#biomass pellets import data
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seair · 2 months ago
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How to Find Biomass Pellets Buyers in India: A State-by-State Guide
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Discover how to find biomass pellets buyers in India with this state-by-state guide. Explore key markets, trends, and contacts to grow your business.
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anamseair · 2 months ago
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Explore India’s growing biomass pellet market in 2025. Find top biomass pellet buyers in India, suppliers, import data, and HS codes with ExportImportData.
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reasonsforhope · 1 year ago
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"The amount of electricity generated by the UK’s gas and coal power plants fell by 20% last year, with consumption of fossil fuels at its lowest level since 1957.
Not since Harold Macmillan was the UK prime minister and the Beatles’ John Lennon and Paul McCartney met for the first time has the UK used less coal and gas.
The UK’s gas power plants last year generated 31% of the UK’s electricity, or 98 terawatt hours (TWh), according to a report by the industry journal Carbon Brief, while the UK’s last remaining coal plant produced enough electricity to meet just 1% of the UK’s power demand or 4TWh.
Fossil fuels were squeezed out of the electricity system by a surge in renewable energy generation combined with higher electricity imports from France and Norway and a long-term trend of falling demand.
Higher power imports last year were driven by an increase in nuclear power from France and hydropower from Norway in 2023. This marked a reversal from 2022 when a string of nuclear outages in France helped make the UK a net exporter of electricity for the first time.
Carbon Brief found that gas and coal power plants made up just over a third of the UK’s electricity supplies in 2023, while renewable energy provided the single largest source of power to the grid at a record 42%.
It was the third year this decade that renewable energy sources, including wind, solar, hydro and biomass power, outperformed fossil fuels [in the UK], according to the analysis. Renewables and Britain’s nuclear reactors, which generated 13% of electricity supplies last year, helped low-carbon electricity make up 55% of the UK’s electricity in 2023.
[Note: "Third year this decade" refers to the UK specifically, not global; there are several countries that already run on 100% renewable energy, and more above 90% renewable. Also, though, there have only been four years this decade so far! So three out of four is pretty good!]
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Dan McGrail, the chief executive of RenewableUK, said the data shows “the central role that wind, solar and other clean power sources are consistently playing in Britain’s energy transition”.
“We’re working closely with the government to accelerate the pace at which we build new projects and new supply chains in the face of intense global competition, as everyone is trying to replicate our success,” McGrail said.
Electricity from fossil fuels was two-thirds lower in 2023 compared with its peak in 2008, according to Carbon Brief. It found that coal has dropped by 97% and gas by 43% in the last 15 years.
Coal power is expected to fall further in 2024 after the planned shutdown of Britain’s last remaining coal plant in September. The Ratcliffe on Soar coal plant, owned by the German utility Uniper, is scheduled to shut before next winter after generating power for over 55 years.
Renewable energy has increased sixfold since 2008 as the UK has constructed more wind and solar farms, and the large Drax coal plant has converted some of its generating units to burn biomass pellets.
Electricity demand has tumbled by 22% since its peak in 2005, according to the data, as part of a long-term trend driven by more energy efficient homes and appliances as well as a decline in the UK’s manufacturing sector.
Demand for electricity is expected to double as the UK aims to cut emissions to net zero by 2050 because the plan relies heavily on replacing fossil fuel transport and heating with electric alternatives.
In recent weeks [aka at the end of 2023], offshore wind developers have given the green light to another four large windfarms in UK waters, including the world’s largest offshore windfarm at Hornsea 3, which will be built off the North Yorkshire coast by Denmark’s Ørsted."
-via The Guardian, January 2, 2024
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datastring · 1 month ago
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Electric Feed Pellet Mill Market Set to Reach $448.0 Million by 2035
The Electric Feed Pellet Mill industry is poised for significant growth, with revenue expected to increase from $219.5 million in 2024 to $448.0 million by 2035. This reflects an average annual growth rate of 6.7% over the forecast period from 2024 to 2035.
Detailed Analysis - https://datastringconsulting.com/industry-analysis/electric-feed-pellet-mill-market-research-report
Key Applications Driving Market Demand
Electric Feed Pellet Mills are essential across several important applications, including:
Animal feed production
Fish feed processing
Biomass pellet manufacturing
Organic fertilizer production
These applications are driving the demand for efficient and reliable pellet mills, as well as innovation in product types, power sources, operating capacities, and pellet size requirements.
Industry Leadership and Competitive Landscape
The market is highly competitive, featuring several prominent companies such as:
Andritz Group
CPM Pellet Mill
Satake Corporation
Zhengchang
Henan Richi Machinery
Jiangsu Liangyou International Mechanical Engineering
Shanghai Shende Machinery
Muyang Co Ltd
Lark Engineering
Schutte Buffalo LLC
Buhler Group
Sinova
The expanding market is fueled by growing demand for energy-efficient feed processing equipment and technological advancements in animal feed production. Industry trends like increasing livestock farming and aquaculture further support market growth.
Emerging Opportunities and Strategic Growth Areas
Key opportunities driving future growth include:
Technological innovations offering new pathways for expansion
Market entry and growth in developing regions
Strategic collaborations and partnerships aimed at market penetration
Major demand hubs for these opportunities include the U.S., China, Germany, Brazil, and Australia.
Regional Market Dynamics and Ecosystem Evolution
North America and Asia-Pacific are the most active regions in the Electric Feed Pellet Mill market. Despite challenges such as high initial investment costs and technological barriers, the ecosystem—from raw material suppliers and component manufacturers to producers and end users—is expected to evolve and expand.
Industry players are also pursuing strategic growth in emerging markets like Nigeria and Indonesia to diversify revenue streams and expand the total addressable market (TAM).
About DataString Consulting
DataString Consulting offers a comprehensive range of market research and business intelligence services tailored for both B2C and B2B markets. With over 30 years of combined experience, DataString’s leadership team specializes in delivering bespoke market research projects that align with specific strategic business goals.
Monitoring over 15 industries continuously, DataString combines data aggregation and expert insights to identify high-growth market segments. Their services include strategy consulting, opportunity assessment, and solution-oriented approaches designed to address complex business challenges and drive growth.
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exportimportdataa · 2 months ago
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Explore India’s growing biomass pellet market in 2025. Discover key buyers, import data, top sectors, and how to connect with reliable biomass pellet buyers and importers.
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walkingghotst · 2 months ago
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Europe Wood Pellet Market Emerging Technologies, and Growth by Forecast (2021-2028)
The Europe wood pellet market is expected to grow from US$ 8,285.21 million in 2021 to US$ 18,206.29 million by 2028; it is estimated to grow at a CAGR of 11.9% from 2021 to 2028.
Europe Wood Pellet Market Introduction
Across major European economies like Germany, France, the UK, and Italy, the wood pellet market has demonstrated notable stability in the face of the COVID-19 pandemic, according to an annual report from the USDA Foreign Agricultural Service’s Global Agriculture Information Network. This report indicates that Europe consumed approximately 29 million metric tons of wood pellets in 2018, solidifying its position as the world's largest consumer. These pellets are utilized for both residential heating and industrial heat and power generation throughout the region. Furthermore, the report notes that Europe currently accounts for about 30% of global pellet production, yet its consumption volume is the highest globally. Countries such as Italy and Germany are identified as significant growth markets for the use of wood pellets in residential heating systems. The UK is a major consumer, followed by Italy and Denmark. Germany is a leading producer of wood pellets within the EU, with Sweden and Latvia also contributing significantly to production. The region's strong shift towards renewable energy sources identifies biomass, and specifically wood pellets, as a critical component in achieving its energy targets.
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Europe Wood Pellet Strategic Insights
Strategic insights into the Europe Wood Pellet market provide a data-driven examination of the industry's structure, encompassing prevailing trends, key market players, and specific regional characteristics. These insights furnish actionable recommendations, empowering readers to differentiate themselves from competitors by pinpointing unexploited market segments or formulating unique value propositions. By effectively utilizing data analytics, these insights enable industry stakeholders—including investors, manufacturers, and others—to anticipate shifts within the market. A forward-looking perspective is of paramount importance, aiding stakeholders in preparing for market evolutions and positioning themselves for sustained success within this dynamic region. Ultimately, impactful strategic insights equip readers to make well-informed decisions that foster profitability and facilitate the achievement of their business objectives within the market.
