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narwatharsh01 · 4 months
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Global Mobile Value-Added Services Market Analysis
Mobile Value-Added Services Market Overview
The global mobile value-added services (MVAS) market has experienced significant growth in recent years, driven by the increasing adoption of mobile devices and the rising demand for data-intensive applications. The Global MVAS market size reached a staggering USD 251.9 billion in 2023, and is projected to reach a phenomenal USD 733.83 billion by 2028, growing at a healthy Compound Annual Growth Rate (CAGR) of 14.30%. Mobile VAS refers to a range of services offered by mobile network operators (MNOs) and content providers to enhance the user experience and generate additional revenue streams beyond basic voice and SMS services. Mobile VAS encompasses a wide range of services, including mobile entertainment (music, videos, games), mobile commerce (m-commerce), mobile banking, location-based services, and enterprise solutions. These services are delivered through various channels, such as SMS, MMS, mobile internet, and mobile applications, providing users with a diverse array of options to meet their evolving needs and preferences.
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Market Segmentation
The mobile VAS market can be segmented based on various factors, including service type, platform, and region:
By Service Type
Short Message Service (SMS): SMS remains a popular VAS, with billions of messages sent every day. It is widely used for content delivery, alerts, and interactive services.
Multimedia Messaging Service (MMS): MMS allows for the sending of multimedia content, such as images and videos, and is expected to see significant growth driven by the increasing adoption of smartphones and the demand for richer content experiences.
Mobile Internet: Mobile internet access is becoming increasingly popular, with users accessing the internet through their mobile devices for browsing, social media, and content streaming.
Mobile Music: Mobile music services, such as streaming and downloads, are expected to see significant growth, driven by the increasing popularity of music streaming platforms and the rise of mobile-first music consumption.
Mobile Gaming: Mobile gaming is becoming increasingly popular, with users accessing games through their mobile devices. The market is driven by the availability of high-quality games, the rise of mobile esports, and the increasing adoption of in-app purchases.
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By Platform
Android: Android is the most popular mobile operating system, with a significant market share. It offers a wide range of VAS apps and services, catering to diverse user preferences and needs.
iOS: iOS is the operating system used by Apple devices, known for its security and user-friendly interface. It has a strong presence in the premium smartphone segment and offers a curated selection of VAS apps and services.
Windows: Windows is another popular mobile operating system, known for its compatibility with Microsoft products and enterprise-focused VAS offerings.
By Region
Asia-Pacific: The Asia-Pacific region is expected to dominate the mobile VAS market, driven by the large population, increasing adoption of mobile devices, and the rapid growth of mobile internet and digital content consumption. Countries like China, India, and Indonesia are key contributors to the regional market growth.
Europe: Europe is another significant region for mobile VAS, with a high penetration of mobile devices and a growing demand for advanced services. The region is characterized by a mature market with a focus on innovation and regulatory compliance.
Americas: The Americas region is also expected to see significant growth, driven by the increasing adoption of mobile devices and data-intensive applications. The United States and Canada are the major contributors to the regional market, while Latin America presents opportunities for growth in emerging markets.
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Market Drivers and Trends
Several factors are driving the growth of the mobile VAS market, including:
Increasing adoption of mobile devices: The increasing adoption of mobile devices, such as smartphones and tablets, is driving the growth of the mobile VAS market. The global smartphone penetration rate is expected to reach 79% by 2025.
Rising demand for data-intensive applications: The rising demand for data-intensive applications, such as video streaming and online gaming, is driving the growth of the mobile VAS market. Global mobile data traffic is expected to grow at a CAGR of 46% from 2022 to 2027.
Advancements in technology: Advancements in technology, such as 5G networks and artificial intelligence, are expected to drive the growth of the mobile VAS market. 5G is expected to enable new use cases and enhance the user experience for mobile VAS.
Increasing competition: The increasing competition among mobile operators is driving the growth of the mobile VAS market, as operators seek to differentiate themselves through the provision of VAS and enhance customer loyalty.
Regulatory changes: Regulatory changes, such as the introduction of new data protection laws and the promotion of digital inclusion, are shaping the mobile VAS market and driving the adoption of responsible and inclusive services.
Key Players and Recent Developments
The mobile VAS market is dominated by several key players, including:
Telkom Indonesia: Telkom Indonesia is a leading mobile operator in Indonesia, offering a wide range of VAS, including mobile entertainment, m-commerce, and enterprise solutions.
Bharti Airtel: Bharti Airtel is a leading mobile operator in India, offering a diverse portfolio of VAS, such as mobile music, mobile games, and mobile payments.
Verizon Communications: Verizon Communications is a leading mobile operator in the United States, offering a range of VAS, including mobile video, mobile security, and mobile workforce solutions.
Vodafone Group: Vodafone Group is a leading mobile operator in Europe, offering a wide range of VAS, such as mobile money, mobile health, and mobile IoT solutions.
These companies are investing heavily in network infrastructure, content partnerships, and new technologies to stay competitive in the rapidly evolving market. For example, Telkom Indonesia has partnered with Netflix to offer exclusive content packages to its subscribers.
Conclusion
The mobile VAS market continues to evolve rapidly, driven by technological advancements, increasing demand for data-intensive applications, and the need for personalized and engaging services. The future of mobile VAS looks promising, with a focus on enhancing user experience, expanding coverage, and leveraging new technologies like 5G and AI to meet the growing demands of consumers and businesses worldwide. As the market matures, key players will need to adapt their strategies to address emerging trends, such as the rise of over-the-top (OTT) services and the increasing importance of data privacy and security.
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312705 · 4 months
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david843346 · 7 months
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Synchronous Generator Market: Global Demand Analysis & Opportunity Outlook 2036
Research Nester’s recent market research analysis on “Synchronous Generator Market: Global Demand Analysis & Opportunity Outlook 2036” delivers a detailed competitors analysis and a detailed overview of the global synchronous generator market in terms of market segmentation by prime mover, power rating, end user and by region.
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Rising Focus on Energy Efficiency, Increasing Marine Industry, and Surging Demand for Electric Vehicles to Promote Global Market Share of Synchronous Generator Market
The global synchronous generator market is estimated to grow majorly on account of the increased population, industrialization, and urbanization. The synchronous generators are commonly utilized for variable-speed wind turbines. In the year 2023, there will be almost 400, 000 wind turbines all over the world. This is projected to garner remarkable growth during the forecasted period. Other than this, the rising electrification of transportation, including electric vehicles offer various market opportunities. These generators are helpful in meeting the rising demand for electric mobility and aid in making the infrastructure important for charging. It has been estimated that in the year 2023, total number of electric cars in the world will be almost 26.1 million. Hence, the rising demand for electric vehicles augments the growth of the global synchronous generator during the forecasted period. Other than this, with the rising emphasis on renewable energy sources, synchronous generators are important for maintaining the stability of the grid and facilitating the amalgamation of renewable energy sources. The rising need for sustainable energy solutions fuels the market opportunities for the global synchronous generator in the forecasted period. There has been a constant need for an uninterrupted power supply that is fueling the demand for the global synchronous generator market.
