linde Group
Airgas Inc.
Messer Group
Buzwair Industrial Gases Factories
Air Products and Chemicals Inc.
Taiyo Nippon Sanso Corporation
Air Water Incorporation
BASF SE
INOX-Air Products Inc.
Iwatani Corporation
Other Key Players
Driving Factors: 
The global industrial gases market is being driven by the increasing consumption of oil and gases, fueled by public and private investments in sectors such as metallurgy, food and beverage, mining, and metals. Rising demand for crude oil and the need for refining processes have also boosted the use of industrial gases in the oil and natural gas industries, with applications in drilling, well raising, and maintenance.
Restraining Factors: 
Market growth is being hampered by stringent regulations and high costs associated with gas storage, transportation, and manufacturing. Regulations such as the EU Regulation 231/2012 and ADR 13, along with environmental inspections and increased transit costs, have raised industrial gas prices. 
Growth Opportunity: 
The growing demand for industrial gases in emergency situations, as well as in the food and beverage, electronics, and healthcare sectors, presents significant growth opportunities. Rapid development in steel, glass, oil, and fiber optics industries, especially in developing countries, is also contributing to market expansion. 
Challenges: 
A major challenge for the industrial gases market is the production of low-cost gases. High costs associated with industrial gas production and distribution, along with stringent regulatory requirements, make it difficult to achieve cost-effective solutions. The need for long-term gas purchase contracts due to the high capital costs of air separation units (ASUs) adds to the financial burden on major industrial customers.
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boatarenttahoe · 3 months
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Vein Finder Market: Dissecting the Factors Steering Growth and Potential Risks
Vein Finder Market provides in-depth analysis of the market state of Vein Finder manufacturers, including best facts and figures, overview, definition, SWOT analysis, expert opinions, and the most current global developments. The research also calculates market size, price, revenue, cost structure, gross margin, sales, and market share, as well as forecasts and growth rates. The report assists in determining the revenue earned by the selling of this report and technology across different application areas.
Geographically, this report is segmented into several key regions, with sales, revenue, market share and growth Rate of Vein Finder in these regions till the forecast period
North America
Middle East and Africa
Asia-Pacific
South America
Europe
Key Attentions of Vein Finder Market Report:
The report offers a comprehensive and broad perspective on the global Vein Finder Market.
The market statistics represented in different Vein Finder segments offers complete industry picture.
Market growth drivers, challenges affecting the development of Vein Finder are analyzed in detail.
The report will help in the analysis of major competitive market scenario, market dynamics of Vein Finder.
Major stakeholders, key companies Vein Finder, investment feasibility and new market entrants study is offered.
Development scope of Vein Finder in each market segment is covered in this report. The macro and micro-economic factors affecting the Vein Finder Market
Advancement is elaborated in this report. The upstream and downstream components of Vein Finder and a comprehensive value chain are explained.
Browse More Details On This Report at @https://www.globalgrowthinsights.com/market-reports/vein-finder-market-101448
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trendtrackershq · 5 months
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Technical Insulation Market: Trends, Growth, and Forecast
Introduction
The Technical Insulation Market plays a vital role in various industries by providing thermal, acoustic, and fire protection solutions. From residential buildings to industrial facilities, technical insulation is essential for optimizing energy efficiency, enhancing occupant comfort, and ensuring the safety and longevity of infrastructure. In this comprehensive analysis, we delve into the key trends, growth drivers, and future forecasts shaping the Technical Insulation Market.
According to the study by Next Move Strategy Consulting, the global Technical Insulation Market size is predicted to reach USD 11.82 billion with a CAGR of 4.0% by 2030.
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Trends Shaping the Technical Insulation Market
Rising Demand for Energy Efficiency
The increasing emphasis on energy efficiency across industries is a primary driver fueling the demand for technical insulation solutions. As organizations strive to reduce energy consumption and minimize environmental impact, there is a growing preference for insulation materials that offer superior thermal performance. Technical insulation plays a crucial role in minimizing heat loss or gain in buildings, industrial equipment, and pipelines, thereby contributing to energy conservation efforts.
Advancements in insulation materials, such as aerogels, vacuum insulation panels, and eco-friendly foams, are enabling improved thermal insulation properties while ensuring sustainability. These innovative materials offer high thermal resistance and durability, making them ideal for applications where energy efficiency is paramount.
Advancements in Insulation Materials
Technological innovations have revolutionized the technical insulation industry, leading to the development of advanced materials with superior performance characteristics. Traditional insulation materials such as fiberglass and mineral wool are being augmented with newer options that offer enhanced thermal conductivity, moisture resistance, and fire retardancy.
Aerogels, for instance, are lightweight, highly porous materials with exceptional thermal insulating properties. These silica-based materials possess low thermal conductivity, making them effective insulators for a wide range of applications, including building envelopes, cryogenic systems, and aerospace components.
Vacuum insulation panels (VIPs) represent another breakthrough in insulation technology. Consisting of a rigid core encased in a gas-tight envelope, VIPs achieve extremely low thermal conductivity by minimizing convective and conductive heat transfer. These panels are increasingly being used in refrigeration, cold chain logistics, and building insulation applications.
Furthermore, eco-friendly insulation materials derived from renewable sources, such as soybean oil-based foams and cellulose insulation made from recycled paper, are gaining traction due to their sustainability credentials. These bio-based materials offer comparable thermal performance to traditional insulation options while reducing environmental impact.
Focus on Green Building Standards
The construction industry is undergoing a paradigm shift towards sustainable building practices, driven by increasing awareness of environmental conservation and energy efficiency. Green building standards and certifications, such as LEED (Leadership in Energy and Environmental Design) and BREEAM (Building Research Establishment Environmental Assessment Method), are becoming increasingly prevalent, influencing design and construction decisions worldwide.
Technical insulation plays a pivotal role in achieving green building certifications by enhancing energy efficiency and thermal comfort within buildings. By minimizing heat transfer through walls, roofs, and floors, insulation helps reduce heating and cooling loads, thereby lowering energy consumption and operational costs. Additionally, insulation materials with high recycled content and low embodied energy contribute to the overall sustainability of building projects.
Expansion in Industrial Infrastructure
The rapid expansion of industrial infrastructure, particularly in emerging economies, is driving significant demand for technical insulation solutions. Industries such as power generation, oil and gas, petrochemicals, and manufacturing rely heavily on insulation to maintain optimal operating temperatures, protect personnel and equipment, and ensure process efficiency.
In power generation facilities, for example, thermal insulation is critical for steam turbines, boilers, and piping systems to minimize heat losses and maximize energy conversion efficiency. Similarly, in the oil and gas sector, insulation is utilized in pipelines, storage tanks, and processing equipment to prevent heat transfer, reduce energy consumption, and mitigate the risk of corrosion under insulation (CUI).
The petrochemical industry also relies on technical insulation for maintaining process temperatures and ensuring product quality and safety. Insulation materials with excellent chemical resistance and thermal stability are essential for withstanding harsh operating conditions in chemical processing plants and refineries.
Growth Drivers of the Technical Insulation Market
Regulatory Mandates
Stringent regulations and building codes mandating the use of energy-efficient insulation materials are driving market growth across regions. Governments worldwide are implementing measures to reduce greenhouse gas emissions, combat climate change, and promote sustainable development. As a result, building energy codes are being updated to include requirements for enhanced thermal performance and insulation levels.
In Europe, for instance, the Energy Performance of Buildings Directive (EPBD) sets minimum energy performance standards for new and existing buildings, including requirements for thermal insulation. Similarly, in the United States, the International Energy Conservation Code (IECC) establishes criteria for building envelope insulation, HVAC systems, and lighting efficiency to improve overall energy efficiency.