Europe Wood Pellet Regional Insights
The geographic scope of the Europe Wood Pellet market defines the particular areas in which a business operates and competes. A comprehensive understanding of local variations, such as differing consumer preferences (for instance, demand for specific plug types or battery backup durations), diverse economic conditions, and varying regulatory frameworks, is essential for tailoring strategies to specific markets. Businesses can expand their market reach by identifying underserved areas or adapting their product and service offerings to align with local demands. A focused market approach enables more effective resource allocation, targeted marketing campaigns, and improved positioning relative to local competitors, ultimately driving growth within those focused areas.
EUROPE WOOD PELLET MARKET SEGMENTATION
Europe Wood Pellet Market: By Application
Residential Heating
Commercial Heating
CHP (Combined Heat and Power)
Power Generation
Europe Wood Pellet Market: By Country
Germany
France
Italy
UK
Russia
Rest of Europe
Europe Wood Pellet Market: Company Profiles
ANDRITZ
Enviva Lp
Graanul Invest
Pinnacle Renewable Energy Inc
TANAC
Wood & Sons
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vipinmishra · 1 year ago
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Industrial Wood Pellets Market 2029 is Anticipated to Register Robust Growth
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Biomass as a Clean Energy Source and Increased Demand from Power Plants are factors driving the Global Industrial Wood Pellets Market in the forecast period 2025-2029.
According to TechSci Research report, “Industrial Wood Pellets Market - Global Industry Size, Share, Trends, Opportunity, and Forecast 2019-2029”, the Global Industrial Wood Pellets Market is expected to register robust growth during the forecast period. Since wood pellets form a clean, environmentally beneficial, sustainable, and renewable biomass, the rising global demand for renewable energy is driving the demand for wood pellets to reduce the usage of fossil fuels that contributes to global warming. This is expected to contribute to the growth of the industry over the forecast period. The key driving factor for increasing production of wood pellets in the U.S. includes rising demand from the global market.
Since some countries are not able of covering their own wood pellets demand with their own forest biomass for energy production, and their own industry infrastructure and they are importing wood pellets from the U.S. Manufacturers of wood pellets can buy wood biomass either from wood dealers or directly from private landowners through loggers. Wood pellets producers can also procure wood fiber from mill residuals, which are leftovers from other forestry sectors like paper and sawmills. Transportation costs are typically the primary cost component for mill residuals in this supply model as they can be purchased at lower costs than pulpwood and roundwood.
The market for different shipping firms, brokers, and traders is extremely complicated and fragmented in nature. Additionally, the transportation of wood pellets has unique characteristics that limit the number of ports and routes that are both affordable and able to handle huge quantities of wood pellets
Browse over XX market data Figures spread through XX Pages and an in-depth TOC on the "Global Industrial Wood Pellets Market.” https://www.techsciresearch.com/report/industrial-wood-pellets-market/23670.html
Based on Application, The Heating segment emerged as the dominating segment in 2023. Pellets are a solid biomass fuel, primarily produced from wood residues and agricultural by-products like straw. Specific advantages of pellets as compared to unprocessed biomass include standardized properties, high energy content, and high density. Industrial Wood Pellets for heating applications are primarily used in residential and commercial sectors for food, cooking and grilling, and supplying heat to homes. Since the cost of pellets remained cheaper than that of other fuels for a long time, it has become a more economical option, addressing the primary concern of the residential and commercial sectors. In addition to this, in 2020, the Industrial Wood Pellets, due to oversupply, experienced a sharp decline in their prices.
As a renewable energy source, Industrial Wood Pellets have received subsidies and incentives from the governments in many countries, and many countries either launched or updated their policies and schemes related to Industrial Wood Pellets for heating applications in recent years. For instance, in January 2021, a new Wood and Pellet Heater Investment Tax Credit (ITC) came into effect in the United States, under which consumers buying highly efficient wood, pellet stoves, or larger residential biomass heating systems can claim a 26% tax credit that is uncapped and based on the full cost (purchase and installation) of the unit.
On a similar note, from April 2021, the United Kingdom amended its Domestic Renewable Heat Incentive (Domestic RHI) of 2014 to aim at promoting the use of renewable heat at residential levels. Within the amendment, the Department for Business, Energy & Industrial Strategy (BEIS) announced the relaxation of the requirement for accreditation applications to be submitted within twelve months of the eligible heating system's commissioning date. In addition, the participants whose heating system was commissioned on or after March 1, 2019, became eligible to apply for the Domestic RHI until the scheme closes to the new applications on March 31, 2022. Therefore, owing to the above points, the heating application is expected to dominate the wood pellet during the forecast period.
Based on Region, Europe is projected to dominate the market throughout the forecast period.  In Europe, the demand for Industrial Wood Pellets is expected to increase by 30-40% between 2024 and 2029. Europe represents more than 50% of global pellet demand.  European nations' use of pellets includes residential heating (40%), power plants (36%), commercial heating (14%), and combined heat and power plants (10%). Moreover, pellets have also made their way into coal conversion projects in local authority or public administration buildings such as schools and offices.
Most of the co-firing power stations have either closed or converted since these early projects, with several making a move to 100% Industrial Wood Pellets for fuel. The largest of these is Drax Power Station in North Yorkshire, which has converted four of its six 65 MWe generating units to run exclusively on biomass and is currently evaluating options for its remaining two coal-fired units. 
Key market players in the Global Industrial Wood Pellets Market are: -
Enviva Partners LP
AS Graanul Invest
Drax Group PLC
Fram Renewable Fuels LLC
Segezha Group JSC
Lignetics Inc.
Biopower Sustainable Energy Corp.
Download Free Sample Report https://www.techsciresearch.com/sample-report.aspx?cid=23670
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“The industrial wood pellets market is driven by several key factors. Government initiatives and renewable energy policies play a pivotal role, fostering a transition towards cleaner energy sources. As countries worldwide commit to reducing carbon emissions, the carbon-neutral nature of wood pellets aligns with sustainability goals. Additionally, the rising awareness of climate change has prompted a shift towards eco-friendly alternatives, boosting the demand for wood pellets. Technological advancements have enhanced the efficiency of pellet production, making it more economically viable. The use of wood pellets contributes to energy security by diversifying energy sources and reducing dependence on imported fossil fuels.
Power plants increasingly adopt wood pellets, either exclusively or through co-firing with coal, as an effective strategy to lower carbon emissions. Financial incentives and subsidies provided by governments further encourage businesses to invest in biomass energy, propelling market growth. Global trade in wood pellets, coupled with increased investments in renewable energy infrastructure, fosters a dynamic and expanding market. The industrial wood pellets sector not only addresses environmental concerns but also reflects a global commitment to sustainable practices, making it a crucial player in the ongoing transition to a cleaner and more resilient energy landscape.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based global management consulting firm.
“Industrial Wood Pellets Market - Global Industry Size, Share, Trends, Opportunity, and Forecast Segmented by Application (Heating and Power Generation), By End User (Power Generation, Food Processing, Waste Management & Recycling, Others), By Region, and By Competition 2019-2029” provides statistics & information on market size, structure, and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in Global Industrial Wood Pellets Market.
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Saudi Arabia Electronically Commutated Fans Market
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master-ps · 1 year ago
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Biomass Black Pellets Market, Share, Size, Trends, Forecast and Future Outlook
Biomass Black Pellets Market
The market research report provides a comprehensive analysis of the industry, with a specific focus on the Biomass Black Pellets Market. It examines the size, growth rate, and major trends within the Biomass Black Pellets Market, offering valuable insights into its current state and future prospects. The report explores the significance of Biomass Black Pellets in driving market dynamics and shaping business strategies. It investigates the market drivers, such as increasing consumer demand and emerging trends related to Biomass Black Pellets, providing a deep understanding of the factors influencing market growth. Additionally, the report assesses the competitive landscape within the Biomass Black Pellets Market, profiling key players and their market share, strategies, and product offerings. It also addresses market segmentation, identifying different segments within the Biomass Black Pellets Market and their unique characteristics. Overall, the market research report equips businesses operating in the Biomass Black Pellets Market with valuable information and actionable recommendations to capitalize on opportunities and navigate the challenges in the industry.
Request Free Sample Report @ https://www.vertexbusinessinsights.com/request-sample/167/biomass-black-pellets-market
This research covers COVID-19 impacts on the upstream, midstream and downstream industries. Moreover, this research provides an in-depth market evaluation by highlighting information on various aspects covering market dynamics like drivers, barriers, opportunities, threats, and industry news & trends. In the end, this report also provides in-depth analysis and professional advices on how to face the post COIVD-19 period.