Some of the major growth factors and challenges that are associated with the growth of the global synchronous generator are:
Growth Drivers:
The Rising Electrification of Electric Vehicle Transportation
The Growing Need for Dependable and Effective Power Production
Challenges:
Hefty upfront expenditures for infrastructures, strict environmental regulations, and the presence of alternatives are some of the major factors anticipated to hamper the global market size of global synchronous generators.
By power rating, the global synchronous generator is segmented into 10 to 20 MVA, 2 to 5 MVA, 20 to 30 MVA, 30 to 50 MVA, and 5 to 10 MVA. Out of these, the 5 to 10 MVA segment is projected to gain a robust market share of almost 27% in the coming years. The segment 5 to 10 MVA are becoming more popular to render a scalable answer to the rising energy demand in developing nations. 
By region, the Europe synchronous generator is to generate the highest revenue by the end of 2036. The rising need for effective power generation solutions is projected to propel the industry in the region. The market is moving toward improved grid stability and renewable energy sources.
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infinitiresearch · 7 months
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Mobile Value-added Services (MVAS) Market| Market Size, Analysis, Growth and Forecast, 2023 – 2027
Originally published on Technavio: Mobile Value-added Services (MVAS) Market Analysis APAC, North America, Europe, South America, Middle East and Africa - US, China, Japan, India, Germany - Size and Forecast 2023-2027
The Mobile Value-added Services (MVAS) Market is poised for substantial growth across key regions including APAC, North America, Europe, South America, and the Middle East and Africa from 2023 to 2027. In APAC, particularly in China and India, the market is expected to witness significant expansion. This growth is fueled by the region's large population base, increasing smartphone penetration, and rising demand for digital services. Both China and India have emerged as key markets for MVAS, driven by factors such as the proliferation of mobile internet, rapid urbanization, and the adoption of innovative mobile applications and content services.
In North America, the United States is projected to be a major contributor to the growth of the MVAS market. The region's advanced telecommunications infrastructure, high smartphone ownership rates, and evolving consumer preferences for mobile entertainment and productivity solutions are driving the demand for MVAS. Moreover, the increasing adoption of 5G technology is expected to further enhance the capabilities and offerings of MVAS in the region.
Similarly, in Europe, countries like Germany are anticipated to witness substantial growth in the MVAS market. The region's mature telecommunications market, coupled with the increasing adoption of digital services and mobile apps, is driving the demand for MVAS offerings. Additionally, regulatory initiatives promoting competition and innovation in the telecommunications sector are expected to further boost market growth in Europe.
In South America, Brazil stands out as a prominent market for MVAS, driven by factors such as increasing smartphone penetration, rising disposable incomes, and the growing popularity of mobile gaming, entertainment, and social media platforms. The Middle East and Africa region are also expected to witness growth in the MVAS market, driven by expanding mobile connectivity, growing investments in digital infrastructure, and the rising demand for mobile-based services across various sectors.
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Overall, the period from 2023 to 2027 is anticipated to witness robust growth in the Mobile Value-added Services market across key regions worldwide, driven by factors such as increasing smartphone adoption, advancing mobile technologies, and evolving consumer preferences for digital content and services. Market players are expected to focus on innovation, content diversification, and strategic partnerships to capitalize on emerging opportunities and address the evolving needs of mobile consumers globally.
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Jesse Maida
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sartajblog · 8 months
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Transformer Oil Market Navigating Dynamics and Opportunities in the Global Transformer Oil Market Forecast 2023-2032
Transformer Oil Market: Powering the Future of Electrical Infrastructure
Introduction
The Transformer Oil Market is poised for robust growth, driven by the increasing demand for electrical power and the global shift towards sustainable energy. Transformer oil, also known as insulating oil, plays a crucial role in maintaining the efficiency and insulation of transformers, ensuring the smooth functioning of electrical systems. In this comprehensive market analysis, we delve into the dynamics, trends, and factors influencing the Transformer Oil Market.
Market Overview
In 2023, the Global Transformer Oil Market is estimated to be valued at USD 2,981.5 Million, with a projected compound annual growth rate (CAGR) of 13.2% for the forecast period from 2023 to 2032. Transformer oil, recognized for its stability at high temperatures and superior electrical insulation properties, serves as a key component in transformers. Its dual function of suppressing arcing and dissipating heat is vital for the efficient operation of transformers.
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Functions of Transformer Oil
Transformer oil performs two crucial functions in transformers:
Moreover, transformer oil acts as a protective layer against oxidation of metal surfaces and aids in better cooling and insulation by properly dipping the core and windings of transformers.
Alternatives and Environmental Concerns
To address environmental concerns and economic considerations, alternative transformer oils, including soybean oil, palm kernel oil, and coconut oil, have emerged. These alternatives are readily available in countries like India, Malaysia, and Sri Lanka. Bio-based transformer oils are gaining traction due to their superior fire resistance and non-toxic characteristics, aligning with environmental sustainability.
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Market Dynamics
The Transformer Oil Market is experiencing significant growth, primarily fueled by its extensive use in the power generation sector. The global emphasis on sustainable energy sources and the rise in electricity trade across borders, particularly in Asia, contribute to market expansion. The surge in wind power projects further bolsters the demand for transformer oil, serving as a lubricant and coolant in turbines and transformers.
Challenges and Opportunities
Despite the positive outlook, challenges such as the acceptance of alternative transformer techniques and fluctuations in crude oil prices exist. Strict regulations addressing the negative impacts of minerals and crude oil price variations also impede market growth. However, the expanding distribution of energy, driven by increased electricity consumption in emerging economies like India and China, presents significant growth opportunities.
Research Scope and Analysis
By Type
Mineral-Based Oils
Mineral-based oils dominate the market, holding a maximum share in 2023. These oils find extensive use in various sectors, including circuit breakers, capacitors, and high-compatibility areas. The preference for mineral-based oils in conditioning switchgear, transformers, and boilers is attributed to their efficiency in heat transfer and preservation of transformer interiors.
On the other hand, a shift towards bio-based products is evident in recent times. Bio-based oils, derived from vegetable sources, offer superior performance and environmental friendliness. The rising trend of bio-based products is expected to create new growth avenues, although challenges related to non-biodegradability may impact certain mineral oil products.
Silicon-Based Oils
Bio-Based Oils
By Rating
The market is segmented by rating, with the 100 MVA-500 MVA segment dominating in 2023. These transformers, designed for extensive industrial environments, play a crucial role in power generation, transmission, and distribution. The <100 MVA segment follows, anticipated to exhibit the fastest CAGR by 2032 due to widespread applications in power distribution channels.
By End User
Industrial
The industrial segment commands the market with the maximum share in 2023. The global rise in industrialization has increased the demand for transformers across sectors like food processing, chemicals, steel, and automotive. Transformers are essential for various electrical machinery operating at different voltage levels, driving the demand for transformer oils to ensure smooth operations.