Compliance with these regulatory mandates necessitates the adoption of advanced insulation materials and construction techniques to achieve the prescribed energy performance targets. As a result, manufacturers and suppliers of technical insulation products are witnessing increased demand for their solutions, particularly those that offer high thermal resistance, durability, and environmental sustainability.
Urbanization and Industrialization
The ongoing trends of urbanization and industrialization are driving the demand for technical insulation solutions globally. As populations migrate to urban centers in search of employment opportunities and better living standards, there is a corresponding need for infrastructure development to accommodate growing urban populations.
Residential and commercial construction projects in urban areas require effective insulation solutions to ensure thermal comfort, indoor air quality, and energy efficiency. Proper insulation of buildings helps reduce heating and cooling loads, thereby lowering energy consumption and utility bills for occupants.
In addition to urban construction, industrial infrastructure projects are also driving demand for technical insulation products. The expansion of manufacturing facilities, power plants, refineries, and chemical processing plants necessitates the installation of insulation systems to maintain process temperatures, protect equipment, and ensure operational reliability.
Focus on Renewable Energy
The global transition towards renewable energy sources, such as solar, wind, and geothermal power, is creating new opportunities for the technical insulation market. Renewable energy technologies rely on efficient insulation systems to maximize energy capture, storage, and distribution while minimizing heat losses and environmental impact.
Solar photovoltaic (PV) systems, for example, require insulation materials to protect electrical components, minimize thermal losses, and optimize performance under varying weather conditions. Insulated piping and storage tanks are essential for solar thermal systems used for heating water or generating steam for industrial processes.
Similarly, wind turbines utilize insulation to protect critical components such as gearboxes, generators, and control systems from temperature extremes, moisture ingress, and mechanical wear. Insulated enclosures and thermal barriers help maintain stable operating conditions within turbine nacelles, ensuring reliable performance and longevity.
Geothermal heating and cooling systems also rely on effective insulation to enhance energy efficiency and thermal stability. Underground piping networks, heat exchangers, and thermal storage tanks are insulated to minimize heat loss during heat transfer processes, thereby improving system efficiency and reducing operating costs.
Forecast for the Technical Insulation Market
The outlook for the technical insulation market remains promising, with sustained growth expected in the coming years. Factors such as increasing investments in infrastructure development, regulatory support for energy efficiency initiatives, and the expansion of end-use industries will drive market expansion across regions.
Furthermore, advancements in insulation materials, manufacturing processes, and installation techniques will continue to drive innovation and product development in the technical insulation sector. Manufacturers are investing in research and development to enhance the performance, sustainability, and cost-effectiveness of their insulation products, thereby addressing evolving customer needs and market demands.
Regional Insights and Market Dynamics
North America
North America is a significant market for technical insulation products, driven by robust construction activity, industrial expansion, and regulatory mandates for energy efficiency. The United States and Canada are witnessing increased adoption of insulation solutions in residential, commercial, and industrial applications to meet stringent building codes and sustainability goals.
In the United States, initiatives such as the Department of Energy's Better Buildings Challenge and the Environmental Protection Agency's ENERGY STAR program are driving demand for energy-efficient building solutions, including insulation upgrades and retrofits. Building owners and facility managers are investing in insulation improvements to reduce energy consumption, lower operating costs, and enhance occupant comfort.
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Europe
Europe leads the global technical insulation market, supported by stringent energy efficiency regulations, green building standards, and sustainability initiatives. Countries such as Germany, the United Kingdom, France, and Scandinavia are at the forefront of sustainable construction practices, driving demand for high-performance insulation materials and systems.
The European Union's Energy Efficiency Directive (EED) sets ambitious targets for reducing energy consumption and greenhouse gas emissions, spurring investments in energy-efficient building envelopes and HVAC systems. The nearly-zero energy building (NZEB) concept, which aims to minimize energy demand and maximize renewable energy use in new construction, is driving the adoption of advanced insulation solutions across Europe.
Asia Pacific
Asia Pacific is emerging as a lucrative market for technical insulation products, fueled by rapid urbanization, industrialization, and infrastructure development. Countries such as China, India, Japan, South Korea, and Australia are witnessing significant investments in residential, commercial, and industrial construction projects, driving demand for insulation materials and systems.
In China, the government's focus on sustainable development and green building initiatives is driving the adoption of energy-efficient building materials, including insulation products. The implementation of building energy codes and certification programs, such as Three-Star and Green Building Label, incentivizes developers and building owners to invest in insulation upgrades and energy-saving measures.
In India, the construction of smart cities, industrial corridors, and infrastructure projects is driving demand for technical insulation solutions to enhance energy efficiency, occupant comfort, and environmental sustainability. Insulation manufacturers are partnering with developers, architects, and contractors to promote the use of advanced insulation materials and construction techniques in building projects.
Latin America
Latin America is experiencing steady growth in the technical insulation market, driven by infrastructure investments, urban development, and regulatory measures to promote energy efficiency. Countries such as Brazil, Mexico, Argentina, and Chile are witnessing increased demand for insulation products in residential, commercial, and industrial applications.
In Brazil, the construction of new residential complexes, commercial buildings, and industrial facilities is driving demand for thermal insulation materials to improve energy efficiency and indoor comfort. The government's My House My Life program, aimed at providing affordable housing to low-income families, includes provisions for energy-efficient building design and insulation installation.
In Mexico, the implementation of building energy codes and standards is driving the adoption of insulation solutions in new construction and retrofit projects. The National Housing Commission (CONAVI) promotes sustainable building practices and energy-efficient technologies, encouraging developers to incorporate insulation upgrades and energy-saving measures in housing projects.
Middle East and Africa
The Middle East and Africa region is witnessing increasing demand for technical insulation products, driven by infrastructure development, urbanization, and industrial expansion. Countries such as Saudi Arabia, the United Arab Emirates, South Africa, and Nigeria are investing in construction projects and energy infrastructure, driving demand for insulation materials and systems.
In the Gulf Cooperation Council (GCC) countries, the construction of residential, commercial, and industrial buildings is driving demand for insulation solutions to mitigate heat transfer and enhance energy efficiency. Insulation manufacturers are leveraging innovative materials and technologies to address the region's unique climate challenges and regulatory requirements.
In South Africa, the government's focus on sustainable development and energy efficiency is driving investments in green building initiatives and renewable energy projects. The Green Building Council of South Africa (GBCSA) promotes green building practices and certification programs, incentivizing developers to incorporate insulation upgrades and energy-saving measures in building projects.
Conclusion
In conclusion, the Technical Insulation Market is poised for significant growth driven by evolving trends, regulatory mandates, and the need for sustainable solutions. Advancements in insulation materials, technological innovations, and market dynamics will continue to shape the industry landscape, presenting opportunities for stakeholders across the value chain.
As industries strive to enhance energy efficiency, reduce environmental impact, and comply with regulatory requirements, the demand for technical insulation solutions will continue to rise. Manufacturers, suppliers, contractors, and end-users must collaborate to develop and implement cost-effective, high-performance insulation solutions that meet the evolving needs of the market.
By embracing innovation, sustainability, and collaboration, the Technical Insulation Market can play a pivotal role in advancing energy conservation, environmental stewardship, and sustainable development worldwide.
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ganesh8fbi · 5 months
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Cryogenic Pump Market Size, Share, Analysis and Forecast 2029
The global cryogenic pump market size was USD 3.41 billion in 2021. The market is projected to grow from USD 3.62 billion in 2022 to USD 6.64 billion in 2029 at a CAGR of 9.06% during the forecast period. 