The research methodology used to estimate and forecast this market begins by capturing the revenues of the key players and their shares in the market. Various secondary sources such as press releases, annual reports, non-profit organizations, industry associations, governmental agencies and customs data, have been used to identify and collect information useful for this extensive commercial study of the market. Calculations based on this led to the overall market size. After arriving at the overall market size, the total market has been split into several segments and sub segments, which have then been verified through primary research by conducting extensive interviews with industry experts such as CEOs, VPs, directors, and executives. The data triangulation and market breakdown procedures have been employed to complete the overall market engineering process and arrive at the exact statistics for all segments and sub segments.
Biomass Black Pellets Market Segment Analysis 
Biomass Black Pellets Market By Feed Stock Type
Wood Waste
Agricultural Residues
Biomass Black Pellets Market By End User
Power Generation
Industrial Processes
Residential Heating
Biomass Black Pellets Market By Region
North America
Europe
Asia Pacific
South America
Middle East & Africa
Ask Queries @ https://www.vertexbusinessinsights.com/enquiry/167/biomass-black-pellets-market
Table of Content
 1         Executive Summary
 2         Market Introduction
 2.1         Definition
 2.2         Architecture
 2.3         Scope of the Study
 2.4         Related Stakeholders
 3         Research Methodology
 3.1         Introduction
 3.2         Primary Research
 3.2.1        Key Insights
 3.2.2        Breakdown of Primary Interviews
 3.3         Secondary Research
 3.3.1        Important Sources
 3.4         Market Size Estimation Approaches
 3.4.1        Top-Down Approach
 3.4.2        Bottom-Up Approach
 3.4.3        Data Triangulation
 3.5         List of Assumptions
 4         Market Dynamics
 4.1         Introduction
 4.2         Drivers
 4.3         Restraints
 4.4         Opportunities
 4.5         Porter's Five Forces Model Analysis
 4.6         Value Chain Analysis
 4.7         Impact of COVID-19 on Global Biomass Black Pellets Market
 5         Global Biomass Black Pellets Market, By Feed Stock
 5.1         Introduction
 5.2         Heavy haul Rails
 5.3         Light Rail
 5.4         High-Speed Rail
 5.5         Crane Rails
 5.6         Standard Rail
 6         Global Biomass Black Pellets Market, By End User
 6.1         Introduction
 6.2         Passenger Rail
 6.3         Freight Rail
 6.4         Urban Transit
 6.5         Industrial Use
 7         Global Biomass Black Pellets Market, By Region
 7.1         Introduction
 7.2         North America
 7.2.1        US
 7.2.2        Canada
 7.2.3        Mexico
 7.3         Europe
 7.3.1        Germany
 7.3.2        UK
 7.3.3        France
 7.3.4        Italy
 7.3.5        Spain
 7.3.6        Rest of Europe
 7.4         Asia-Pacific
 7.4.1        China
 7.4.2        India
 7.4.3        Japan
 7.4.4        South Korea
 7.4.5        Rest of Asia-Pacific
 7.5         Middle East and Africa
 7.6         South America
 8         Competitive Landscape
 8.1         Introduction
 8.2         Vendor Evaluation Criteria
 8.3         Vendor Share Analysis, 2021
 8.4         Recent Developments, 2019-2021
 8.4.1        New Feed Stock Launches
 8.4.2        Partnerships
 8.4.3        Mergers or Acquisitions
 8.4.4        Business Expansions
 9         Company Profiles
(This section covers the Business Overview, Financial Overview, Feed Stock and Feed Stock Offerings, Recent Developments, SWOT Analysis, and Key Strategies of the top market vendors. The given sequence does not represent their rankings in the market.
 9.1         Enviva Partners
 9.2         Drax Group
 9.3         ANDRITZ AG
 9.4         Hofor (Copenhagen Energy)
 9.5         RWE AG
 9.6         Valmet Corporation
 9.7         FutureMetrics
 9.8         Dong Energy (Ørsted)
 9.9         Pinnacle Renewable Energy Inc.
 9.10     Solid Energy New Zealand
 9.11     Green Circle Bio Energy
 9.12     German Pellets GmbH
 9.13     Vyborgskaya Cellulose
 9.14     Stora Enso
 9.15     Georgia Biomass
 9.16     Prenergy
 9.17     Energex
 9.18     Biomasa Peninsular
 9.19     Poet-DSM Advanced Biofuels
 9.20     EP Infrastructure
 9.21     Hawkins Wright
 9.22     NREL (National Renewable Energy Laboratory)
 9.23     Geolife
 9.24     Pacific BioEnergy Corporation
 9.25     Neova AB
 9.26     Others
 10     Appendix
 10.1     Discussion Guide
 10.2     Customization Options
 10.3     Related Reports
Continue…
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marketresearchblogimr · 3 years ago
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what is Biopellet Energy.?
According to this latest study, the growth in the Biopellet Energy market will change significantly from the previous year. Over the next six years, Biopellet Energy will register a CAGR in terms of revenue, and the global market size will reach USD in millions by 2028.
The latest study released on the Global Biopellet Energy Market by introspective market research evaluates market size, trend, and forecast to 2028. The Biopellet Energy market study covers significant research data and proofs to be a handy resource document for managers, analysts, industry experts and other key people to have ready-to-access and self-analysed study to help understand market trends, growth drivers, opportunities and upcoming challenges and about the competitors
Key Players Mentioned in the Market Biopellet Energy Research Report:
Enviva, Mitsubishi, Weyerhaeuser NR, Atikokan Renewable Fuel, Abellon Clean Energy, Billington Bioenergy, Biomass Secure Power, BIOAGRO Energy Osterlen, BiopelletSro, Confluence Energy, Canadian Bio Pellet, Corinth Wood Pellets, DoldHolzwerke, Curran Renewable, DONG Energy, Ecowood Fuels, Brookridge Timber, Eagle Bio-Fuels
This Biopellet Energy Market report covers important market segments on the basis of type, application, and region. The regional analysis segment includes key regions such as Europe, North America, the Middle East, Africa, and the Asia Pacific. It shows important business metrics including population density, quality, development, and overall market scenarios. It also discusses important data covering key industry topics such as market expansion and market situation developments. This in-depth Biopellet Energy market report also sheds light on important technologies and helps organizations better understand their customers’ buying habits. It shows the global market scenario for the forecast period 2022-2028
Bio-pellet is a renewable energy source that can be used to replace low-grade coal. Biomass waste from palm plantations and the palm industry is difficult to use as a bio-pellet material. In 2011, Indonesian palm plantations covered 8.9 million hectares and were extensively distributed throughout the country. Pellets are made by compressing wood that has been processed via a hammer mill to create a homogenous dough-like lump. This bulk is fed into a press and squeezed through a die with the correct size holes (normally 6 mm diameter, sometimes 8 mm or larger).
Biopellet Energy Market Segmentation
The report surveys the presence of the distinctive market segment a global as well as the regional scale that defines the Biopellet Energy market size, demands and growth opportunities, and market areas that need to work on.
Biopellet Energy Market Segment by Types, Estimates, and Forecast by 2028
Pellet stoves, Boilers, Burners
Biopellet Energy Market Segment by Applications, Estimates, and Forecast by 2028
Residential and commercial heating, Power Generation 
The base on geography, the world market of Biopellet Energy has been segmented as follows:
North America includes the United States, Canada, and Mexico
Europe includes     Germany, France, UK, Italy, Spain, Russia, and the Rest of Europe
South America includes Brazil, Argentina, Nigeria, Chile, and South America
The Asia Pacific includes Japan, China, South Korea, Australia, India, Rest of Europe
The scope of the Report:
The report segments the global Biopellet Energy market based on application, type, service, technology, and region. Each chapter under Biopellet Energy segmentation allows readers to grasp the nitty-gritty of the market. A magnified look at the segment-based analysis is aimed at giving the readers a closer look at the opportunities and threats in the Biopellet Energy market. It also addresses political scenarios that are expected to impact the Biopellet Energy market in both small and big ways. The report on the global Biopellet Energy Market examines changing regulatory scenarios to make accurate projections about potential investments. It also evaluates the risk for new entrants and the intensity of the competitive rivalry
Biopellet Energy market research provides an in-depth analysis of business dimensions, trends distribution, growth, driver behaviour, and other factors. Every segment associated with current trends, profits margins, local forecasts, and growth of the company, and plans for Biopellet Energy market players is covered by this research. This research covers all segments that are associated with current trends and profits margins, as well as local forecasts and the growth of the company. It also includes plans for Biopellet Energy market players
Feel free to ask your queries at
https://www.introspectivemarketresearch.com/inquiry/13279
Objectives of the Report
-To carefully analyse and forecast the size of the Biopellet Energy market by value and volume.