Residential
The residential segment is poised to grow with the maximum CAGR in the coming years. The increasing population and residential developments drive the need for transformers in houses, apartments, and villas, contributing to the demand for transformer oils.
Recent Developments in the Transformer Oil Market (as of February 5, 2024):
Market Growth:
Global Transformer Oil Market Report Segmentation
By Type:
By Rating:
By End-User:
Regional Analysis
Asia Pacific
Asia Pacific dominates the Transformer Oil Market, commanding a significant share of 55.8% in 2023. The region's rising electricity demand in economies such as India, China, Australia, and Japan is a key driver. The focus on capacity building for renewable energy in China and India contributes to the demand for transformer oil in the sub-transmission segment. Local producers in Asia Pacific pose challenges for international entrants seeking market foothold.
North America
In North America, the market is driven by the growth of the industrial and manufacturing industries in Canada and the U.S. Technological advancements and developments in established transformers, coupled with the decline in the crude oil market, are anticipated to propel the market in these nations.
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Frequently Asked Questions (FAQs)
1. What is the expected valuation of the Global Transformer Oil Market in 2023?
2. What functions does transformer oil perform in transformers?
4. What challenges does the Transformer Oil Market face?
5. Which region dominates the Transformer Oil Market in 2023?
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markettrendsus · 11 months
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Keeping the Lights On: Maintaining Aging Transformers with Retrofill Oils 2023
The Global Transformer Oil Market is expected to reach a valuation of USD 2,981.5 Million in 2023, and it is projected to experience significant growth at a CAGR of 13.2% for the forecast period (2023-2032).
The global transformer oil market has witnessed steady growth over the past decade, driven by rising energy demand and investments in electricity infrastructure across the world. Transformer oil plays a critical role in insulating and cooling transformers and is an integral component of power transmission and distribution networks.
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Key Market Dynamics
Several factors are shaping the growth trajectory of the global transformer oil market:
Surging Demand for Electricity
Rapid industrialization, urbanization and population growth have led to a surge in electricity consumption globally. Governments across the world are focused on enhancing power infrastructure and expanding electricity access. The development of smart grids and long-distance transmission networks creates strong demand for transformer oil for new transformer installations.
Upgrade of Existing Grid Infrastructure
The aging power T&D infrastructure in developed countries requires upgrading to meet rising electricity demand. Replacement and refurbishment of old transformers to comply with modern efficiency and safety standards is another key demand driver. North America and Europe account for a major share of the replacement demand.
Growth in Renewable Energy
The rising adoption of renewable energy sources such as solar and wind energy requires significant grid expansion and integration. This is catalyzing investment in new substations and transformers, providing impetus to transformer oil consumption.
Product Innovation
Manufacturers are developing transformer oils with superior properties such as higher oxidation stability, improved moisture tolerance, better heat dissipation and fire safety. Specialty fluids such as silicone-based and bio-based oils are gaining traction.Product innovation is focused on sustainability, performance and total cost of ownership.
Stringent Environmental Regulations
Regulations on the use of mineral oils which can have an environmental impact during spillage are prompting users to adopt eco-friendly transformer oils. Customers are increasingly demanding bio-based and fire-resistant vegetable-based oils. This is compelling suppliers to expand their product portfolio.
Price Volatility
Crude oil price fluctuations lead to variability in feedstock costs for manufacturers. This creates uncertainty regarding profit margins. However, increasing the use of alternative raw materials is expected to mitigate this price risk going forward.
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Segmentation
By Type
Mineral-Based Oils
Naphthenic Base Oils
Paraffinic base Oils
Silicon-Based Oils
Bio-Based Oils
By Rating
< 100 MVA
100 MVA – 500 MVA
501 MVA – 800 MVA
> 800 MVA
By End-User
Residential
Industrial
Commercial
Utilities
Mineral oil dominates the market currently. However, silicone-based and bio-based oils are rapidly gaining share driven by their superior properties and environmental benefits.
Power transformers account for the largest share. However, distribution transformers are likely to see the fastest growth over the coming years.
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Regional Analysis
Asia Pacific holds the largest share of the global transformer oil market presently. This can be attributed to large-scale investments in the region's power infrastructure to support industrialization and booming electricity demand. China, India, Japan and Australia are key demand hubs. Strong growth is also foreseen in Southeast Asia and Africa as electricity access is expanded.
North America and Europe are mature markets where product innovation and sustainability are the focus for suppliers, driven by stringent eco-norms. The gradual upgrade of legacy networks to meet modern power capacity and efficiency goals continues to generate stable demand.
The Middle East & Africa represent an emerging market where the ongoing development of electricity networks provides opportunities for suppliers. The discovery of large oil & gas reserves in the region may also benefit local manufacturing.
Competitive Landscape
The market is fragmented with the presence of large global suppliers as well as numerous smaller regional players. Suppliers are focused on new product development, mergers & acquisitions, vertical integration, and global expansion to increase their market share and global footprint. Some key manufacturers in the global transformer oil market include:
Nynas AB
Calumet Specialty Products
PetroChina Company
China Petroleum & Chemical Corporation
Cargill Inc.
Shell Plc.
Ergon, Inc.
Engen Petroleum Ltd.
Hydrodec Group Plc.
APAR Industries Limited
Other Key Players
Suppliers emphasize building strategic partnerships with utility companies and grid operators to better understand their evolving requirements and emerging trends. Collaborations with research institutions to develop bio-based and alternative transformer fluids are also seen. Overall, the market is poised to grow at a CAGR of over 13.2% from 2022 to 2032.
Growth Opportunities
Some promising growth opportunities in the global transformer oil market:
Rising investments in renewable energy globally will drive demand for specialty transformer oils optimized for solar and wind infrastructure.
Electric vehicle charging infrastructure build-out provides a new application area for suppliers. Specialty oils with high dielectric strength and fire safety are required.
Product innovation for high-voltage and extra high-voltage transformers provides differentiation opportunity for manufacturers.
Digitization of grid assets and condition monitoring creates scope for value-added services and solutions for suppliers beyond selling transformer oil.
Retrofilling of old transformers with modern fluids improves performance and provides incremental revenue potential.
Emerging economies with low electrification rates still offer untapped potential through electricity network expansion.
Key Challenges
Disposal of used transformer oil requires responsible practices and adds to overhead costs. This can affect procurement decisions for end-users.
Concerns about mineral oil supply security arising from geopolitical factors may lead users to look for alternatives.
High R&D costs for product innovation may hamper smaller players lacking scale and resources.
Raw material price volatility affects the ability to offer stable pricing to customers.
Growing adoption of dry-type transformers can restrain market growth to some extent.