Get More Info: https://www.fortunebusinessinsights.com/industry-reports/cryogenic-pump-market-100824 
LIST OF KEY COMPANIES PROFILED:
Nikkiso Co., Ltd (Japan)
SHI Cryogenics Group (Japan)
Ebara Corporation (Japan)
The Weir Group PLC (Scotland)
Fives (France)
Sulzer (Switzerland)
Flowserve Corporation (U.S.)
INOXCVA (India)
Cryostar (France)
Phpk Technologies (U.S.)
Vanzetti Engineering (Italy)
KEY INDUSTRY DEVELOPMENTS:
August 2023- Clean Energy & Industrial Gases Group of Nikkiso Cryogenic Industries, a part of Nikkiso Co., Ltd, signed a cooperation agreement with Neuman & Esser (NEA) Brazil. As per the agreement, NEA Brazil is to provide local solutions for Nikkiso products installed in Brazil, which include ACD cryogenic pumps and turboexpanders. The objective of the cooperation is to help reduce lead times for repairs, improve customer service in the field, and increase the number of service centers globally to support customers regionally.
November 2022- SHI Cryogenics Group launched a CH-160D2 77K Cryocooler, adding a new model of cryocooler to its line of Gifford-McMahon (GM) Cryocoolers. This new model has the highest-capacity 77K Cryocooler to date, with a first-stage capacity of 525/630 W at 77 K (50/60 Hz). It utilizes Whisper technology and Displex pneumatic drive technology for quieter operation and for limiting the number of worn parts in the refrigerator. The CH-160D2 is ideal for many applications, including liquid nitrogen generation and liquefaction and clean energy technologies.
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Medical Refrigerators Market Potential Growth Opportunities and Competitive Landscape Report to 2033
Market Definition
Medical refrigerators are designed to store medical supplies and medications at a consistent temperature. These refrigerators typically have two or more compartments with different temperature settings.
Market Outlook
Medical refrigerators are designed to store medical supplies and medications at a consistent temperature. These refrigerators typically have two or more compartments with different temperature settings. The most common medical refrigerator temperatures are 2-8°C (36-46°F) and -20°C (-4°F).
Medical refrigerators use either forced-air cooling or circulating coolant to maintain the desired temperature. Forced-air cooling is the most common type of cooling used in medical refrigerators. This type of cooling uses a fan to circulate air around the interior of the fridge. Circulating coolant systems use a coolant (usually water or glycol) to circulate around the fridge and remove heat from the interior.
Some medical refrigerators also have a built-in alarm system that will notify users if the temperature inside the fridge rises above or falls below the set point.
Some of the key trends in medical refrigerators market are as follows:
Increasing demand for energy efficient and eco-friendly products: Medical refrigerators are increasingly becoming popular among healthcare facilities as they are more energy efficient and eco-friendly as compared to traditional refrigerators.
Advancements in technology: With the advancement in technology, medical refrigerators are now available with more features and are more user-friendly.
Increasing preference for digital and smart products: There is a growing preference for digital and smart products among healthcare facilities. This is because these products offer more features and are easier to use.
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Research Objectives
Estimates and forecast the overall market size for the total market, across product, service type, type, end-user, and region
Detailed information and key takeaways on qualitative and quantitative trends, dynamics, business framework, competitive landscape, and company profiling
Identify factors influencing market growth and challenges, opportunities, drivers and restraints
Identify factors that could limit company participation in identified international markets to help properly calibrate market share expectations and growth rates
Trace and evaluate key development strategies like acquisitions, product launches, mergers, collaborations, business expansions, agreements, partnerships, and R&D activities
Thoroughly analyze smaller market segments strategically, focusing on their potential, individual patterns of growth, and impact on the overall market
To thoroughly outline the competitive landscape within the market, including an assessment of business and corporate strategies, aimed at monitoring and dissecting competitive advancements.
Identify the primary market participants, based on their business objectives, regional footprint, product offerings, and strategic initiatives
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Market Segments
The Medical Refrigerators Market is segmented into product type, temperature range, end user, and regions. By product type, the market is divided into blood bank refrigerators & plasma freezers, laboratory refrigerators freezers, pharmacy refrigerators & freezers, chromatography refrigerators & freezers, enzyme refrigerators & freezers, ultra-low-temperature freezers, and cryogenic storage systems. Based on the temperature range, the market is bifurcated into standard-temperature refrigerators, low-temperature refrigerators, ultra-low-temperature freezers, and others. Whereas for the end user, the market is segmented into blood banks, pharmaceutical companies, hospitals & pharmacies, research institute, medical laboratories, and diagnostic centers. Region-Wise the market is segmented by North America, Europe, Asia-Pacific, and the rest of the world.
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Key Players
The Medical Refrigerators Market report includes players such as Thermo Fisher Scientific Inc. (US), Blue Star Limited (India), Haier Biomedical (China), Aucma (China), Standex International Corporation (US), Godrej & Boyce Manufacturing Co Ltd. (India), Helmer Scientific Inc. (US), Vestfrost Solutions (Denmark), Zhongke Meiling Cryogenics (China), and Fiochetti (Italy), among others.
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Research Scope
Scope – Highlights, Trends, Insights. Attractiveness, Forecast
Market Sizing – Product Type, End User, Offering Type, Technology, Region, Country, Others
Market Dynamics – Market Segmentation, Demand and Supply, Bargaining Power of Buyers and Sellers, Drivers, Restraints, Opportunities, Threat Analysis, Impact Analysis, Porters 5 Forces, Ansoff Analysis, Supply Chain
Business Framework – Case Studies, Regulatory Landscape, Pricing, Policies and Regulations, New Product Launches. M&As, Recent Developments
Competitive Landscape – Market Share Analysis, Market Leaders, Emerging Players, Vendor Benchmarking, Developmental Strategy Benchmarking, PESTLE Analysis, Value Chain Analysis
Company Profiles – Overview, Business Segments, Business Performance, Product Offering, Key Developmental Strategies, SWOT Analysis.
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10-year forecast to help you make strategic decisions • In-depth segmentation which can be customized as per your requirements • Free consultation with lead analyst of the report • Infographic excel data pack, easy to analyze big data • Robust and transparent research methodology •Unmatched data quality and after sales service
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sjsuraj · 7 months
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Cryogenic Valves Market Unveiled: In-Depth Analysis and Key Player Perspectives Shaping 2033
The Cryogenic Valves Market report, unveiled by Future Market Insights—an ESOMAR Certified Market Research and Consulting Firm—presents invaluable insights and meticulous analysis of the Cryogenic Valves market. Encompassing the research’s scope and essence, this report scrupulously examines the driving factors, market size, and predictive data for Cryogenic Valves. It furnishes intricate revenue and shipment segmentations, accompanied by a decade-long projection up to 2033. Additionally, the document evaluates key industry players, their market distribution, the competitive scenario, and regional perspectives.
By the end of 2033, the cryogenic valves market is projected to be valued at US$5,731.4 Million, growing at a CAGR of 4.9%. Global market expansion is predicted to be fueled by rising demand for cryogenic gases from a range of end-use industries throughout the course of the forecast period. Rising investments in gas-powered power plants and the development of new technologies will most likely drive the industry. Additionally, new opportunities for market players are being created by the expansion of the chemical and food and beverage sectors in Asia Pacific.
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Besides, growth can be attributed to the ongoing expansion of the industrial and healthcare sectors worldwide. Increasing demand for cryogenic gases such as LNG and liquid helium in rockets is likely to augur well for the global market. Also, MRI machines require cryogenic cooling, while the food sector needs to store large quantities of food, which would aid growth. The increasing development of green energy worldwide is also expected to drive growth.