-To estimate the market shares of major segments of the Biopellet Energy
-To showcase the development of the Biopellet Energy market in different parts of the world.
-To analyse and study micro-markets in terms of their contributions to the Biopellet Energy market, their prospects, and individual growth trends.
-To offer precise and useful details about factors affecting the growth of the Biopellet Energy
-To provide a meticulous assessment of crucial business strategies used by leading companies operating in the Biopellet Energy market, which include research and development, collaborations, agreements, partnerships, acquisitions, mergers, new developments, and product launches.
Note – The Covid-19 (coronavirus) pandemic is impacting society and the overall economy across the world. The impact of this pandemic is growing day by day as well as affecting the supply chain including Biopellet Energy industry. The COVID-19 crisis is creating uncertainty in the stock market, massive slowing of supply chain, falling business confidence, and increasing panic among the customer segments. The overall effect of the pandemic is impacting the production process of several industries including Biopellet Energy
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marketerefforts · 3 years ago
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Biomass Moulding Fuel Market Research Report 2021 - Industry Size, Share, Demands, Regional Analysis & Estimations Till 2027
The Biomass Moulding Fuel Market Report, in its latest update, highlights the significant impacts and the recent strategical changes under the present socio-economic scenario. The Biomass Moulding Fuel Market industry growth avenues are deeply supported by exhaustive research by the top analysts of the industry. The report starts with the executive summary, followed by a value chain and marketing channels study. The report then estimates the CAGR and market revenue of the Global and regional segments.
Base Year: 2020
Estimated Year: 2021
Forecast Till: 2027
The report classifies the market into different segments based on type and product. These segments are studied in detail, incorporating the market estimates and forecasts at regional and country levels. The segment analysis is helpful in understanding the growth areas and potential opportunities of the market.
Get | Download FREE Sample Report of Global Biomass Moulding Fuel Market @ https://www.decisiondatabases.com/contact/download-sample-11651
A special section is dedicated to the analysis of the impact of the COVID-19 pandemic on the growth of the Biomass Moulding Fuel market.  The impact is closely studied in terms of production, import, export, and supply.
The report covers the complete competitive landscape of the Worldwide Biomass Moulding Fuel market with company profiles of key players such as:
Enviva
Georgia Biomass
New England Wood Pellets
Canadian Biofuel
Billington Bioenergy
Pacific BioEnergy
Pinnacle Renewable Energy Group
VIRIDIS ENERGY
EC Biomass
Shengchang Bioenergy
Sinopeak
Mingke Energy
Senon Renewable Energy
Suji Energy-saving Technology
Zhurong Biology
Tianhe Jiakang
Aoke Ruifeng
 Want to add more Company Profiles to the Report? Write your Customized Requirements to us @ https://www.decisiondatabases.com/contact/get-custom-research-11651
Biomass Moulding Fuel Market Analysis by Product Types
Straw Briquette
Rice Husk Molding Fuel
Sawdust Molding Fuel
Other
Biomass Moulding Fuel Market Analysis by Applications
Textile
Printing and Dyeing
The Paper
Food
Rubber
Plastic
Chemical
Medicine
Other
Biomass Moulding Fuel Market Analysis by Geography:
North America (USA, Canada, and Mexico)
Europe (Germany, UK, France, Italy, Russia, Spain, Rest of Europe)
Asia Pacific (China, India, Japan, South Korea, Australia, South-East Asia, Rest of Asia-Pacific)
Latin America (Brazil, Argentina, Peru, Chile, Rest of Latin America)
The Middle East and Africa (Saudi Arabia, UAE, Israel, South Africa, Rest of the Middle East and Africa)
Key questions answered in the report:
 What is the expected growth of the Biomass Moulding Fuel market between 2022 to 2027?
Which application and type segment holds the maximum share in the Global Biomass Moulding Fuel market?
Which regional Biomass Moulding Fuel market shows the highest growth CAGR between 2022 to 2027?
What are the opportunities and challenges currently faced by the Biomass Moulding Fuel market?
Who are the leading market players and what are their Strengths, Weakness, Opportunities, and Threats (SWOT)?
What business strategies are the competitors considering to stay in the Biomass Moulding Fuel market?
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Toxopathological Studies on Some Antimicrobial Drugs in Nile Tilapia (Oreochromis Niloticus) and Catfish (Clarias Gariepinus)
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Introduction
 Fish consider one of the healthiest food as it is low in fat and rich in protein and omega 3 Fayet-Moore [1] & Yipel [2]. The fish farming industry is rapidly expanding in Egypt, as well as in other countries, it has been associated with recurrent bacterial infectious diseases. Farmed Nile tilapia represents more than 58.45, while catfish production is about 3.08% of the total aquaculture harvest in Egypt Gafrd [3]. Antimicrobial medications are used extensively in aquacultures for prophylactic or therapeutic purposes during microbial infections which may result in environmental pollution, development of resistant bacteria and my induce toxicity to human and animals Aly [4] & Khalil [5]. The availability of adequate data on the pharmacokinetics of antimicrobial agents in farmed fish is very important in order to minimize the environmental impacts of the drugs used in aquaculture. Since the excess amount of drugs can do harm to people, the European Union (EU) and the U.S. Food and Drug Administration (FDA) prescribed a Maximum Residue Limits (MRLs) for these drugs. The EU MRLs of CPX and SDM in fish were established at 100μg/kg Rezk [6] and 6-8μg/kg for quinolens in the edible tissues of fish Victoria [7].  
 Quinolones are effective antibacterial drugs widely used in human and veterinary medicine because of their potential therapeutic efficacy Plakas [8], Guo [9], Victoria [7] & Koc [10]. Ciprofloxacin is one of the most potent quinolones used to treat infections with gram negative bacteria as Escherichia coli, Pseudomonas aeruginosa, Salmonella spp., Shigella spp. and Haemophilus spp., and is also effective against some grampositive bacteria such as Staphylococcus aureus Davis [11] & Van Bambeke [12]. Oxytetracycline (OTC) is an antibacterial agent of tetracycline family that is extensively used for treatment of certain bacterial diseases in aquaculture all over the world Ambili [13]. The withdrawal time for edible tissue is differing according to the water temperature and the type of aquatic system Jeffry [14]. Because of the wide spread and long-time use of OTC, many residue studies have been recorded Rigos [15-16] & Julie [17].
 Sulfonamides are the oldest antimicrobial agents and still play an important role in aquaculture treatments. Sulfamethazine (SMZ) is the most used antimicrobial drug in Veterinary field. Sulfonamides residues have been repeatedly detected in the aquatic environment Kolpin [18] & Batt [19]. Moreover sulphamethoxazole residues have been reported in shrimp by Wang [20]. Sulfamethoxazole is an effective bacteriostatic against gram positive as well as gram negative bacteria; it affects bacteria by inhibiting folic acid synthesis Baran [21]. Antimicrobial drug residues may be transferred through food-chain to human and induce antibiotic resistance. To our knowledge, however, very few data are available about residues of ciprofloxacin, oxytetracycline and SDM in farmed Nile tilapia (O. niloticus) and catfish (C. gariepinus) reared under field conditions. However, this study aimed to investigate serum concentration peaks of ciprofloxacin, oxytetracycline and SDM post-treatment and their residues in liver, kidney and muscles together with serum biochemical estimation and histopathological examinations.
Materials and Methods
Animals and diet
Three hundred and sixty fish from each of Nile tilapia (O. niloticus), and catfish (C.gariepinus) (weight, about 50 and 75g for tilapia and catfish, respectively) were supplied from Central Lab for Aquaculture Research (CLAR), Egypt and used in this experiment that was performed in triplicates, following the Universal Directive on the protection of animals used for scientific purposes. Four different basal diets (control, CIP, oxytetracycline and sulfadimethoxine) were prepared in the form of pellets to use in the study. Basal diets were prepared by grinding the corn to granules using 0.5mm mesh (Thomes-Willey Laboratory Mill Model 4). Ingredients were mixed mechanically by horizontal mixture (Hobarts model D300T) at a low speed for 30 minutes. Oil (vegetable & cod liver) was added gradually to assure the homogeneity of the ingredients, the mixing speed increased for 5 minutes during the addition of water (600ml water) until the mixture began to clump. Pellets were then prepared using a pellet machine (CPM California pellet mill Co.) with 0.5cm diameter, and pellets were left to dry in air for 24 hrs (Table 1).