Conclusion
The transformer oil market is poised for steady growth in the long run, backed by rising electricity consumption, investments in new and aging T&D infrastructure, product innovation and stringent environmental regulations. While mineral oils dominate presently, bio-based and specialty fluids will gain share driven by sustainability-conscious policies. Manufacturers are focused on addressing evolving customer needs through R&D and offering value-added solutions. The Asia Pacific region will be the growth engine, while North America and Europe remain stable mature markets. Consolidation is likely to continue as participants seek economies of scale.
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Frequently Asked Questions
Q1. What are the major applications of transformer oil?
Transformer oil is used for insulation, cooling and arc quenching within transformers. It prevents corona discharge and electrical arcing in the transformer windings and core. It also transfers heat away from the coils to the transformer tank exterior. The major applications are in distribution, power and specialty transformers across utilities, commercial buildings and industrial facilities.
Q2. Which region dominates the global transformer oil market currently?
Asia Pacific is the largest and fastest growing market for transformer oils, accounting for over 35% share in 2021. Growing electricity demand, investments in grid infrastructure and rapid urbanization in economies such as China, India, Japan and Southeast Asia are driving regional growth.
Q3. What are the key drivers for the transformer oil market?
The major drivers are rising investments in electricity networks globally, upgradation of aging grid infrastructure in mature economies, expansion of renewable energy, stringent environmental regulations promoting eco-friendly oils, and product innovation by manufacturers.
Q4. What are the different types of transformer oils?
The major product segments are mineral oils, silicone-based oils, bio-based vegetable oils, synthetic esters, and other specialty oils. Mineral oil dominates presently, but the share of bio-based and specialty transformer fluids is increasing steadily.
Q5. Who are the major transformer oil manufacturers?
Some of the key manufacturers are Shell, ExxonMobil, Apar Industries, Nynas, Ergon International, PetroChina, Sinopec, Calumet Specialty Products, San Joaquin Refining and Gulf Oil International. The market is fairly consolidated with a few large global players and many smaller regional suppliers.
Q6. What role does crude oil pricing play in the transformer oil industry?
Crude oil price fluctuations affect the feedstock costs for mineral oil-based transformer oils, which comprise the majority market share currently. This creates uncertainty regarding profit margins for manufacturers. However, the growing use of alternative raw materials for bio-based and synthetic oils is expected to mitigate this pricing pressure going forward.
In summary, the global transformer oil market is projected for steady growth supported by stable long-term demand drivers and increased adoption of specialty product offerings. With a shifting focus towards sustainability and performance, transformer oil manufacturers are gearing up to meet the evolving needs of the power industry.
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sudeepkedar · 2 years
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North America Power Transformer Market is predicted to observe accelerated CAGR by 2027
North America Power Transformer Market to expand lucratively till 2027. North America power transformer market forecast is making a steady headway due to the growing investments in the renewal of power grid infrastructure. As the installation of heavy-duty power generation units has picked up momentum owing to the COVID-19 pandemic, product usage is likely to see an uptick between 2021 and 2027.
The outdoor installation segment is likely to account for a substantial portion of North America transformer industry share by 2027. The ongoing investments in energy projects is responsible for rising inhouse captive power needs. Expanding applicability in high as well as medium voltage requirements is increasing the installation of these products. As these products minimize losses and require lesser space, end-users are adopting them to a greater extent than in pre-pandemic times.
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U.S. power transformer market size is augmenting at a stable pace owing to the rising electricity consumption. Since the outbreak of the pandemic, the WFH and online learning trends have increased the load on power infrastructure. At the same time, the cement, petrochemical, and mining industries in the nation are registering a mounting energy consumption.
Industry players are making the most of the emerging opportunities by introducing new products. For instance, in 2021, WEG announced the successful establishment of its 5th production plant for manufacturing transformers with capacity up to 10 MVA in the U.S. With this launch, the company has been expanding its product portfolio and attracting a wider customer base.
DOS Canada Inc, Hitachi ABB Power Grids, General Electric, Hyosung Heavy Industries, Schneider Electric, Northern Power transformer, Toshiba International Corporation, Siemens, Eaton, and Ermco ECI are some top power transformer manufacturers in North America.
The COVID-19 pandemic brought a sudden halt to manufacturing activities as well as consumer demand. Disruption of supply chains had a significant impact on the power transformer industry outlook in North America during 2020. As lockdowns are being revoked worldwide and the number of COVID-19 cases are dropping, the stabilization of the economy is a positive sign for industry players. With the regional governments seeking to fortify the healthcare infrastructure, the industry share from the commercial applications will represent a sizable part of the total revenue in North America.
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Three-phase power transformer market share will expand on account of government regulations for refurbishing the aging grid infrastructure in North America. Funding activities toward energy-efficient and smart transmission and distribution networks are supporting product adoption. 3 phase transformers are being installed across commercial complexes, residential buildings, and healthcare organizations because these systems exhibit the following features:
1.       Efficient regulation of voltage
2.       Multi-nodal integration across the distribution network
3.       Incorporation of a quick cooling system
The pad-mounted power transformer market in North America is progressing as the demand for energy-efficient products has been growing. Regional discoms (distribution companies) are showing an inclination toward the use of remote-controlled, automated systems, favoring product installation. With the adoption of renewable energy gaining traction, pad mounted products are expected to see increased sales over 2027.
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India Mobile Value Added Services (MVAS) Market Outlook- Ken Research Buy Now Value Added Services are the Non–core services provided along with the core services in any type of service industry.
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narwatharsh01 · 6 months
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A Look at Key Players in the Mobile Value-Added Services Market
The mobile phone has transcended its original purpose of voice communication. Today, smartphones are handheld portals to a vast ecosystem of services that extend far beyond basic calls and texts. This realm of additional offerings is known as the Mobile Value-Added Services (MVAS) market, and it's experiencing phenomenal growth.
At the core of the MVAS market are the companies that develop and deliver these services. This landscape is a dynamic mix of established players and innovative startups, all vying to provide users with experiences that enhance their mobile lives. Let's delve into the key segments of this market and explore some of the major companies shaping its future.
Mobile Network Operators (MNOs): The Traditional Powerhouses
MNOs, the familiar names we associate with mobile subscriptions, have been major forces in the MVAS market since its inception. They leverage their existing subscriber base and billing infrastructure to offer a variety of value-added services. These can include:
Messaging Services: SMS, MMS, and even premium messaging for special content or alerts.
Mobile Entertainment: Music and video downloads, ringtones, mobile games.
Location-Based Services: Navigation apps, weather updates, traffic alerts, and even targeted advertising based on user location.
Mobile Financial Services: Mobile banking, mobile wallets, and airtime top-up options.
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MNOs like AT&T, Verizon, Vodafone, and China Mobile are some of the biggest players in this segment. They benefit from a large and established subscriber base, allowing them to offer economies of scale for their MVAS. However, competition from niche players and the rise of app stores are forcing them to innovate and adapt their offerings.