Moreover, increasing demand for energy across the globe is likely to aid the global market. Governments of various emerging economies are taking several initiatives to accelerate power production and develop their infrastructures. As per the India Brand Equity Foundation (IBEF), by 2022, the country is likely to become the world’s third largest construction market. India is estimated to need investments worth US$ 777.73 Billion across infrastructure for a sustainable development by 2022. These factors are projected to help the global market to grow at a rapid pace.
Key Takeaways from the Market Study
By valve type, the gate valves segment is expected to grow at a CAGR of 9% during the forecast period.
By gas, the LNG gas segment is anticipated to dominate the market and account for about 1/3rd of share.
By end use, the power & energy segment is projected to lead the cryogenic valves market and create an absolute dollar opportunity worth US$ 128.8 Million during the forecast period.
In terms of region, sales of cryogenic valves in South Asia & Pacific are estimated to exhibit a CAGR of 0%.
The China cryogenic valves market is estimated to grow at a CAGR of 7% in the assessment period.
“Increasing implementation of stringent regulations for emission control in the power generation sector and rising adoption of refrigeration systems in the F&B sector are creating new growth opportunities for cryogenic valves manufacturers,” says a Future Market Insights analyst.
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powermarket · 11 months
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Cryogenic Equipment Market Is Booming Worldwide
The global cryogenic equipment market size stood at USD 17.24 billion in 2021. The market is estimated to rise from USD 18.06 billion in 2021 to USD 32.86 billion by 2028 at 8.9% CAGR during the forecast period. Fortune Business Insights™ has delved into these insights in its latest research report, titled, “Cryogenic equipment Market, 2021-2028.”
According to the analysis increasing investments in LNG power plants and rising focus on processing and manufacturing industries to foster market development. The rising demand for clean energy power is anticipated to boost the market in the near future. The transportation, storage, and regasification applications for generating clean energy hold substantial potential for the growth of the market.
List of Key Companies Profiled in the Market Report: 
Chart Industries, Inc. (U.S.)
Cryofab, Inc. (U.S.)
Linde (Germany)
Nikkisso Cryoquip (U.S.)
Nikkiso Co. Ltd (Japan)
SHI Cryogenics Group (Japan)
HEROSE GMBH (Germany)
Wessington Cryogenics (U.K.)
Cryo Pur (France)
INOXCVA (INOX India Pvt Ltd) (India)
Sulzer (Switzerland)
Schlumberger (U.S.)
Flowserve Corporation (U.S.)
Fives (France)
Phpk Technologies (U.S.)
Marshall Excelsior Company (U.S.)
ACME Cryogenics (U.S.)
RegO (U.S.)
Habonim Industrial Valves & Actuators LTD (U.S.)
Impact of COVID-19:
Restrictions on Manufacturing and Transport to Hinder Market Progress
This market is expected to be negatively affected during the COVID-19 pandemic because of the restrictions imposed on manufacturing and transport activities. The sudden spike in COVID-19 infections led to the adoption of stringent norms. This has led to the closure of industries and the lack of raw materials for cryogenic equipment production. However, the adoption of production machinery, advanced sanitization methods, reduced capacities, and half capacities have enabled manufacturers to recover their losses. This factor is expected to boost market growth during the pandemic.
Report Coverage:
The report has been prepared meticulously through quantitative and qualitative assessments to offer a comprehensive market view. Notably, many primary interviews have been conducted with major stakeholders and suppliers. Primary data has been collected through questionnaires, telephonic conversations and emails. Moreover, the report also includes secondary sources, such as government websites, SEC filings and press releases. The report also gives an in-depth view of market size, share, revenue, volume and delves into SWOT analysis.
Drivers and Restraints:
Rising Demand for Clean Energy Source to Bolster Market Expansion
The rising demand for regasification, storage, and transportation of clean energy is expected to boost cryogenic equipment’s demand. The rising demand for LNG fuels for automotive use is expected to increase the equipment’s sales. Further, significant investments in the petrochemical and chemical sectors are likely to boost market growth. Rising usage of refrigerators, pumps, vaporizers, valves, and oil tankers is likely to increase the demand for the equipment. The equipment increases the safety of the fuel and maintains safety.
The rising demand for fuel storage and the rising adoption of renewable energy resources is likely to increase the equipment’s adoption. Moreover, it is also used in the healthcare sector to store blood, package medicines, and purge equipment. These factors are likely to drive the cryogenic equipment market growth.
However, the fluctuating stainless steel prices and stringent green-house emission norms may hinder the market progress.
Competitive Landscape:
Major Players Set Up Facilities to Expand Market Reach Globally
Prominent companies operating in the company set up manufacturing facilities to expand their market reach worldwide. For example, Lide declared that it had set up a novel on-site manufacturing plant in Qinzhou, China, in July 2021. The company shall supply industrial gases and oxygen to Shanghai Huayi's new chemical complex by opening up the plant. The manufacturing plant comprises three air separation units designed to supply 5,000 tons of nitrogen and 7,500 tons per day of oxygen. This strategy may enable the company to expand its market reach. In addition, the adoption of research and development may enable companies to improve their product quality and boost their brand image.
Segmentation:
By product, the market is segmented into bayonet connection, actuator, vaporizer, pump, valve, tank, and others. As per cryogen, it is categorized into helium, hydrogen, liquefied natural gas (LNG), argon, oxygen, nitrogen, and others.
Based on end-user, it is classified into marine, chemical & petrochemical, power generation, metallurgy, oil & gas, and others.
Regionally, it is grouped into Asia-Pacific, Europe, North America, Latin America, and the Middle East & Africa.
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chiragreportprime · 1 year
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Mobile Cryotherapy Room Market Size, Type, segmentation, growth and forecast 2023-2030
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Mobile Cryotherapy Room Market
The Mobile Cryotherapy Room Market is expected to grow from USD 2.80 Billion in 2022 to USD 6.20 Billion by 2030, at a CAGR of 10.40% during the forecast period.
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Mobile Cryotherapy Room Market Size
A mobile cryotherapy room is a compact refrigeration unit used to provide cryogenic (cold) therapy to patients. The market research report for mobile cryotherapy room covers market segments based on type (pull-type and self-propelled), application (hospital, clinic, and others), and region (North America, Asia Pacific, Middle East, Africa, Australia, and Europe). Major market players in the mobile cryotherapy room include Cryo Manufacturing, CryoAction, Cryomed, KRION, and KrioSystem. Regulatory and legal factors specific to market conditions are also mentioned in the report, providing insight into the challenges faced by companies in the industry. Overall, the mobile cryotherapy room market is expected to experience significant growth in the coming years, driven by the rising demand for non-invasive and pain-free treatments.
Mobile Cryotherapy Room Market Key Player
Cryo Manufacturing
CryoAction
Cryomed
KRION
KrioSystem
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Mobile Cryotherapy Room Market Segment Analysis
The Mobile Cryotherapy Room market serves a diverse group of target markets, including sports teams, gyms, spas, medical clinics, and individuals seeking cryotherapy treatments. The increasing awareness of the potential benefits of cryotherapy, such as reduced inflammation, pain relief, and improved muscle recovery, among others, is driving demand in these target markets. Additionally, the mobile aspect of the cryotherapy room provides convenience for customers and allows businesses to offer cryotherapy services without incurring the high cost of building a stationary cryotherapy chamber.