Fish with a history of no previous medication, were divided into 4 groups (each of three replicates, 30 fish each) and held in floating cages placed in fish farm ponds and group 1 fed a basal diet while groups 2-4 fed a medicated diet containing 1g CIP, 7.5g OTC and 25mg SDM/kg ration; respectively on a daily bases for five successive days. The temperature was recorded every 12h and adjusted to (26-30°C). The treatment was carried out once daily at 9 a.m. for 5 successive days at a rate of 1 .0% biomass using automatic feeders. Salinity, pH and total hardness were adjusted to, 3±1.1%, 8.21±0.21 and 38.9±1.9mg/L; respectively.
Sampling of the fish
The first sampling day was the 5th day of medication (0 day post treatment), and on the 1st, 3rd, 7th, 14th, and 21st days after the end of treatment with the antimicrobials. At each time of sampling, 15 fish from each group (5fish/replicate) were netted. Fish were anesthetized by immersion in water containing 0.1ppm MS-222 and blood samples were collected. Serum samples and muscle, liver and kidney specimens were collected from all groups. Muscle samples were taken from the dorso-lateral body area just posterior to the operculum. Each specimen was placed in a polyethylene bag and stored at -80°C until they were analyzed. CIP, OTC and SDM concentrations were estimated by ELISA.
Biochemical Studies
The activities of Asparate Aminotransferase (AST), Alanine Aminotransferase (ALT), Alkaline Phosphatase (AP), creatinine and urea, were estimated using commercial diagnostic Kits (Human Diagnostics, Germany). Methods were carried out according to the company directions.
Histopathological examinations
Tissues specimens from the muscles, liver and kidneys were collected at 5th day post-treatment and processed routinely according to Drury and Wallington (1980). Sections were stained with hematoxylin and eosin (H&E) and examined by light microscope.
Statistical analysis:
Statistical analysis was performed using the one way analysis of variance (ANOVA) followed by Duncan’s multiple range test to determine the differences among the six fish groups (mean at significance level of P<0.05). All analyses were run on the computer using SAS program Chris Hemedinger [2].
Results
Drug residues
Mean concentrations of the drugs (mean ± SE) vs. time in the serum, liver, kidney and musculature were recorded in (Table 1-3). The peak concentrations of the three drugs in serum were at 0 day. The lowest drug residues were seen in the muscles throughout the entire experiment.
Ciprofloxacine: Results obtained after oral dose of 1 g CIP/kg ration for 5 successive days were shown in (Table 2). The highest recorded concentrations of CIP in sera of Nile tilapia and Catfish were (1.91±0.38ug/ml) and (1.78±0.36ug/ml), respectively at 0 day. CIP concentrations were identified all over the experiment in kidneys with the highest concentrations (2.1±0.65ug/g) at 1st day in Nile tilapia and (1.80±0.64ug/g) at 0 day in kidneys in catfish. CIP neither detected in muscles of Nile tilapia nor of Catfish at 14th and 21st days post-treatment while, were not detect in livers of both kinds of fish at 21st days post-treatment.
Oxytetracycline: (Table 3) shows the serum, liver, kidney and muscle concentrations of OTC versus time in Tilapia and Catfish after oral administration of 75mg OTC/kg ration for 5 successive days. Peaks of OTC in serum were (2.15±0.41ug/ ml) and (2.02±0.31ug/ml) at 0 day in Nile tilapia and Catfish; respectively while, it was not detect in sera of both fish species after 14th and 21st days but detected only in one Catfish (0.03μg / ml) at 7th day post treatment. The highest tissue residues of OTC were (6.1±1.21ug/g) and (7.4±1.35ug/g) in liver of Nile tilapia and Catfish; respectively at 0 day of the treatment. In Nile tilapia and Catfish the OCT concentrations in kidneys were 0.08±0.04 and 0.05±0.02 (μg /g); respectively at 21st day post treatment. The lowest drug residues were in muscles throughout the entire experiment. OCT concentrations were detected in muscles of Nile tilapia and Catfish at (0.10±0.03ug/g) and (0.14±0.02ug/g); respectively after 21 days post treatment
Sulphadimethoxine: (Table 4) showed the mean concentrations of SDM in Nile tilapia and Catfish sera and tissues versus time profile after oral administration of 25mg SDM/kg ration for 5 successive days. The highest serum concentrations of SDM were (3.12±0.32ug/ml) and (2.98±0.46ug/ml) at 0 day in Nile tilapia and Catfish; respectively while it was detected in only one Tilapia fish (0.04μg /ml) at 7th day of treatment and not thereafter was detected. SDM was detected in kidneys of both Tilapia and catfish all over the experiment. SDM highest concentrations in kidney were at 0 day post-treatment (44.2±5.1ug/g) and (31.2±4.6ug/g) in Nile tilapia and Catfish; respectively. At 21st day of treatment; SDM was not detected in muscles and liver of Catfish but detected only in one Tilapia fish (0.11ug/g and 0.03ug/g in liver and muscles; respectively).
Biochemical results
(Figure 1,2) represented the biochemical results at 5th day of oral administration of CIP, OTC and SDM in both Nile tilapia and Catfish. ALT was significantly increased in both fish species after 5 days of oral administration of the three drugs compared with control. In Tilapia fish AST was significantly increased after administration of the three tested drugs while, in Catfish AST was significantly increased after administration of OTC and SDM in comparison with control. Creatinine was significantly increased in Nile tilapia with all three drugs but in Catfish it was significantly increased with OTC and SDM whereas not increased with CIP. Urea was significantly increased in Tilapia fish after administration of all drugs except OTC while, in Catfish urea was significantly increased in both OTC and SDM but not significantly changed in case of CIP compared with control.
Histopathological results
The oral administration of 1g CIP/kg ration for 5 successive days in Nile tilapia and Catfish at 5th days post-treatment, revealed minimal histopatholoigical alterations in comparison with the other treated groups. The musculature exhibited hyaline degeneration in few muscle bundles (Figure 3), the liver displayed nuclear pyknosis of some hepatocytes with mild parenchymal edema (Figure 4) while the kidneys showed proliferation of melanomachrophage cells and mild tubular nephrosis in the renal epithelium (Figure 5). The oral administration of 75mg OTC/kg ration, for 5 successive days in Tilapia and Catfish at 5th day posttreatment, revealed edema and focal hyaline degeneration in the musculature (Figure 6). Focal proliferation of melanomoacrophage cells was observed in the liver and kidney parenchyma. Wide spread vacuolar degeneration in the hepatocytes (Figure 7) and tubular nephroses in the renal tubular epithelium (Figure 8) were evident.
The oral administration of 25mg SDM/kg ration, for 5 successive days in both Nile tilapia and Catfish at 5th days posttreatment, revealed edema and hyaline degeneration as well as focal Zenker’s necrosis in the musculature with focal of mononuclear leukocytic infiltration (Figure 9). The liver exhibited wide spread vacuolar degeneration as well as coagulative necrosis in the hepatocytes with some mononuclear cells infiltration and melanomacrophages (Figure 10). The kidney showed tubular nephrosis mainly vacuolar degeneration with few cells exhibited coagulative necrosis, hyaline casts and few mononuclear cells infiltrations were evident (Figure 11).
Discussion:
Using of antimicrobial drugs in aquaculture production is one of the main sources of environmental pollution Pruden [23]; Rico & Van den Brink [24]. During the past years there was increase in the occurrence of antibiotic resistant bacteria and this is of critical implications on public health Gouvêa [25] & Rezk [6]. Quesada [26] & Guidi [27] mentioned that tetracycline, oxytetracycline (tetracyclines), enrofloxacin (quinolones), and sulfadimethoxine (sulfonamide) are most commonly used antibiotics in aquaculture worldwide and the presence of their residues in food could resulted in health hazards and toxic effects. Therefore, understanding the depletion of drugs from different tissues of fish is of extreme importance and the drug residues must be assessed in order to determine the time needed before the antimicrobials disappear from the tissues and to judge when the treated fish can be safely consumed. There are limited data about the occurrence of drugresidues in intensive culture of freshwater fishes in Egypt, hence the goal of this study was to estimate tissue distribution and residue depletion after oral administration of CIP, OTC and SDM in Nile tilapia (O. niloticus) and catfish (C. gariepinus).