Content and Application Providers: The Innovation Engine
The rise of smartphones and app stores has fueled the emergence of a new breed of MVAS providers – content and application developers. These companies specialize in creating engaging and valuable mobile applications that cater to a wide range of user needs. Some prominent examples include:
Gaming Companies: Developers like King (Candy Crush) and Rovio (Angry Birds) have created billion-dollar businesses through freemium mobile gaming models with in-app purchases.
Entertainment Apps: Streaming services like Netflix and Spotify offer subscription-based access to content on mobile devices.
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Social Media Platforms: Companies like Facebook and Snapchat provide free-to-use communication and social networking features that generate revenue through advertising.
Financial Technology (FinTech) Companies: Startups like PayPal and Venmo are revolutionizing mobile payments and creating new MVAS opportunities in the financial sector.
Content and application providers bring a fresh wave of innovation to the MVAS market. Their focus on user experience and engagement is driving the development of cutting-edge services that cater to evolving user demands.
The Rise of Aggregators and Enablers
A third category of companies is emerging in the MVAS space – aggregators and enablers. These players act as intermediaries between content providers, MNOs, and users. They provide the technological infrastructure and platforms that allow for seamless delivery and monetization of MVAS. Some of the key functions performed by aggregators include:
Payment Processing: Securely handling transactions for in-app purchases, subscriptions, and mobile payments.
Content Delivery Networks (CDNs): Ensuring smooth and efficient delivery of content like music, videos, and games to mobile devices.
Marketing and Analytics: Providing targeted advertising solutions and user behavior insights to MVAS providers.
Companies like InMobi and Comviva are prominent players in this space. By streamlining the process of delivering and monetizing MVAS, they play a crucial role in enabling the growth of the entire ecosystem.
The Future of MVAS: Personalization and Emerging Technologies
As the MVAS Industry continues to evolve, several key trends are shaping its future:
Hyper-Personalization: MVAS providers will leverage user data and artificial intelligence to deliver highly personalized services and content recommendations.
The Rise of 5G: Faster and more reliable internet connectivity through 5G networks will open doors for new and immersive MVAS experiences like augmented reality (AR) and virtual reality (VR) applications.
Focus on Security and Privacy: With increasing concerns about data security, MVAS providers will need to prioritize user privacy and implement robust security measures.
The MVAS market is a dynamic and ever-changing landscape. By understanding the key players and trends, we can gain valuable insights into how mobile technology will continue to enhance and enrich our lives in the years to come.
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Iris Publishers - Current Trends in Clinical & Medical Sciences (CTCMS)
Medical Use of Povidone Iodine Against Covid-19. Why Not?
Authored by Luis Mendoza
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Povidone-iodine (PVP-I) is an old antiseptic used in practice of medicine as a surgical scrub; for pre- and post-operative skin cleansing; for the treatment and prevention of infections in wounds, decubitus ulcers, cuts, and burns; in gynecology for vaginitis associated with candidal, trichomonal or mixed infections. For these purposes, PVP-I has been formulated at concentrations of 7.5- 10.0% in solution, nasal and throat spray, surgical scrub, ointment, swab dosage forms, eye drop, and vaginal suppositories. The safety profile of PVP-I at such concentrations is well established and many available products in the market are over the counter. The most well-known brand for PVP-I is BETADINE.
PVP-I has been reported as a broad‐spectrum microbicide with potency to inactivate bacteria, fungi, protozoans, and several viruses. After searching the medical database “PubMed” and entering the keywords: povidone-iodine and virus, I have found that there 101 scientific publications connect with PVP-I against viruses. The first publication about the efficacy of PVP-I was reported in 1975 where the PVP-I can reduce the titers of herpesvirus type 2 by 92% [1].
Recent in vitro studies have demonstrated virucidal activity of PVP-I against a wide range of enveloped and non-enveloped viruses and rapid virucidal activity against the Ebola virus, MERS-CoV, and European reference enveloped virus [modified vaccinia virus Ankara (MVA)} [2,3]. The first evidence of the virucidal activity of PVP-I against SARS coronavirus was published in 2006 [4]. German researchers demonstrated the virucidal activity of PVP-I as skin cleanser against the Ebola virus and as gargle/mouthwash against MERS-CoV and MVA. [2]. Thanks to the funding from Mundipharma Research GmbH & Co, German researchers published the rapid inactivation of SARS-CoV, MERS-CoV, influenza virus A (H1N1), and rotavirus after 15 seconds of exposure [5]. Mundipharma Research have developed several PVP-I based products and a gargle/ mouthwash.
In contrast to other antiseptic agents, PVP-I oral care products do not lead to any irritation or damage to the oral mucosa, even with prolonged use [5]. Respiratory Syndrome (MERS) coronavirus or endemic human coronaviruses, which is killing thousands of human beings currently, can persist on inanimate surfaces like metal, glass, or plastic for up to 9 days where the PVP-I (0.23-7.5%) readily inactivated coronavirus infectivity by approximately 4 log10 or more [6]. In a recent paper released on 27 March 2020 in the journal Lancet Infectious Disease, the French researchers confirmed the high viral loads in upper respiratory tract samples are suggestive of the potentially high risk of transmissibility during the very first days of symptoms [7]. This finding is in line with data reported by Zou and colleagues beginning of this year, who analyzed viral load in the upper respiratory tract in relation to day of onset of symptoms in 17 symptomatic patients in whom higher viral loads were detected soon after symptom onset [8].This observation suggests that the virus shedding pattern of patients infected with COVID-19 have a high viral load in the upper respiratory tract at the disease onset.
So far, here is no vaccination or any specific antiviral treatment available for COVID-19. The COVID-19 pandemic is controlled with can, however, be quickly and effectively controlled with preventive strategies based upon early accurate viral diagnosis and adequate hygiene practices to decrease the risk of transmission.
Considering the proven in vitro efficacy of PVP-I, I am convinced that it would be an effective method of preventing the growth and spread out of the viruses-containing airborne/droplet from the nose and mouth of an infected individual. It is also possible that a reduction of COVID-19 viral load at nose, nasopharynx and oropharynx may help to the individual to present less severe disease and reduce the number of deaths. The destruction of the COVID-19 viral load at the upper respiratory tract will reduce of infectivity of infected individual in the community and consequently help to eradicate the COVID-19 pandemic and all terrible consequences.
On the market, several PVP‐I formulations and presentations are available that differ in their composition and indications. Therefore, my suggestion for achieving an efficient anti-COVID-19 effect will be to recommend the frequent daily use of the PVP- based mouthwash for gargles and mouth rinse, combined with the PVP-I based nasal rinse or nasal spray or the application of the PVP-I based ointment to prevent the COVID-19 infection through nasal foramens. The use of the PVP-I products against COVID-19 is empiric and it may be used at least 4 times a day for health worker professionals or other professional exposure to large number of potential or COVID-19 positive individuals. For COVID-19 negative patients and for whose follow careful the recommendation of social isolation, the use of 1 or 2 times a day of PVP-I products for disinfection of nasopharynx and oropharynx might be enough. The length of PVP-I products as a prophylactic should till the risk of infectivity by COVID-19 is considered controlled by local authorities. Every country has different PVP-I products in the market, therefore the physician should look at of the available products a recommended the use for the viral cleaning and protection. The mouthwash shouldn’t be swollen. The PVP-I used in humans is innocuous, but the physician should be aware some allergic (hypersensitivity) cases have been reported. In case of allergic reactions, the PVP-I should be discontinued immediately. Several cases of thyroid dysfunction induced by transcutaneous absorption of povidoneiodine have been reported. Therefore, the monitoring of the thyroid function is recommended in patients with thyroid diseases. I must also highlight here that besides the use of the PVP-I products, it is imperative to continue following the recommendations about the necessary protective measures advised to the public by WHO.