Several factors are driving revenue growth in the Mobile Cryotherapy Room market. These include the expansion of the sports industry, the growing number of health-conscious individuals, and the shift towards alternative therapies. The sports industry, in particular, is a significant revenue driver, as athletes increasingly seek cryotherapy treatments to aid in recovery, reduce inflammation, and enhance performance. Furthermore, the rising demand for non-invasive therapies and alternative solutions is driving growth in the cryotherapy market.
The Mobile Cryotherapy Room market is witnessing several trends, including the rise of mobile app-based services, the adoption of whole-body cryotherapy, and the use of localized cryotherapy. Mobile app-based services enable businesses to offer on-demand cryotherapy services at customers' locations, thereby increasing convenience and accessibility. Additionally, whole-body cryotherapy is gaining popularity due to its potential to treat several health conditions, including chronic pain, anxiety, and depression. Lastly, localized cryotherapy is gaining traction in sports medicine, where it is used to target specific areas of the body, providing faster recovery and improved performance.
Major challenges faced by the Mobile Cryotherapy Room market include the lack of awareness about cryotherapy's potential benefits, the high initial investment required to start a mobile cryotherapy business, and the possibility of skin damage due to exposure to extreme cold temperatures. Additionally, regulatory barriers and safety concerns may hinder market growth.
The report's main findings suggest that the Mobile Cryotherapy Room market is poised for significant growth in the coming years, driven by increasing awareness of cryotherapy's benefits, rising demand for non-invasive therapies, and the expansion of the sports industry. The report recommends that businesses in this market focus on building brand awareness, leveraging social media and online platforms to drive customer engagement, and investing in research and development to develop innovative cryotherapy products and services.
In conclusion, the Mobile Cryotherapy Room market serves a diverse group of target markets and is witnessing significant revenue growth driven by several factors. However, the market faces challenges that need to be addressed to ensure sustained growth. The report's recommendations provide businesses with insights on how to overcome these challenges and capitalize on the market's potential.
This report covers impact on COVID-19 and Russia-Ukraine wars in detail.
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Market Segmentation (by Application):
Hospital
Clinic
Others
Information is sourced from www.reportprime.com
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chandupalle · 1 year
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Cold Chain Monitoring Market Trends & Growth Drivers – 2026
The global cold chain monitoring market size is projected to USD 10.2 billion by 2026 from USD 5.3 billion in 2022 at a compound annual growth rate (CAGR) of 16.6% during the forecast period.
It was observed that the growth rate was 11.6% from 2021 to 2022. Software segment is expected to witness higher CAGR of 17.8%.The primary reasons for this rise in demand for cold chain monitoring products in pharmaceuticals & healthcare application.
The market for NIR & SWIR to grow at the highest CAGR Cold chain monitoring market, by verticals, in 2026
Near-infrared light is referred to as light within the wavenumber range of 12,500–4,000 cm (wavelength from 800 to 2,500 nm). The near-infrared (NIR) spectrum typically ranges from 0.7 to 1.0 ìm.
The absorption of near-infrared light is based on the vibration of the material. However, it is much weaker in intensity as compared to the mid-infrared light absorption as it is based on overtones and combined tones in the mid-infrared light region. Therefore, the measurement of samples featuring weak absorption is difficult, but the fact that samples can be measured without being diluted is an advantage.
The market for the cooled cold chain monitorings to grow at the highest CAGR during the forecast period
Cold chain monitorings made using materials such as mercury cadmium telluride (HgCdTe) and indium antimonide (InSb) require mechanical cooling to increase their signal-to-noise ratio to usable levels.
Indium gallium arsenide (InGaAs)-based detectors exhibit sensitivity similar to that of HgCdTe- and InSb-based detectors at room temperature; however, they can be cooled to increase their sensitivity. The cooled cold chain monitorings are usually cooled thermoelectrically or cryogenically. In some cases, liquid nitrogen is also used for the cooling of detectors.
Cooling decreases the temperature of the detector, allowing it to reduce thermally induced noise to a minimal level and improving its performance. However, cooled cold chain monitorings are more expensive than uncooled ones, which restricts their mass adoption. Cooled cold chain monitorings find applications in scientific research, astronomy, security and surveillance, and spectroscopy, among others, where high accuracy is of utmost importance.
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Americas to hold the largest share of Cold chain monitoring market
North America is the largest market for cold chain monitoring in the Americas at present and is likely to exhibit a similar trend during the forecast period.
Increasing demand for chilled and frozen food products in North American countries is likely to trigger the demand for cold chain monitoring solutions in the region. Cold chain monitoring infrastructure includes refrigerated storage and refrigerated transport. The escalating demand for dairy products, vegetables, and fruits is increasing the imports, as well as exports of exotic vegetables and fruits and dairy products, which is also boosting the demand for cold chain monitoring solutions.
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businessindustry · 4 months
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Liquefied Natural Gas (LNG) Liquefaction Equipment Market Analysis & Forecasts 2024-2032
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The Reports and Insights, a leading market research company, has recently releases report titled “Liquefied Natural Gas (LNG) Liquefaction Equipment Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Liquefied Natural Gas (LNG) Liquefaction Equipment Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Liquefied Natural Gas (LNG) Liquefaction Equipment Market?
The Liquefied Natural Gas (LNG) liquefaction equipment market size reached US$ 811.2 Million in 2023. Looking forward, Reports and Insights expects the market to reach US$ 1,226.5 Million by 2032, exhibiting a growth rate (CAGR) of 4.7% during 2024-2032.
What are Liquefied Natural Gas (LNG) Liquefaction Equipment?                                                                                                                                                                            
Liquefied Natural Gas (LNG) liquefaction equipment is utilized to convert natural gas into its liquid state for more convenient transportation and storage. This process involves lowering the temperature of the gas to -162 degrees Celsius, causing it to condense into a clear, colorless, and non-toxic liquid. The primary components of LNG liquefaction equipment include compressors, heat exchangers, and cryogenic storage tanks. Compressors elevate the gas pressure before it enters the heat exchangers, where it is cooled using refrigerants. Once cooled, the gas is stored in cryogenic tanks until it is ready for shipment. This equipment is engineered to function efficiently under extremely low temperatures and high pressures, ensuring the safe and dependable production of LNG.
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What are the growth prospects and trends in the Liquefied Natural Gas (LNG) Liquefaction Equipment industry?
The liquefied natural gas (LNG) liquefaction equipment market growth is driven by various factors. The market for Liquefied Natural Gas (LNG) liquefaction equipment is experiencing notable expansion due to the increasing global demand for natural gas as a cleaner energy alternative. This growth is marked by the continual development of more advanced and efficient liquefaction technologies to meet the rising need for LNG. Key drivers include the ongoing expansion of LNG infrastructure, particularly in emerging markets, and the growing adoption of LNG as a fuel in various industries including transportation. Moreover, innovations in liquefaction equipment design, such as modular and space-saving units, are improving operational efficiency and reducing upfront costs. However, challenges such as high initial investments and stringent regulatory standards may pose obstacles to market growth. Hence, all these factors contribute to liquefied natural gas (LNG) liquefaction equipment market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Equipment Type:
Liquefaction Units
Heat Exchangers
Compressors
Storage Tanks
Pumps
Others
By Capacity:
Small-Scale (<0.5 MTPA)
Mid-Scale (0.5-2 MTPA)
Large-Scale (>2 MTPA)
By Process Cycle:
Cascade Process
Mixed Refrigerant Process
Shell-And-Tube Process
Others
By Technology:
Conventional LNG Liquefaction
Floating LNG Liquefaction
Modular LNG Liquefaction
By End-Use Industry:
Power Generation
Transportation
Industrial
Residential & Commercial
By Application:
Export/Import Terminals
Bunkering Facilities
Peak Shaving Plants
Distributed LNG Production Units
Segmentation By Region:
North America:
United States
Canada
Europe:
Germany
The U.K.