The elimination and residues of antimicrobials depend upon dose, duration, fish species, and aquaculture conditions He [28]. Nile tilapia and catfish are kinds of tropical fish and the appropriate temperature for survival is ranging between 24– 32°C. The water temperature in this study was 26-30°C and the research was conducted on healthy fish in conditions those are quite close to actual aquaculture. In this study the withdrawal time of CIP from serum in both O. niloticus and C. gariepinus was almost 7days. Guo [9] concluded that CIP in eels eliminated from plasma for about 298h, after oral gavage of a single dose (10μg / kg). Wu [30] reported that, elimination half life of enrofloxacine and its metabolite ciprofloxacin were 15.61, 16.83, and 17.19h in muscle, liver, and plasma of Tilapia; respectively. Ciprofloxacin concentration was 0.3 and 0.1μg/g in liver and muscle of Chinese mitten-handed crab after single intramuscular injection of 5.0mg enrofloxacin/kg body weight Guanghong [31]. The maximum enrofloxacin concentrations in the muscle, liver and plasma of O. niloticus were 3.61μg/g, 5.96μg/g and 1.25μg/ml; respectively after oral dose of enrofloxacine (50mg/kg) for 7 days and the predicted withdrawal time was 22 days Weihai [32]. Withdrawal
time of CIP from muscle and liver under our experimental conditions was 14 days in both O. niloticus and C. gariepinus. Enrofloxacin metabolized into ciprofloxacin therefore, extended withdrawal time for enrofloxacin is recommended. Renal CIP concentrations in both O. niloticus and C. gariepinus were 0.12μg/g and 0.10μg/g; respectively at 21 days post-treatment. The main target organ for CIP metabolism is kidney Ole [33]. Our results showed that, serum OTC concentrations at 0 day posttreatment (5th day of medication) in Nile tilapia and catfish were 2.15 and 2.02μg/mL; respectively. Food and Drug Administration (FDA) regulations specify OTC treatment in finfish culture at 55 to 83mg/kg fish per day for 10 days with a 21-day withdrawal prior introducing for food. After 21 days, OTC concentrations must be below the tolerance of 2ppm (μg/g). The mean peak concentrations of OTC at 0 day post-treatment in fish muscle of O. niloticus and C. gariepinus were 0.94 and 0.99μg/g; respectively. Comparable to other studies carried out in farmed fish; Bjorklund & Bylund [34] found peak OTC concentrations of 0.6-1.5ug/g in farmed rainbow trout and salmon. Our study showed that, OCT concentration in muscle was 0.10μg/g and 0.14μg/g in O. niloticus and C. gariepinus at 21 day post-treatment. Rigos [16] recorded plasma and muscle concentrations of OCT were 0.9±0.2μg/ml and 3.0 ±1.1 μg/g in seabream 150 hours post single intravascular injection (40mg/kg) while, at 24h post-oral dosing (75mg/kg) muscle and liver concentrations of OCT were 0.008 and 6.2±1.8 (μg/g); respectively. Julie [17] observed that OCT concentrations in muscles of adult rainbow trout were below 2ug/g by 21 days after withdrawal of OTC medicated feed for 10 days. Bjorklund & Bylund [34] reported OCT concentration in muscle of rainbow trout (Salmo gairdneri ) to be below 1ug/g by 14 days after drug withdrawal. Josè [35] concluded OTC concentrations in sea bream muscle were lower than in all the other tissues and declined under 0.1ug/g 20 days after treatment ceased. Meanwhile, Rigos [17] concluded poor intestinal absorption of OCT and that oral administration was unsuccessful in sharp snout sea bream. Reda [36] found that, the OTC residues in O. niloticus muscles were 0.05ug/g after a withdrawal period of 15 days when supplemented in diet at 100mg/kg diet for 12 weeks, this level was lower than the MRLs of OTC (0.1ug/g) that established by commission regulations, EU [37]. The differences between these species are likely the result of physiological differences between species and/ or differences in experimental design. Hepatic accumulation of OCT in our work was observed in both O. niloticus & C.s gariepinus (0.51 and 0.98μg/g) 21 day post-treatment, respectively. Hepatic metabolism is the major route for OCT metabolism in different fish species. Rigos [17] and Bjorklund & Bylund [34] recorded OTC hepatic accumulation. Ole [38] recorded the highest average concentrations of SDM in plasma and muscles of Atlantic salmon (14.30μg/ml and 17.72μg/g, respectively) after oral administration in feed for 5 consecutive days as well as the withdrawal time was 288, 300 and 350 hrs in muscle, liver and kidney; respectively. The elimination half-life of SDM from blood of rainbow trout was 24.5 hours after a single oral administration (200mg/kg), at a water temperature of 15°C Kauzauki [39]. Our work showed that, the highest average concentration of SDM in liver, kidney and muscle were 8.95, 44.2 and 2.15μg/g; respectively in Nile tilapia at 0 day post-treatment. The corresponding values in catfish were 6.14, 31.2 and 2.02μg/g; respectively. SDM was not detectible at the 21th day post-treatment in muscle of C. gariepinus and detected only in one O. niloticus.
Conclusion
The antimicrobial drugs based on dose and type may negatively impact the liver and kidney functions with significant changes in enzymatic parameters and histopathological picture [48-55]. Also, the three tested medications had residues in the liver, kidney and muscles of Nile tilapia and catfish, the lowest drug residues were in muscles. CIP is considered as the safest one with the least residues. For the control of fish bacterial diseases, preventive measures should be applied and during urgent need, the selection of correct antimicrobial agent is very important through frequent antimicrobial sensitivity testing. An antimicrobial with minimal residue limit should be selected to protect animal and human health from potential hazards caused by contaminated fish. However, further studies are needed to estimate the toxicity of therapies in the aquatic creatures and environment.
Ethical approval
All the animals were maintained in accordance with the National and International Institutional Guidelines for the Care and Use of Animals for Scientific purposes.
Competing interest
The authors declare that they have no significant competing financial, professional or personal interests that might have influenced the performance or presentation of the work described in this manuscript.
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avajones · 5 years ago
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Global Biomass Market Development and Forecast Report 2020 | Reports and Data
The Global Biomass Market report gives a comprehensive overview of the Biomass market scenario to present accurate forecasts of the upcoming years with special focus on the competitive landscape, market segmentation, current and emerging trends, and strategic recommendations to help readers gain a robust footing in the market. The report also focuses on the comprehensive analysis of the competitive landscape along with descriptive company profiles, market share, product portfolio, financial standings, market reach, global position, and strategic business expansion plans.
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Raw material Outlook (Volume, Kilo tons; 2018-2026 and Revenue, USD Billion; 2018-2026)
Crops
Wastes
Biomass
Starchy grains
Fossil fuels
Fuel crops (Algae)
Corn
Sugar crops
Food waste
Forest waste
Agricultural waste
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Product type Outlook (Volume, Kilo tons; 2018-2026 And Revenue, USD Billion; 2018-2026)
Starch-based
Sugar-based
Cellulosic
Application Outlook (Volume, Kilo tons; 2018-2026 And Revenue, USD Billion; 2018-2026)
Conventional fuel vehicles
Flexible fuel vehicles
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jacobwill176 · 5 years ago
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Global Advanced Wood Pellets MarketIndustry Analysis, Size, Share and Growth Trends forecast year 2020
A new market study, titled “ Global Advanced Wood Pellets Market Research Report 2020” has been featured on WiseGuyReports.
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The research report includes specific segments by Type and by Application. This study provides information about the sales and revenue during the historic and forecasted period of 2015 to 2026. Understanding the segments helps in identifying the importance of different factors that aid the market growth.
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Torrefaction
Steam Explosion
Segment by Application
Power Generation
Industrial Furnace
Other
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North America
U.S.
Canada
Europe
Germany
France
U.K.
Italy
Russia
Asia-Pacific
China
Japan
South Korea
India
Australia
Taiwan
Indonesia
Thailand
Malaysia
Philippines
Vietnam
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Middle East & Africa
Turkey
Saudi Arabia
U.A.E
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vipinmishra · 1 year ago
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Commercial Wood Pellets Market Outlook 2029 By Size, Share, Trends, Growth Analysis
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Subsidies and Incentives and Global Demand for Renewable Heat are factors driving the Global Commercial Wood Pellets Market in the forecast period 2025-2029.