Finally, even though the chemical composition is known, the reliability of virucidal activity of the marketed product cannot be predicted. Therefore, it is essential to test the PVP-I products in clinical trials to confirm the efficacy of them against COVID-19 primary infestation at the upper respiratory tract. In that regard, there are 3 ongoing COVID-19 clinical trials to demonstrate the prophylactic and therapeutic benefit of PVP-I as nasal alone and combined with gargle applications in USA. Meanwhile, not having therapeutic alternative against COVID-19, to enhance the preventive strategies, avoid movement and self-isolation to avoid the contagious or infectivity of the virus at the upper respiratory tract, the advice of health care and system to use of low-cost PVP-I products would be key to minimize the tragedy of the current COVID-19 pandemic. Why not!
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realritu · 4 years
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Integrated Gate Commutated Thyristor Market
An integrated gate commutated thyristor (IGCT) is a gate-controlled turn-off switch, which performs similar to a thyristor with lowest conduction losses. IGCT is a power semiconductor, which can be used for medium to high-voltage applications ranging from 0.5 MVA up to several 100 MVA. IGCT enables a robust series connection between high power turn-off devices used for high power applications.
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Benefits such as better performance of IGCT at higher temperature, (temperature ranges from -40 to 125 C) support the growth of the market. IGCT is used in industrial appliances and steel mills for controlling high power AC motors, and AC grid interface, as well as the PWM switching. Therefore, this feature adds value to drive the demand for the IGCT market.
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imtiyaz-shaikh · 2 years
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thetejasamale · 2 years
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Mobile Substation Market Analysis and Growth Forecast by Regions and Applications to 2030
The Mobile substation Market is likely to grow at a 5% CAGR in the forecast period 2020- 2027, according to the latest Market Research Future (MRFR) analysis. A mobile substation is a container that is equipped with essential medium and high voltage components of a full substation, including control systems, DC and AC auxiliary power, protection and control equipment, surge arresters, metering transformers, switchgear and disconnect switches, and power transformer. A substation plays an imperative part in the transmission and distribution of electrical power all through the grid.
Various factors are fuelling the global mobile substation market share. As per the recent MRFR market estimates, such factors include the various alluring features such as flexible solution, easy installation, and time saving, growing adoption of mobile substations in the power and energy market, growing industrialization, cost effectiveness, wide application in residential, industrial and utility sectors, and fast restoration of power supply during power outage.
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On the contrary, lack of awareness, impact of the COVID-19 pandemic, and high maintenance of mobile substations may limit the global mobile substation market growth over the forecast period.
Key Players
The notable players profiled in the global mobile substation market report include Delta Star Inc. (U.S.), Atlas Electric Inc (U.S.), WEG (Brazil), EKOSinerji (Turkey), Enerset Power Solutions (Texas), Matelec Group (Lebanon), Meidensha Corporation (Japan), Elgin Power Solutions (U.S.), Qingdao TGOOD Electric (China), General Electric Company (U.S.), Siemens AG (Germany), and ABB Ltd. (Switzerland), among others.
The mobile substation market is fragmented and competitive with the presence of multiple domestic and international industry players. These players have used assorted strategies to stay at the forefront and also cater to the surging needs of the esteemed customers, such as collaborations, partnerships, contracts, geographic expansions, new product launches, joint ventures, and more. Additionally, these players are also making heavy investments in research and development activities for strengthening their portfolios and also creating a hold in the market.
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Market Segmentation
The MRFR report throws light on an inclusive segmental analysis of the global mobile substation market based on application, power rating, mobile transformer, and voltage type.
By voltage type, the global mobile substation market is segmented into MV and HV. Of these, the MV segment will lead the market over the forecast period.
By mobile transformer, the global mobile substation market is segmented into distribution transformer and power transformer. Of these, the distribution transformer segment will dominate the market over the forecast period.
By application, the global mobile substation market is segmented into industrial, infrastructure, energy and utilities, and others. Of these, the energy and utilities segment will spearhead the market over the forecast period.
By power rating, the global mobile substation market is segmented into above 100 MVA, 25 MVA-100 MVA, 11 MVA- 25 MVA, and up to 10 MVA. Of these, the 25 MVA- 100 MVA segment will have the lions share in the market over the forecast period.
Regional Analysis
By region, the global mobile substation market covers the recent trends and growth opportunity across North America, Europe, the Asia Pacific (APAC), and Rest of the World (RoW). Of these, North America will head the market over the forecast period. Considerable rise in transmission and distribution network, growing need for power, growing demand for mobile substation, developing power sector, high demand for energy, and growing non-conventional and conventional power generation plants are adding to the global mobile substation market growth in the region.
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In the APAC region, the global mobile substation market is predicted to have promising growth over the forecast period. Growing demand for power, rising population, growth of the industrial sector, growing need for proper power transmission and distribution for uninterrupted power supply, and cost effective nature are adding to the global mobile substation market growth in the region.
In Europe, the global mobile substation market is predicted to have healthy growth over the forecast period. Presence of major companies and adoption of technology are adding to the global mobile substation market growth in the region.
In RoW, the global mobile substation market is predicted to have steady growth over the forecast period.
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dsiddhant · 2 years
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According to the new market research report "Shore Power Market by Installation (Shoreside, Shipside), Connection (New Installation, Retrofit), Component (Transformers, Frequency Converters, and More), Power Output (Up to 30 MVA, 30 to 60 MVA, Above 60 MVA) and Region - Global Forecast to 2027", published by MarketsandMarkets™, the Shore Power Market size will grow to USD 2.8 billion by 2027 (forecast year) from USD 1.6 billion in 2022 (estimated year), at a CAGR of 11.2% during...
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resbar · 2 years
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Influence of fertilizers on incidence and severity of early blight and late blight potato diseases | IJB 2021
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Mr. Ngoh Dooh Jules Patrice (First and Corresponding Authors ) and Mr. Boydoul Frederic Ulrich from the Department of Biological Sciences, Faculty of Science, University of Maroua, PO Box 814 Maroua Cameroon, Mr. Nsimi Mva Armand, Research Fellow, from the IRAD Dibamba, Cameroon, PO Box, 243, Mr. Philippe Kosma from the Higher National Polytechnic School of Maroua, University of Maroua, PO Box 1450 Maroua and Mr. Ambang Zachee from the Laboratory of Biotechnologies, Phytopathology and Microbiology Unit, University of Yaounde I, PO Box, 812, Cameroon wrote a research paper entitled "Influence of fertilizers on incidence and severity of early blight and late blight potato diseases under field condition." This research paper published by the International Journal of Biosciences | IJB, in their January issue 2021, under the volume 18.
