Showing posts with label Clean Energy. Show all posts
Showing posts with label Clean Energy. Show all posts

Thursday, 29 May 2025

Bright Future for Hydrogen Automotive TIC Industry | CAGR 11.8%

 The global Hydrogen Automotive TIC Market is projected to grow from estimated USD 18.3 million in 2024 to USD 35.8 million by 2030, at a CAGR of 11.8% during the forecast period. The market is driven by the increasing commercialization of hydrogen technologies, growing focus on lifecycle risk assessment, and the emergence of hydrogen as a key energy carrier for future energy systems. The shift toward decentralized energy solutions and integrating hydrogen with renewable energy sources is prompting the need for robust certification and compliance services. Additionally, expanding international collaborations, growing investor interest, and developing hydrogen-powered industrial clusters boost demand for reliable testing, inspection, and certification to ensure the safety, efficiency, and long-term viability of hydrogen applications.

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Testing, by service

The testing segment is expected to witness the highest CAGR in the Hydrogen Automotive Testing, Inspection, and Certification (TIC) Market due to the increasing need to validate the performance, safety, and reliability of hydrogen components and systems. With the growing deployment of hydrogen in mobility, energy, and industrial applications, rigorous testing is essential for high-pressure storage, fuel cells, pipelines, and refueling infrastructure. Advancements in hydrogen technology, evolving regulatory frameworks, and heightened safety concerns are further driving demand for specialized testing services. Additionally, manufacturers seek third-party validation to ensure global compliance and market acceptance of hydrogen solutions.

Hydrogen Automotive TIC Market

Light commercial vehicles, by vehicle type

Light commercial vehicles (LCVs) are expected to grow at the highest CAGR in the Hydrogen Automotive TIC Market due to their rising adoption in last-mile delivery, urban logistics, and fleet operations seeking zero-emission alternatives. Hydrogen-powered LCVs offer fast refueling and extended range, making them ideal for high-utilization transport needs. Government incentives, stricter emission norms, and corporate sustainability goals accelerate the shift toward hydrogen LCVs. This surge drives demand for TIC services to ensure vehicle safety, component durability, and regulatory compliance, supporting the segment’s rapid growth in the coming years.

Regional Analysis

Europe is projected to be the fastest-growing region in the hydrogen automotive TIC market share, driven by strong regulatory support, ambitious decarbonization goals, and substantial investments in hydrogen mobility. The European Union’s Green Deal and Hydrogen Strategy have accelerated the development of fuel cell vehicles and refueling infrastructure. Countries like Germany, France, and the Netherlands lead large-scale pilot programs and public-private collaborations. Additionally, the presence of major automotive OEMs and stringent safety standards is boosting the need for TIC services to ensure reliability, compliance, and efficiency across the hydrogen vehicle ecosystem.

Key Players

Some of the major players in the Hydrogen Automotive Testing, Inspection, and Certification (TIC) Market are TÜV SÜD (Germany), UL LLC (US), Applus+ (Spain), TÜV Rheinland (Germany), Kiwa (Netherlands), Intertek Group plc (UK), DEKRA IN (Germany), Société Générale de Surveillance (SGS) SA (Switzerland), Southwest Research Institute (SwRI) (US), and Apave (France). The major strategies these players adopt include acquisitions, sales contracts, product launches, agreements, alliances, partnerships, and expansions.

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TÜV SÜD 

TÜV SÜD is the trusted partner of choice for safety, security, and sustainability solutions. TÜV SÜD focuses on managing technological risks and enabling progress, emphasizing sustainability and digitalization. Its services range from testing and certification to technical advisory, serving various industries to ensure safety and regulatory compliance. TÜV SÜD has a presence in Europe (comprises the home market of Germany as well as Western Europe and Central & Eastern Europe), Americas (covers both American continents, from Canada to the southern tip of South America), and Asia (combines all the countries of the Asia Pacific and South Asian area as well as the Middle East & Africa).