According to TechSci Research report, “Commercial Wood Pellets Market - Global Industry Size, Share, Trends, Opportunity, and Forecast 2019-2029”, The Global Commercial Wood Pellets Market is poised for significant growth in the foreseeable future, driven by escalating global demand for renewable energy sources. Wood pellets, renowned for their clean, environmentally friendly, and sustainable attributes, serve as a crucial biomass fuel, offering a renewable alternative to fossil fuels and contributing to efforts aimed at mitigating global warming. As countries worldwide intensify their focus on transitioning towards renewable energy sources, the demand for wood pellets is expected to surge, fostering growth within the industry.
Notably, the United States stands as a key player in the production of wood pellets, fueled by burgeoning demand from international markets. With certain nations facing constraints in meeting their own wood pellet requirements using domestic forest biomass and lacking the necessary industry infrastructure, they increasingly rely on imports from the U.S. to fulfill their energy production needs. Wood pellet manufacturers procure wood biomass from various sources, including wood dealers, private landowners via loggers, and mill residuals derived from other forestry sectors such as paper and sawmills. In this supply model, transportation costs emerge as a primary cost component for mill residuals, which are often obtained at lower costs compared to pulpwood and roundwood, driving efficiency and cost-effectiveness in wood pellet production processes.
Despite the promising growth prospects, the Global Commercial Wood Pellets Market presents a complex and fragmented landscape characterized by diverse shipping firms, brokers, and traders. The transportation of wood pellets entails unique challenges, restricting the number of ports and routes that offer both affordability and the capacity to handle large volumes of wood pellets efficiently. This intricacy within the market underscores the importance of strategic logistics planning and efficient supply chain management to ensure seamless transportation and distribution of wood pellets to global markets.
Moreover, navigating the complexities of the wood pellets market requires a thorough understanding of shipping logistics, market dynamics, and regulatory considerations to optimize operations and capitalize on emerging opportunities. As the demand for renewable energy sources continues to rise, stakeholders within the wood pellets market must proactively address logistical challenges and explore innovative solutions to streamline transportation processes and enhance market competitiveness. By leveraging technological advancements and forging strategic partnerships across the supply chain, businesses operating within the Global Commercial Wood Pellets Market can position themselves for sustained growth and success in the evolving landscape of renewable energy production and distribution.
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Based on Application, The Heating segment emerged as the dominant force in the Commercial Wood Pellets Market in 2023, propelled by several key factors. Commercial Wood Pellets, derived primarily from wood residues and agricultural by-products, offer distinct advantages over unprocessed biomass, including standardized properties, high energy content, and increased density. These pellets are extensively utilized in residential and commercial sectors for various heating applications, including food preparation, cooking, grilling, and providing warmth to homes. The cost-effectiveness of pellets, which have historically remained cheaper compared to alternative fuels, has positioned them as an economically viable choice for residential and commercial heating needs.
However, the market experienced a notable downturn in 2020 due to oversupply, leading to a significant decline in pellet prices. Despite this temporary setback, the Heating segment continues to dominate the market, driven by ongoing government subsidies and incentives aimed at promoting the adoption of renewable energy sources. Many countries have introduced or revised policies and schemes to support the use of Commercial Wood Pellets for heating applications, further bolstering the segment's growth prospects.
Government initiatives and regulatory reforms play a pivotal role in shaping the landscape of the Commercial Wood Pellets Market. In January 2021, the United States implemented a new Wood and Pellet Heater Investment Tax Credit (ITC), offering consumers a 26% tax credit on the full cost of highly efficient wood and pellet stoves or larger residential biomass heating systems. Similarly, the United Kingdom revised its Domestic Renewable Heat Incentive (Domestic RHI) in April 2021 to promote renewable heat usage at residential levels. The amendments relaxed accreditation requirements and extended eligibility for participants whose heating systems were commissioned after March 1, 2019, until the scheme's closure to new applications in March 2022.
These regulatory measures underscore the government's commitment to fostering the adoption of renewable heating solutions and reinforce the dominance of the Heating segment in the Commercial Wood Pellets Market. As the demand for sustainable heating alternatives continues to grow, fueled by favorable government policies and increasing environmental consciousness, the Heating segment is poised to maintain its leadership position in the wood pellet market during the forecast period.
Based on Region, Europe is poised to assert its dominance in the Commercial Wood Pellets Market throughout the forecast period, driven by significant growth projections and a robust demand trajectory. Forecasts suggest a notable surge in demand for Commercial Wood Pellets in Europe, with anticipated growth rates ranging between 30% and 40% from 2024 to 2029. Currently, Europe accounts for over 50% of the global pellet demand, underscoring its pivotal role in the market.
The utilization of pellets in Europe spans various sectors, with residential heating, power plants, commercial heating, and combined heat and power plants representing key areas of application. Notably, pellets have gained traction in coal conversion initiatives across local authority and public administration buildings, exemplified by projects such as the conversion of units at the Drax Power Station in North Yorkshire. The station's transition to biomass demonstrates the increasing adoption of Commercial Wood Pellets as a sustainable alternative to traditional fuels, further fueling demand across Europe.
The composition of feedstock for wood pellet production in Europe reflects a reliance on sawmill residues, which constitute 85% of the mix, followed by roundwood (13%) and recovered wood (2%). While wood residues remain a crucial component, especially in northern and western Europe, they are insufficient to meet the growing fiber demand from the expanding wood pellet sector. Consequently, there is a pressing need for technological advancements to optimize production processes and address supply constraints effectively.
As Europe continues to drive innovation in the market, advancements in pellet manufacturing technologies are expected to further bolster demand for Commercial Wood Pellets during the forecast period. These advancements, coupled with Europe's steadfast commitment to sustainable energy solutions, position the region as a formidable force in shaping the trajectory of the Commercial Wood Pellets Market globally, ensuring its continued dominance and growth. 
Key market players in the Global Commercial Wood Pellets Market are: -
AS Graanul Invest
Drax Group PLC
Fram Renewable Fuels LLC
Segezha Group JSC
Lignetics Inc.
Biopower Sustainable Energy Corp.
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“The global commercial wood pellets market is driven by increasing adoption of renewable energy policies, heightened environmental concerns, and government subsidies promoting sustainable alternatives. Growing awareness of climate change has intensified the demand for carbon-neutral energy sources, positioning wood pellets as a key player. Technological advancements in pellet production, coupled with incentives for biomass utilization, enhance market competitiveness.
Energy security considerations and a shift toward biomass in the industrial sector contribute to the expanding market. As the demand for renewable heating solutions rises globally, wood pellets find application in various sectors, including residential, commercial, and industrial, further fueling market growth. Infrastructure development and the establishment of new pellet manufacturing facilities are vital components supporting the wood pellets market expansion.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based global management consulting firm.
“Commercial Wood Pellets Market - Global Industry Size, Share, Trends, Opportunity, and Forecast Segmented by Application (Heating and Power Generation), By End User (Retail Stores, Corporates, Educational Institutions, Hotels & Hospitality Facilities, Hospitals & Clinics, Others), By Region, and By Competition 2019-2029” provides statistics & information on market size, structure, and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in Global Commercial Wood Pellets Market.
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deltaponline · 5 years ago
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Safeguarding every single drop - Andritz to supply pumps for a new drinking water plant in Tunisia
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  The water supply and the related risk of a water shortage is a critical topic in many countries in the Middle East and North Africa. This is also the case in Tunisia because the existing resources are being more and more impacted by shortages. Currently, agriculture in Tunisia accounts for almost 80 % of total water consumption, around 15 % is for drinking water, and the rest is for industry and tourism. However, the use of conventional water sources to cover the demand is already very intensive and is being depleted increasingly due to population growth, improved living standards, and climate factors. Taking account of the climatic and also other factors, current forecasts say that the resources available will be completely exhausted by around 2030 and will then gradually run dry. Effective management of these water resources by means of constant monitoring and control as well as reforms in the water sector are thus vital. Comprehensive strategy for irrigation and drinking water supply With this in mind, Tunisia has developed complex and diverse water infrastructures that enable the country to make better use of the sources available. At the same time, the government has introduced various regulations and laws in order to guarantee that the majority of the urban and rural population has better access to drinking water and to safeguard a sustainable supply for agricultural irrigation, industry, and tourism. In addition, the World Bank announced a 140-million US dollar project in May 2018 to support the Tunisian government in improving agricultural irrigation by managing scarcer water resources and new business opportunities, especially for underdeveloped rural areas. Irrigation alone requires around 80 percent of the country’s entire water potential. Among other things, the project will finance modernization of and repairs to the irrigation system in order to make it more effective and reliable. Similarly, the demand for drinking water in rural areas will rise to 60 million cubic meters per annum by 2030 according to current forecasts. As a result, the Tunisian President Youssef Chahed announced a new national strategy in June 2018 to conserve water resources. The goal is to safeguard water supplies by building dams and inland lakes, and by drilling boreholes as well as implementing some deep-sea projects.