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Abstract
The potato (Solanum tuberosum) production in the Far North Region, Cameroon is confronted with, diseases and pests. To improve the production of this plant, a study was carried out in Mouvou and Gouria to evaluate the impact of fertilizers on the development of late blight and early blight diseases of this plant. The experimental design used was a completely randomized block with 4 treatments: Mycorrhizae (MYC), NPK (20-10-10) chemical fertilizers, chicken droppings (CD) and a control (T). The plant material used was a local variety of potato (Dosa). Disease incidence and severity and rainfall were evaluated. Area Under Disease Progress Curve was calculated. At 60 DAS, mean incidences recorded for fertilizers were 5.7, 3.6, 1.8 and 0.8 % respectively for control, MYC, NPK and CD. In general, early blight severity decreased from 22.1% at 45 DAS to 0.3 % at 60 DAS. The highest AUDPC value of late blight at Mouvou site was observed in NPK treatment while potato in CD treatment had the lowest. The lowest AUDPC value of early blight was observed in CD treatment at both sites. AUDSIPC value for late blight was significantly higher in NPK treatment in both sites. The highest value of AUDPSIC of early blight was recorded in MYC treatment, 45 DAS in both sites. The average rainfall was higher in the Gouria site (716.5mm) than in Mouvou site (679 mm). The CD treatment can be recommended to the farmers for the phytosanitary protection of potatoes.
 Introduction
The potato (Solanum tuberosum L.) is an important food in many countries and is in the fourth place after the wheat, rice and corn crops. It is therefore the main non-cereal foodstuff in the world (FAO, 2013).World production was estimated at more than 368 million tonnes on 19.4 million hectares in 2013 (Issa et al., 2017). 
Originally from the highlands of Peru (Spooner et al.,2005), it was introduced to Africa during the colonial period (1884-1914). In Cameroon, potato is cultivated in areas of high altitudes, especially by small farmers (IRAD, 2012). Six of the ten regions are concerned, the North-West, the South-West, the West, Adamawa, the Littoral and the Far -North (Fontem et al., 2004). It constitutes a basic food for the populations of these regions and an important source of income because part of the production is either sold in the local market or exported to the neighboring countries. National production was estimated at 229 000 tonnes over 23 500 hectares in 2009 (IRAD, 2012). Thus, despite the importance of the potato in the national economy, total production remains below, yields are generally low (Njualem et al., 2001; Diop et al., 2019) and are between 3 and 11tonnes per hectare, while those of European countries are on average 25 tonnes per hectare ha and reach 60 tonnes per hectare (Sayed et al. 2015). 
In the Far North Cameroon Region, particularly in the Mogodé subdivision (Mayo-Tsanaga), the only and main production area, the low yields observed are associated with poor peasant farming practices (Ngoyi et al., 2020), the scarcity or inequality of the rains and especially to diseases and pests. 
Many diseases have been reported on potatoes in several countries (Alkher et al., 2015; Son et al., 2018) and in Cameroon (Fontem 2003; Fontem et al., 2004; Lontsi et al., 2019). Brown rot and Bacterial wilt (Ralstonia solanacearum) of potato are the major bacterial diseases in potato production area (Kong et al., 2016; Charkowski, 2020). Whereas more than 50 different viruses and one viroid have been reported infecting potatoes worldwide only a handful of them cause major losses (10–40 %) globally (Chiunga and Valkonen, 2013). Late blight (Phytophthora infestans) and Alternaria or early blight (Alternaria spp) appear to be the major fungi diseases threatening the production of potato in the world with more than 80% of losses (Ah-Fong et al., 2017; Abuley and Nielsen 2017). 
Several solutions have been proposed to overcome these diseases production constraints and increase yield These include the use of varieties with high potential production, resistance to diseases and adaptation to the agro-ecological zone (IRAD, 2012) and the use of chemical fertilizers by farmers. However, these fertilizers when there are within the reach of farmers, there is a lack of control over their use. 
This practice can disrupt the environmental balance. On the other hand, diseases encountered in the fields are caused by some cultural practices that enhance the development, proliferation, or reduction of thepathogens responsible for diseases, as well as epidemiological parameters (Thurston, 1992; Tompkins et al., 1992; Reid et al., 2004). Organic amendments and composting can affect the inoculum which is the primary source of disease infestation in the field (Thurston, 1992). 
Otherwise, the addition of certain mineral and organic fertilizers can lead to the rapid development of plants, making them more or less susceptible to attack by pathogens (Thresh, 1982; Nawal et al., 2014; Abiodum et al., 2015). Despite the knowledge about the relationship between fertilizer application and disease expression, fertilizer application is adopted by farmers in Cameroon just to increase their crop yield. But, little information is available on the effect of this applied fertilizer on the incidence and severity of diseases of potato. Knowledge of host nutrition concerning disease development provides a basis for modifying current agricultural practices to reduce disease incidence and severity (Lepoivre, 2003). Checkout more by following the link Influence of fertilizers on incidence and severity of early blight and late blight potato diseases under field condition
 Reference
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Alkher H, Islam MR, Wijekoon C, Kalischuk M, Kawchuk LM, Peters RD, Al-Mughrabi K I, Conn KL, Dobinson KF, Waterer D, Daayf F. 2015. Characterization of Phytophthora infestans populations in Canada during 2012. Canadian Journal of Plant Pathology 37(3), 305-314.
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Fontem DA, Younyi PC, Suh MN. 2004. Effects of Crop Sanitation and Ridomil MZ Applications on Late Blight Severity and Tomato Yields in Cameroon. Tropicultura 22(3), 122-126.
Gnamkoulamba A, Tounou AK, Tchao M, Tchabi A, Adjevi AKM, Batawila K. 2018. Evaluation au champ du potentiel de croissance et de la production du riz (Oryza Sativa L.) variété IR841 inoculé en pépinière par quatre souches de champignons mycorhiziens à arbuscules. European Scientific Journal 14(12), 452-481
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Issa M, Ngakou A, Haouvang LC, Nukenine NE. 2017. Potentials of arbuscular mycorrhizafungi (AMF) and neem (AzadirachtaindicaA. Juss.) Leaves extract as biological Control agents against the sweet potato weevil (Cylas puncticollis Boch.) in two Agro-ecological zones of Cameroun. Journal of Experimental Agriculture Internation 17(1), 1-13.
https://doi.org/10.9734/JEAI/2017/35248
Kariuki WG, Mungai NW, Otaye DO, Thuita M, Muema E, Korir H, Masso C. 2020. Antagonistic effects of biocontrol agents against Phytophthora infestans and growth stimulation in tomatoes. African Crop Science Journal (28), Issue Supplement, s1 p 55-70.