UL LLC 

UL LLC is a global safety science leader that provides independent TIC services and related software and advisory (“S&A”) offerings to customers worldwide. The company serves its customers through two complementary businesses: TIC and S&A. Its TIC business comprises two segments, Industrial and Consumer, which provide comprehensive TIC services to customers across a broad array of end markets.

Its S&A business is a global provider of software, data, and advisory solutions, enabling its customers to manage complex regulatory requirements, deliver supply chain transparency, and operationalize sustainability. In addition,  UL LLC has a presence in the US, China, Asia Pacific, Europe, the Middle East & Africa, and Other Americas.

Applus+ 

Applus+ provides testing, consulting, inspection, and certification services. The company offers quality control and accreditation services, project management, supplier and facility inspection, asset certification, and integrity services for the energy and industry sectors. It offers automotive inspection, vehicle condition, emission, engineering and registration inspection, homologation and product certification, structural, materials, fire and environmental testing solutions. Also, under its automotive business, it operates Applus+ IDIADA, which offers a wide range of services focused on the design, vehicle development, and testing for the automotive segment.

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Thursday, 22 May 2025

Wind Turbine Operations and Maintenance: Rising Demand and Future Projections

The global Wind Turbine Operations and Maintenance Market Size is projected to grow from estimated USD 39.61 billion in 2025 to USD 59.67 billion by 2030, at a CAGR of 8.5% during the forecast period. The major factors driving the Wind Turbine Operations and Maintenance Market include the increased need for energy efficiency and the global trends toward carbon neutrality and sustainability. There is a significant increase in the number of wind energy installations around the world. As installations rise, there is a corresponding increase in demand for effective O&M services to ensure the performance and longevity of wind turbines. O&M practice is changing quickly due to the development of new technology such as predictive maintenance, remote monitoring, and artificial intelligence. Technologies allow owners/operators to have a proactive approach to detecting issues and minimizing downtime. The support for renewable energy projects from government incentives and policy is also a driver of the market. From an environmental perspective, there is a shift towards sustainability. This drives the O&M market as many operators are adopting more sustainable practices for maintenance and retaining or refurbishing used components rather than eliminating them altogether.

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The offshore segment of the wind turbine operations and maintenance (O&M) market is clearly changing due to the growth of offshore wind installations and the use of newer technologies. The offshore O&M sector is integrating predictive maintenance strategies, often integrated through AI and IoT deployment to provide real-time monitoring and detection of potential faults and current and/or anticipated failures to limit downtime as well as maintenance costs. The deployment of autonomous systems, like drones and remotely operated vehicles (ROVs), is increasing inspection and maintenance efficiencies. With these technological advancements, the offshore sector is starting to see a realized focus on sustainability, as companies and organizations begin to adapt and implement environmentally friendly maintenance strategies and equipment to minimize their overall environmental footprint.

Wind turbine O&M market

The unscheduled maintenance of wind turbines is becoming more salient due to the complexity and size of wind energy projects. Unscheduled maintenance is defined as reactive maintenance because it is the result of unplanned equipment failure or breakdown. Unscheduled maintenance can also incur large amounts of downtime due to unplanned failures. Some of the factors creating the need for unscheduled maintenance are age of turbine fleet, harsh environmental conditions, and larger wind turbine sizes. To reduce unscheduled maintenance, the O&M market is increasingly using predictive analytics, remote monitoring, and drone inspections to identify faults before they happen. Along with the introduction of innovation in equipment, the wind turbine O&M market is looking to build supply chain continuity and reliability, as well as workforce training and preparedness. Predictive analytics, digital twins, and better monitoring are reducing surprise failures or unscheduled maintenance. There is a push towards proactive maintenance strategies to improve turbine uptime and reduce emergency interventions.