France
Spain
Italy
Russia
Poland
BENELUX
NORDIC
Rest of Europe
Asia Pacific:
China
Japan
India
South Korea
ASEAN
Australia & New Zealand
Rest of Asia Pacific
Latin America:
Brazil
Mexico
Argentina
Middle East & Africa:
Saudi Arabia
South Africa
United Arab Emirates
Israel
Who are the key players operating in the industry?
The report covers the major market players including:
Air Products and Chemicals, Inc.
Linde plc
TechnipFMC plc
Siemens Energy AG
Chart Industries, Inc.
Mitsubishi Heavy Industries, Ltd.
General Electric Company
Bechtel Corporation
McDermott International, Inc.
Baker Hughes Company
Chiyoda Corporation
Saipem S.p.A.
JGC Corporation
Samsung Engineering Co., Ltd.
KBR, Inc.
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chemanalystdata · 1 year
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Liquid Nitrogen Market | Global Industry Size, Share, Analysis Report, 2030 | ChemAnalyst
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According to ChemAnalyst report, “Global Liquid Nitrogen Market: Plant Capacity, Production, Operating Efficiency, Demand & Supply, End Use, Distribution Channel, Region, Competition, Trade, Customer & Price Intelligence Market Analysis, 2015-2030”, Global Liquid Nitrogen market has shown considerable growth in historic period and is anticipated to achieve a healthy CAGR of 5.5% during the forecast period. Growing demand of Liquid Nitrogen due to its non-inflammable and non-toxic properties in research labs and in cryotherapy to remove the skin abnormalities like warts and actinic keratosis is expected to boost the global Liquid Nitrogen market in the upcoming years. The manufacturing of Liquid Nitrogen is highly associated with safety concerns on human health as well as environment before it can be used which further enhances the compliance standards.
Liquid Nitrogen is a cryogenic liquid which is colorless, odorless and extremely cold in nature. It is basically a liquefied form of Nitrogen that is produced by the process of fractional distillation of liquid air. The demand of Liquid Nitrogen is extremely high in various sectors due to its numerous applications such as cryopreservation of biological samples, removal of skin lesions, coolant for superconductors, freezing and transporting food products and others. Liquid Nitrogen is extensively used as a cryogen to perform cryosurgery and it also helps in grinding plastics or pulverization cryogenically. There are many technologies that are used for the manufacturing of Liquid Nitrogen with a range of specifications like purity, usage, portability, pattern and power consumption. The more cost-effective and suitable method than the traditional cryogenic distillation technology is Pressure Swing Adsorption (PSA). The exponentially increasing demand of Liquid Nitrogen by Food and Beverage industry due to its remarkable properties of cooling and refrigeration is likely to augment the global market growth of Liquid Nitrogen. LN2 is proven extremely beneficial in the retail food and beverage industry as it is widely used in restaurants for freezing food and drinks and for manufacturing ice creams and cocktails.
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Liquid Nitrogen is also used in food packaging industries as it protects food from rancidity and going stale. Other industrial applications of Liquid Nitrogen include rubber removal, temporary ground freeze, shrink-welding of machinery, metal hardening, pipe freezing etc. Growing demand for Liquid Nitrogen from end-user industries including healthcare, Automotive, metal production and others coupled with cost advantages associated to its production, would drive the consumption of Liquid Nitrogen in the forecast period. In the pharmaceutical industry, growing use of Liquid Nitrogen to restore the cold reaction temperature during production of medicines is expected to provide a strong impetus to the Nitrogen market worldwide over the next five years. Moreover, with the rise in applications for cryotherapies, cryosurgeries, and cryopreservation for curing skin, removing skin tags, skin cancers, and moles would further accelerate the consumption of Liquid Nitrogen across the medical sector. Many leading players are merging with new companies to strengthen the R&D department and improve the product portfolio and market footprint.
In 2020, Due to the consequence of COVID-19, Due to nationwide lockdowns and government restrictions by major emerging economies, many industries halted their operations which further impacted the global market. However, The demand of Liquid Nitrogen from food and beverage and healthcare sector declined due to the nationwide lockdown and government restrictions.
Region wise, North America holds the largest market share of the global demand of Liquid Nitrogen followed by APAC. Rising number of manufacturers and suppliers in region of North America is expected to strengthen the global supply-chain. Emerging countries like India and China in the Asia Pacific region have bolstered the market in recent years.
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The key players operating in the global liquid nitrogen market include L’Air Liquide SA, Air Products and Chemicals,Inc., Linde Group, Praxair Inc., Messer Group Gmbh, Taiyo Nippon Sanso, Nexair LLC., Emirates Industrial Gases Co. LLC., Southern Industrial Gas BHD and Gulf Cryo.
“Being linked to the downstream applications in the Food & Beverage industry, the Global Liquid Nitrogen Industry has shown an impressive growth along with the increasing population and changes in the preference of costumer. It is projected that India will become one of the biggest consumer markets of Liquid Nitrogen during the forecast period. In addition, growing per capita income worldwide poised a stronger outlook to the country’s Liquid Nitrogen demand. Due to the Pandemic, Nationwide lockdowns around the world had affected the global supply chain logistics and happens to cause immediate shortage of raw materials which led to the increase in the prices of Liquid Nitrogen. Meanwhile, China serves as the major holder with latest technologies. With new competitors emerging across the Liquid Nitrogen market, it is extremely important to keep an eye on which region will grab the biggest market shareduring the forecast period.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based management consulting firm promoting ChemAnalyst worldwide.
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Organoleptic Evaluation of Ice Cream with a Fuzzy Logic Approach
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Abstract
Ice cream is the most popular frozen dessert sold worldwide and the role of its consumer acceptance is vital. The increasingly growing demand for ice cream each year demands the larger production of ice cream both at large as well as small scale. Therefore, proper quality control of ice cream obtained from each of the freezing methods should be maintained. For this, the ice cream that is available commercially was compared with those obtained from the cryogenic freezer and direct liquid nitrogen (LN2) infusion technique using the fuzzy logic approach. The acceptability of ice cream samples was judged based on the quality attributes like viscosity, texture, flavor, overrun, and overall acceptability. After finding out the similarity values, the quality attributes were ranked as Texture > Overrun > Overall acceptability > Viscosity > Flavor w.r.t to the freezing technique applied. Also, the ice cream that is available commercially and cryogenically frozen ice cream was much more acceptable than the LN2 infusion method.
Keywords: Ice cream; Fuzzy; Quality attributes; Freezing; Similarity values
Introduction
Ice cream is a frozen dessert that is consumed worldwide and the demand for it depends mostly upon its quality parameters. Consumer acceptance is the utmost priority for successfully running a business. A good quality ice cream should be rich in taste, must have good body and texture, and a desirable amount of overrun and viscosity. All of these parameters play an important role while judging the overall acceptability of ice cream. Due to the growing demand for ice cream worldwide, the production of ice cream is carried out on a small scale as well as on a large scale. There are various types of mechanical refrigerators, cryogenic freezers, and other freezing techniques available in the market that is used for producing ice cream [1]. The quality parameters of ice cream are judged by comparing the sensory characteristics of ice cream from one that is available commercially, produced from a cryogenic freezer, and one that is directly produced by the infusion of Liquid Nitrogen (LN2) in ice cream mixture which is the most popular method for small scale production in most parts of the world. The quality of the end product differs significantly by changing the freezing method or technique. The freezing techniques greatly affect the ice crystal size distribution and structural development in ice cream. It affects various properties like textural and body characteristics, viscosity, overrun, etc.