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Andritz was awarded the order to supply nine double-flow axial split-case pumps from the ASP series to the new drinking water plant on Cap Bon, Tunesia. They are the ideal hydraulic machines for use as piped water pumps in water treatment or drinking water pumps in water supply systems. New pumping plant on Cap Bon The Société Nationale d'Exploitation et de Distribution des Eaux (SONEDE) is responsible for the water supply in both urban and rural areas of Tunisia. This national water supply authority is a public institution, but also an autonomous one, attached to the Ministry of Agriculture. It was established in 1968 and is responsible for production, including water treatment and transport, management and maintenance of the drinking water network as well as development of the water sector. As part of the national strategy to safeguard a sustainable water supply, SONEDE is building a new pumping station on the Cap Bon peninsula. The Medjerda River will supply water to this plant. With a length of 450 kilometers, this is not only the longest river in Tunisia, it also feeds more than half of the water supply network throughout the country. The plant treats 150 cubic meters of river water per day for drinking water and distributes it in the Nabeul, Hammamet, Korba, Kelibia and Menzel Temime regions. Pumps play an essential role in this supply process. As a result of having the best price-performance offer, highest efficiencies and good relations with EPC Socoopec, Andritz was awarded the order to supply the pumps for the station. The international technology Group will manufacture and supply a total of nine double-flow axial split-case pumps from the ASP series. The pumps expert for drinking water supplies
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Pumping systems from Andritz make an essential contribution worldwide towards a safe, sustainable and, above all, technologically optimized water supply. The mega-city of Peking also trusts in this technology and quality. Hui Nan Zhuang pumping station located to the south-west of the Chinese capital is equipped with eight double-flow axial split-case Andritz pumps. Pumping systems from Andritz make an essential contribution worldwide towards a safe, sustainable and, above all, technologically optimized water supply. The mega-city of Peking also trusts in this technology and quality. Hui Nan Zhuang pumping station located to the south-west of the Chinese capital is equipped with eight double-flow axial split-case Andritz pumps. Two sets of three pumps plus one standby unit each supply a common pipe with a diameter of four meters. Hui Nan Zhuang is the only pumping station in the middle water supply channel of the Chinese milestone project "South-to-North Water Diversion", with a total length in the region of 1,200 kilometers. The pumps supplied by Andritz convey a total of 60 cubic meters of water per second over a distance of approximately 60 kilometers to Peking. Nine smaller pumps of this same type will also be used in the new drinking water plant on Cap Bon. They are the ideal hydraulic machines for use as piped water pumps in water treatment or drinking water pumps in water supply systems. Depending on the final location of the Tunisian pumping station, it will handle a flow rate of 648 to 900 m³/h at heads of 20 to 63 meters. For this purpose, each pump is fitted with a 55, 160 or 200 kilowatt motor. With an efficiency of up to 91 percent, these double-flow split-case pumps help to save valuable energy. All of the pumps are equipped with a twin-flow radial impeller that achieves very favorable NPSH levels. Thanks to the axial split-case design, maintenance work is quick and easy. Equipped with a double-flow radial impeller and an inline casing, the pump can be installed horizontally or vertically. If mounted horizontally, the motor(s) can be positioned on the left and/or on the right. Besides design and delivery of the pumps and spare parts, installation and commissioning work on site will also be supervised by Andritz personnel. Completion of the entire project is scheduled for June 2019. Equipped for the future In addition, the pump casing already has the connections needed for intelligent sensors to monitor operating reliability and performance as well as other key indicators in line with Industry 4.0. These special pump monitoring packages that can also be retrofitted compare operating conditions against the nominal curves. These include variable speed curves such as head, efficiency, motor rating or NPSH in relation to flow rates. In addition, temperature, vibration and electrical analyses are conducted. All data can be analysed in the software or exported to various file formats. The files are stored in an Andritz Metris data base that can be installed on a local server or remotely in the Andritz Metris Cloud (Microsoft Azure). Based on these data gathered, accessible by the customer and by Andritz condition monitoring experts, service recommendations can be provided at any time for operation of the plant and the pumps installed. By standardizing data acquisition with these tools, the customer’s experts can also communicate more effectively with Andritz and improve plant performance at the same time. By networking our customers’ own specialists, also with Andritz experts, our IIoT technologies become the basis for Internet-of-People (IoP) solutions. This value-adding connection results not only in professional processing of the data gathered, which improve and maintain the performance of the plant, but make it possible in addition to respond and react even better to climatic and other factors that have an adverse effect on the water supply. [email protected] www.andritz.com/pumps   Andritz Group Andritz is an international technology group providing plants, systems, equipment, and services for various industries. The company is one of the technology and global market leaders in the hydropower business, the pulp and paper industry, the metal working and steel industries, and in solid/liquid separation in the municipal and industrial segments. Other important fields of business are animal feed and biomass pelleting, as well as automation, where Andritz offers a wide range of innovative products and services in the IIoT (Industrial Internet of Things) sector under the brand name of Metris. In addition, the company is active in power generation (steam boiler plants, biomass power plants, recovery boilers, and gasification plants) and environmental technology (flue gas and exhaust gas cleaning plants) and offers equipment for the production of nonwovens, dissolving pulp, and panelboard, as well as recycling plants. Andritz stands for passion, partnership, perspectives and versatility – core values to which the company is committed. The listed Group is headquartered in Graz, Austria. With almost 170 years of experience, 29,000 employees, and more than 280 locations in over 40 countries worldwide, Andritz is a reliable and competent partner and helps its customers to achieve their corporate and sustainability goals. Read the full article
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marketfuturereports · 6 years ago
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Wood Pellets Market Analysis and Growth Forecast by Regions and Applications to 2025
23rd December 2019 – The global Wood Pellets Market is estimated to develop at a substantial CAGR of 10.22% for the duration of the prediction. The wood pellet implies biofuel prepared from packed down organic material or biomass. It can be scorched by means of greater effectiveness of burning. Wood pellets are typically prepared by using unpolluted conifer sawdust and flakes of planer. Wood pellets are mass-produced using the renewable by products of forest, sawdust, and leftover materials of farming.
Increasing prices of fossil fuels, together with fuel oil and natural gas, are amongst the most important motivating issues for using more wood pellets. Worries regarding the changing weather in the Europe and North America are likewise motivating the development of the wood pellet market in these areas. The Wood Pellets market on the source of Type of End Use could span Industrial Pellets for Co-Firing, Industrial Pellets for CHP. The market on the source of Type of Application could span Pellet Boilers, Free-Standing Stoves, and Pellet Stove Inserts.
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The wood pellets market on the source of Type of Feed Stock could span Agrarian Remains & Waste, Wood & Forest Leftover, and others. The subdivision of Agrarian Remains & Waste is resourceful, and owing to this, the market stake of the subdivision is projected to increase above the prediction period.
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The market on the source of Area with respect to Trades in terms of intake, Profits, Market stake and Development percentage for the duration of the prediction could span North America, Eastern Europe, Western Europe, Asia Pacific Excluding Japan [APEJ],Japan, Latin America and Middle East & Africa.
By the source of geography, the wood pellet market pertaining to the Asia Pacific Exc. Japan is projected to hold the largest stake by the completion of the prediction period. This could be credited to the increasing demand for wood pellets, speedy development of exports in the area, and a widespread existence of companies. This is likewise permitting the increasing range of wood pellets. The market of wood pellet in the area of Middle East & Africa projected to upsurge during the period of prediction.
Top Manufacturers Analysis covered in these report:
• Andritz AG
• Drax Group
• Enito Singpellet Pte Ltd
• Enviva LP
• F.E. Wood & Sons
• German Pellets GmbH
• Georgia Biomass, LLC
• Allance Pellet Machinery
• The Westervelt Company
• Pinnacle Renewable Energy Group
• Rentech, Inc.
• Energex
• Wood Pellet Energy (UK) LTD.
Wood Pellets Breakdown Data by Type
• Free Standing Pellet Stove
• Pellet Stove Inserts
• Pellet Boilers
Wood Pellets Breakdown Data by Application
• Industrial Pellet for CHP/District Heating
• Industrial Pellet for Co-firing
• Pellet for Heating Residential/ Commercial
• Others
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Wood Pellets Production Breakdown Data by Region
• United States
• Europe
• China
• Japan
• Other Regions
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