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Kone N, Asare-Bediako E, Silue S, Kone D, Koita O, Menzel W, Winter S. 2017. Influence of planting date on incidence and severity of viral disease on cucurbits under field condition. Annals of Agricultural Sciences 62, 99–104.
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Kong HG, Bae JY, Lee HJ, Joo HJ, Jung EJ, Chung E, Lee SW. 2014. Induction of the viable but nonculturable state of Ralstonia solanacearum by low temperature in the soil microcosm and its resuscitation by catalase. PLoS One 9(10), 109792.
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Lepoivre P. 2003.  Phytopathologie.De loece, les presses agronomiques de Gembloux, p 413.
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Lontsi SLD, Ambang Z, Djieto CL, Wouom BCC, Heu A, Pegalepo AN. 2019. Effect of aqueous extracts of Thevetia peruviana K. seeds on the control of late blight and pest insects of Solanum tuberosum L. in Cameroon. Greener Journal of Agricultural Sciences 9(1), 14-22.
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Moser M, Haselwandter K. 1983. Ecophysiology of mycorrhizal symbiosis, in: Encyclopedia of Plant Physiology, New Series, 12, Eds O. L. Lange. P. S. Nobel, C.B. Osmond and H. Ziegler. Springer, Berlin-Heidelberg-NewYork,) p 392-421.
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Ngoh Dooh JP, Boydoul UF, Abdoul, Tchoupou TDB, Bouba D, Hawaou A, Philippe Kosma, Ambang Z. 2020. Inventory of the potato diseases and impact on growth and yield traits in far North Cameroon. International Journal of Biological and Chemical Sciences 14(8), 2826-2836.
Ngonkeu MEL. 2003. Biodiversité et potentiel des champignons mycorhiziens à arbuscules de quelques zones agro écologiques du Cameroun. Thèse de Doctorat 3e, cycle Université de Yaound.é I. p 258.
Ngoyi AN, Masanga GK, Bila HM, Yashima AY, Milambo MM, Ndjibu LN, Baboy LL. 2020. Effet des amendements organiques sur la croissance et le rendement de la pomme de terre (Solanum tuberosum) cultivée sur un sol dégradé dans la région de Kabinda, République Démocratique du Congo. International Journal of Biological and Chemical Sciences 14(5), 1812-1819.
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Sayed F, El-Sayed&Hassan A, Hassan Mohamed M, El-Mogy. 2015. Impact of Bio-and Organic Fertilizers on PotatoYield, Quality and Tuber Weight LossAfter Harvest. Potato Research 58, 67–81.
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Reid LM, Zhu X, Ma BL. 2004. Crop rotation and nitrogen effects on maize susceptibility to Helmenthosporium maydis blight. Plant & Soil. 237 (1), 1-14.
Son D, Somda I, Legreve A, Schiffers B. 2018. Effect of plant diversification on pest abundance and tomato yields in two cropping systems in Burkina Faso: farmer practices and integrated pest management.  International Journal of Biological and Chemical Sciences 12(1), 101-119.
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abhigmi · 3 years
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Europe Power Transformer Market to Observe Rugged Expansion at a Top CAGR by 2027
The Europe power transformer market is estimated to witness substantial growth by 2027 owing to the ongoing digital transformation of regional utilities, coupled with increasing proportion of renewable energy along primary power consumption.
Government regulations to minimize energy theft in the region, coupled with the soaring energy demand, are expected to foster industry landscape in the coming years. Meanwhile, escalating significance of sustainable and reliable energy infrastructure, coupled with expansion of transmission lines, would also significantly outline the revenue graph for Europe power transformer market in the following years.
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On the basis of installation, the outdoor sub-segment is anticipated to expand steadily through 2027. Stringent regulatory policies as well as deployment of smart monitoring units are projected to support industry expansion over the assessment period. The introduction of cross-border power networks would also foster the Europe power transformer market outlook.
Based on core, the shell core power transformer sub-segment is estimated to see sizable growth over the forecast timeframe. Increasing infrastructural investments and flourishing real estate sector across the region are expected to propel segmental growth over 2021-2027.
Ongoing commissioning of high voltage power cables after the development of Tier II and III cities is supporting product demand on a large scale. Notably, these transformers provide several key benefits, including easy transportation, high dielectric current capability, and compact design, making them ideal for a variety of applications.
In terms of rating, the < 100 MVA rated power transformer market is expected to grow at a considerable CAGR through the assessment period. Flourishing real estate sector and increasing infrastructural investment are key factors speculated to impel segmental growth.
Expansion of commercial establishments, such as malls, hotels, resorts, and universities, is expected to further drive product adoption in the coming years. Moreover, ongoing demand for new developments in response to the COVID-19 crisis, particularly in the healthcare and commercial sectors, would also positively influence the market landscape.
On the basis of mounting, the pad mounted sub-segment held a substantial share in the Europe power transformer market in 2020 and is projected to grow steadily through 2027. Ongoing development of smart cities and the introduction of digital substations are key factors facilitating segmental adoption.
Widespread utilization of pad mounted power transformers across railways, steel factories, roads, and chemical plants are estimated to be profitable for segmental growth. Moreover, the benefits offered by these transformers, including appropriate cooling capability, low maintenance, and low concerns involving fire hazards, short circuits, and fluctuations, are expected to fuel product demand.
From the regional perspective, France power transformer market is speculated to garner profitable gains by 2027, driven by the booming tourism sector and rapid development of high-rise buildings and hotels in the region.
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Advent of smart grids to accommodate the growing demand for eco-friendly and zero emission electrical equipment is further expected to support product deployment. Additionally, increasing focus on grid modernization, along with strengthening the existing power infrastructure, to meet the surging power demand, is estimated to foster business outlook.
Leading players in the Europe power transformer market include Hyosung, SPX Transformer Solutions, ABB, General Electric, Celme, Mitsubishi Electric Corporation, Siemens, Toshiba Corporation, Hammond Power Solutions, CG Global, and Schneider Electric.
Table of Contents (ToC) of the report:
Chapter 1   Methodology and Scope
1.1    Research Methodology
1.2    List of data sources
1.2.1    Primary
1.2.2    Secondary
Chapter 2   Executive Summary
2.1    Europe power transformer market snapshot
Chapter 3   Europe Power Transformer Market Trends
3.1    Industry coverage
3.2    Industry size & forecast, 2017 - 2027
3.3    Value chain analysis
3.3.1    Company product snapshot
3.4    Innovation landscape
3.5    Regulatory norms & directives
3.6    COVID- 19 impact on the industry outlook
3.7    Drivers & restraints
3.7.1    Market drivers
3.7.2    Market restraints
3.8    Product growth mapping
3.9    Industry Analysis - Porter's
3.10    Competitive benchmarking, 2020
3.11    PEST Analysis
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