There are various evaluation methods used to estimate the consumer acceptance of the product and to rank the importance of various quality attributes concerning each product. Sensory evaluation is one such method for the quality control of the product. The researcher’s focus from the last few years has increased greatly on the implementation of fuzzy logic in quality control for various food industries. Das [2] had elaborated on the applications of fuzzy logic in various food materials. Fuzzy logic is an important decision-making tool for the comparison of various quality parameters of the developed product. The reasoning process of sensory evaluation is expressed in terms of linguistic operators and experts [3]. Thus, for this type of problem where the information is uncertain and fuzzy, linguistic decision analysis can be carried out to model and manage [4]. In fuzzy modeling, the linguistic variables like “poor, fair, medium, good, and excellent” are used, and based on liking and disliking ranking of each quality attribute under each product is done. Each product is assigned quality attributes like texture, flavor, viscosity, and overrun, and the fuzzy logic approach can assist in finding the preference level of each quality attribute. The order of preference of each quality attribute can be decided by assigning them linguistic entities like “Not important, somewhat important, important, highly important and extremely important”. In the case of a newly developed product, fuzzy logic also helps in decisionmaking related to the acceptance or rejection of the product [5].
In this research article, the ice cream that is available commercially, cryogenically frozen ice cream, and ice cream produced from the LN2 infusion technique are compared for their sensory characteristics. The sensory parameters of each sample were compared using fuzzy logic approach and a method based on simple mathematical calculations was applied.
Materials and Methods
Preparation of Different Ice Cream Samples
Total 3 samples were gone through sensory evaluation. The first one was good to average commercial ice cream, the approximate composition of which is given in Table 1. For the preparation of the second and third samples, the ice cream mixture was formulated to contain the same composition as given in table 1. For this, a simple arithmetic rule was applied to calculate the amount of each ingredient required to prepare the ice cream mixture of the same composition. To prepare the mixture Amul Taza Homogenized toned milk having 3% fat and 8.5% MSNF, and Amul Fresh cream having 25% fat and 3.4% MSNF was used. Skim Milk Powder (SMP) with 1.5% fat and 96% MSNF was used to get desired total solid concentration in ice cream. The whole milk was initially blended with granulated sugar (purchased from the local market) and skim milk powder (SMP, Loba Chemie Pvt. Ltd. Mumbai, MH). The cream was then whipped with the commercial blender to give the ice cream a smooth texture and creamy taste and was added to the initially blended mixture of whole milk, sugar, and SMP. After this, Tween 80 (Polyoxyethylene sorbitan monooleate) (Merk Specialities Pvt. Ltd. Mumbai, MH) whose density varies from 1.06 to 1.09 gm/ml, and Gelatin powder (Loba Chemie Pvt. Ltd. Mumbai, MH) was added to the mixture. The mixture was then gently stirred for a uniform mix and kept in an ice bath to cool down. After this, the ice cream mix was placed in a deep freezer for aging at 4 ºC for overnight (24 hrs). (Table 1)
After preparation of the ice cream mixture, it is frozen by a cryogenic freezer and by the direct infusion of LN2 in the mixture. For freezing of ice cream by LN2 infusion method, an ice cream maker was used which is having the capacity of 5 liters. It consists of a planetary motion mixer in which there is a rotation of planetary blades on their own axis in addition to the rotation around the center of the mixing bowl. The speed of the rotor was kept constant throughout the experiment. Ice cream was poured into the bowl and the mixer was started. After this, LN2 was directly infused in the ice cream mixture and continuously stirred. The liquid nitrogen is inert, non-toxic, and extremely cold having a boiling point of -196 ºC (-320 ºF). The extremely low temperature of LN2 and substantial temperature difference between the product and LN2 results in quick freezing and formation of very small ice crystals in the resultant ice cream. After freezing from the cryogenic freezer and by LN2 infusion technique, frozen ice cream samples were kept at a temperature below -20 ºC until the temperature of ice cream reaches -18 ºC.
Selection of Panelists and Sensory Evaluation
By application of the fuzzy logic model, sensory properties of commercially available ice cream were compared with the ice cream frozen from the cryogenic freezer and LN2 infusion. Therefore, 3 samples were analyzed using the fuzzy logic approach and were coded as Ic1 (Commercially available ice cream), Ic2 (Ice cream prepared from a Cryogenic freezer), and Ic3(Ice cream prepared from LN2 Infusion). Total 10 panelists of good health having good ability to concentrate and analyze the sensory property of ice cream from the Department of Agricultural and Food Engineering, IIT Kharagpur was selected to carry out the sensory analysis. The norms of the American Society for Testing and Materials (ASTM) [6,7] were followed during the sensory evaluation of each sample. They were provided with the datasheet (Appendix I) in which they had to tick mark () under each quality attributes based on their liking and disliking and had to rate them as “poor, fair, medium, good and excellent”. The quality attributes that were selected include Viscosity, Texture, Flavor, Overrun, and Overall acceptability (OA). For finding out the quality attributes ranking of ice cream in general, the linguistic variable that was selected includes: “Not important, somewhat important, important, highly important and extremely important”. Ranking of all the ice cream samples was done using the triangular membership distribution function.
Analysis of Sensory Data Using Fuzzy Logic Approach
Analysis of sensory data and to find out the similarity values, there are 5 major steps involved which includes:
I. Calculation of sensory scores of each sample under each quality attributes in the form of triplets.
II. Calculating sensory scores of each quality attribute in general and finding out their relative weightage in the form of triplets (viz., QVrel, QTrel, QFrel, QORrel, QOArel).
III. Calculation of overall sensory scores (viz., S1O, S2O, and S3O)of each sample in the form of triplets.
IV. Converting five-point linguistic scale to six-point standard fuzzy scale (viz., F1, F2, F3, F4, F5, and F6) and finding out ten numbered overall membership function values (viz., B1, B2, and B3) of each sample.
V. Finding out the similarity values and ranking of each sample and also quality attribute in general.
Sensory scores of the samples under each quality attributes in the form of triplets
“Triplets” are the set of three numbers that represent the distribution pattern of triangular membership function in 5 point sensory scales as shown in Table 2.
The first number of the triplet indicates the value of abscissa where the value of membership function is one; the second number indicates the distance between the first number of the triplet and the left side where the value of membership function is zero; the third indicates the distance between the first number of the triplet and the right side where the value of membership function is zero (Figure 1). For example, in figure 1, the triangle “cd1e” represent the membership function under the category ‘Fair/Somewhat Important’ where triplets are (5 2.5 2.5) where the first number i.e. 5 denotes a value of abscissa where the value of membership function is one and next two number numbers i.e., 2.5 and 2.5 indicates the distance between the first number of the triplet to the left side and right side of the triangular distribution pattern, where the value of membership function is zero, respectively.
After this average sensory score of all the samples under each quality, attributes can be calculated using equation 1 which is given as
Where ‘x’ is the sample number, ‘Y’ is the quality attribute and ‘T’ is the total number of panelists. ‘b’ is the number of panelists who ranked the sample as ‘poor’ under that particular quality attribute. Similarly, c, d, e, and f are the number of panelists given fair, medium, good and excellent, respectively. The sensory scores will come out in the form of triplets.
Sensory scores of each quality attribute in general and their relative weightage
The average sensory score of each quality attribute, in general, can be calculated using equation 2. In this case, b, c, d, e, and f are the number of panelists given ‘not important’, ‘Somewhat Important’, ‘Important’, ‘Highly important’ and ‘Extremely important, respectively.
Where ‘Q’ is quality, ‘Y’ is the quality attribute and ‘T’ is the total number of panelists. The relative weightage of each quality attribute (QYrel) can be found out as the ratio of an average sensory score of each quality attribute and the sum of the first digit of all the quality attributes (Qsum). According to Routray& Mishra [8], the relative weightage of each quality attribute will always be the average sensory score divided by the sum of the first digit of the triplet.
Calculation of overall sensory scores
Overall Sensory scores can be found out by the sum of the product of the average sensory score of sample in the form of triplet and relative weightage for each quality attribute and can be given as
Where ‘x’ is the sample number, ‘V’ stands for viscosity, ‘T’ stands for Texture, ‘F’ stands for Flavor, ‘OR’ stands for overrun and ‘OA’ stands for Overall acceptability. The multiplication of the triplets associated with the average sensory score of the sample with triplet associated with the relative weightage of each quality attribute follows a certain multiplication rule. For example, (a,b,c) are triplets associated with the average sensory score of the sample, and (d,e,f) is the triplet associated with the relative weightage of each quality attribute, then
After this, we will get the overall sensory for the samples Ic1, Ic2, and Ic3.
Calculating overall membership function value
After finding out the overall sensory scores of each sample, 5 point linguistic scale is converted to 6 points standard fuzzy scale. Figure 2 shows the triangular distribution pattern of 6 point standard fuzzy scale. (Figure 2)
F1, F2, F3, F4, F5, and F6 are membership functions in a standard fuzzy scale. Each membership function is the set of 10 numbers which is given in Table 3. Each membership function defines a particular linguistic variable.
Now, to find out overall membership function values i.e., B1, B2, and B3 for each sample, graphical representation (Figure 3) were used which is indicating the membership function of the triplet. In the figure, we can see the triangle ABC representing the triangular membership function. Now, the overall membership function of each sample will be represented by a set of ten numbers. For this, it will be considered that, when the value of abscissa is less than (a - b) or greater than (a + c), the value of membership function is 0; whereas, when the value of abscissa is equal to ‘a’, then the value of membership function is 1. Mathematically, it can be represented as
The value of Bx for each sample’s triplets are calculated at x = 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10. The value of the overall membership function is the maximum value between 10 intervals from 0 to 10 and can be calculated using equation 5. (Figure 3)
Calculation of similarity values of ice cream samples and all quality attributes along with their ranking
After finding out the overall membership function of all three ice cream samples, similarity values of each sample can find out using equation 6 [9].
Sm{F,B} denotes the similarity value which is a function of F and B. FT and BT is the transpose of F and B, respectively. Once all the similarity values under a different category (Table 3) were calculated on the standard fuzzy scale for each sample, the category getting the highest score will define that particular sample/quality attribute. In the final stage, ranking of each sample/quality attribute was done based on their values on a standard fuzzy scale.
Results and Discussion
Fuzzy Analysis of Ice cream samples and their quality attributes
Table 4 shows the number of panelists who had given their rating in terms of linguistic variables like “poor, fair, medium, good, and excellent” to the ice cream that is available commercially, cryogenically frozen, and infused with LN2. The triplets were calculated using equation 1. Similarly, the number of panelists who considered quality attributes like viscosity, texture, flavor, overrun, and overall acceptability as “not important, somewhat important, important, highly important, extremely important” are shown in table 5 and their triplets were calculated similarly. The relative weightage of all the quality attributes is also given in Table 5.
*NI = not important; SI = somewhat important; IMP = important; HI = highly important; EI = extremely important
After this, the overall sensory scores were calculated using the procedure mentioned in section 2.3.3 and for each sample sensory scores come out in the form of triplets which is given in table 6. Using equation 5, the value of B’s for all the samples was also found out as shown in table 7. After attaining the F and B values, transpose of them was found out and equation 6 was used to finally get the similarity values of the sample on the standard fuzzy scale. A similar procedure was followed to find out the similarity value of the quality attribute. (Table 6-7)
Ranking of Ice cream Samples and their quality attributes
Similarity values of different ice cream samples are given in Table 8, based on which ranking has to be done. Figure 4(a) represents the similarity values of each sample in the radar plot. In the case of commercially available ice cream, the highest similarity value attained was 0.7273 which corresponds to the Good (F4) category on the standard fuzzy scale; for cryogenically frozen ice cream, the highest similarity value was 0.7469 and it is coming in the standard fuzzy scale range of Very Good (F5); and in case of LN2 infused ice cream, highest value achieved was 0.8665 which lies in the scale range of satisfactory (F3). Based on this, a ranking of individual samples was done and cryogenically frozen ice cream was given rank I while commercially available ice cream and LN2 infused ice cream were ranked II and III, respectively. The reason for this is that in the case of ice cream that was prepared from a cryogenic freezer, there was a larger temperature difference between cryogenic liquid and ice cream mix, which resulted in the formation of the smaller amount of ice crystals, which improves its textural and surface properties and results in much creamier and smoother ice cream. Therefore, it was found out that, IC from the cryogenic freezer (Very Good) > commercially available IC (Good) > LN2 infused IC (satisfactory). Also, by closely looking at the similarity values it is clear that similarity values of cryogenically frozen ice cream are very close to similarity values of commercially available ice cream. Therefore, it can be said that ice cream obtained from a cryogenic freezer closely resembles ice cream available commercially in terms of the panelist’s choices. (Table 8)
To check the importance of selected quality attributes concerning the fuzzy analysis carried out for ice cream samples, similarity values were calculated as shown in Table 9. Graphical representation of same is shown in Figure 4(b). The highest similarity values obtained were in the case of texture (0.8) and overrun (0.68) which lies in the standard fuzzy scale category of Highly Important (F5). Viscosity (1.067) and Overall Acceptability (1.110) have the maximum similarity value in the category Important (F4) while Flavor has the maximum similarity value in the category Somewhat Necessary (F2). From the values obtained, it was found that texture, overrun and viscosity plays an important role in the overall acceptability of ice cream. The sensory attributes like texture are also related to viscosity as viscosity clearly influences the mouthfeel which depends on the body and textural property. Overrun affects the amount of air incorporation and makes the ice cream more fluffy. The reason that flavor was considered less important as compared to other quality attributes is that all the three ice cream samples were of the same flavor (vanilla) and there is no or very little effect of the freezing technique on the flavor of ice cream. Therefore, the acceptability of ice cream by the consumer is mainly perceived by texture, viscosity, and overrun. From the results obtained, it was found that Texture > Overrun > Overall acceptability > Viscosity > Flavor and therefore, it was ranked accordingly. (Appendix I).
Appendix I
Fuzzy Logic Score Card For Sensory Evaluation of Different Ice Cream Samples
Product ____________
Made on_________
Tested on_________
Conclusion
The present study demonstrates the fuzzy logic approach for the quality acceptance of ice cream obtained from various freezing techniques. Fuzzy logic is an important tool that was efficiently applied in the present study for ranking the acceptability of ice cream obtained from different freezing sources. A similar approach was applied to rank the individual quality attributes in general. Based on the similarity values obtained, the quality attributes were ranked as Texture > Overrun > Overall acceptability > Viscosity > Flavor. It was found that texture and viscosity are interrelated as viscosity influences the mouthfeel which depends upon the surface and textural properties. Based on the rating given by panelists, it was found that commercially available ice cream and cryogenically frozen ice cream are the most acceptable ones while the ice cream prepared from the LN2 infusion method is the least acceptable as compared to the other two.
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