The North America wind turbine operations and maintenance market is projected to reach USD 10.45 billion by 2030, at a CAGR of 6.7% between 2025 and 2030. In the US, wind energy generation capacity grew to a total installed capacity of approximately 152 gigawatts (GW) in 2023, which is an increase of about 46% from 2019. Wind energy accounted for about 12% of the electricity provided in the country in 2023. The leading wind generation state in 2023 was Texas, with Iowa, Oklahoma, Kansas, and Illinois also leading in wind generation. Each of these leading states has wind resources that provide benefits for highly productive wind projects, along with infrastructure that allows wind generation projects to be constructed. Increased wind generation can also be attributed to improvements in technology that allow for greater turbine capacity and lower energy costs. Wind power has become one of the cheapest forms of power generation in the US.

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The global Wind Turbine Operations and Maintenance Market is dominated by major players that have a wide regional presence. Some of the key players in the Wind Turbine Operations and Maintenance Industry are Siemens Gamesa Renewable Energy, S.A.U. (Spain), Vestas (Denmark), GE Vernova (US), Nordex SE (Germany), Suzlon Energy Limited (India), Envision Group (China), SANY Renewable Energy Co., Ltd. (China), and Goldwind (China).

Siemens Gamesa Renewable Energy, S.A.U.

Siemens Gamesa Renewable Energy, S.A.U., a subsidiary of Siemens Energy AG, designs, manufactures, and sells both onshore and offshore wind turbines. The company also offers monitoring and maintenance of wind farms. Its services include diagnostic, energy thrust, multi-brand services, and offshore logistics services. The company operates under two segments: Wind Turbines and Service. It offers operation and maintenance services through its Service segment. The company uses digital tools to predict, detect, and fix problems remotely. Siemens Gamesa Renewable Energy, S.A.U. has installed over 130 GW of installed wind power capacity in the world, including over 130 installed capacity of onshore wind turbines, and it is one of the leaders in offshore wind with over 8 GW installed capacity.

GE Vernova

GE Vernova is a global leader in the electric power sector, with products and services that create, transfer, orchestrate, convert, and store electricity. The company’s goal is to design, manufacture, deliver, and service technologies to support a more reliable, secure, and sustainable electric power system, while permitting electrification and ultimately decarbonization. It has three business segments, namely, Power, Wind, and Electrification. The Wind segment provides operations and maintenance services. GE Vernova’s Onshore Wind division provides reliable and proven wind turbines: 2.8-127m, 3.6-154m, and 6.1-158m. To date, GE Vernova has created and installed approximately 57,000 wind turbines, totaling more than 120 GW of installed capacity, globally, in both onshore and offshore applications. The company has a geographical presence in the US, Europe, the Americas, Asia, and the Middle East & Africa.

Thursday, 20 March 2025

Nuclear Power Market Likely to Boost Future Growth by 2029

 The global Nuclear Power Market Share is expected to grow from estimated USD 38.84 billion in 2024 to USD 44.71 billion by 2029, at a CAGR of 2.9% during the forecast period. The major factors driving the market growth of the nuclear power market include various driving factors such as many governments view nuclear power as a strategic constituent of their energy policy, and provide subsidies, tax incentives, or direct investment to build up nuclear projects. For example, some countries like China, Russia, and France have long-term plans to expand their nuclear power capacity. In addition, governments also set regulatory frameworks that ensure the safe development of nuclear energy. Similarly, Volatile and rising prices of fossil fuels such as oil, gas, and coal also make nuclear energy even more appealing as a cost-competitive alternative. Since fuel is needed in only small amounts in nuclear plants, uranium price volatility does not significantly affect the general energy costs.

Regional Analysis

The Asia-Pacific region is a significant factor for the nuclear power market due to rapid industrialization, energy demand increase, and government initiatives under the goals of decarbonization. Among the countries, China, India, and South Korea have been leaders by investing massive amounts in developing new nuclear plants and advanced reactor technologies. China is dominant in terms of the ambitious energy strategy and large-scale reactor deployment. Furthermore, supportive policies and technological innovations foster growth. The region's push toward reducing greenhouse gas emissions, combined with factors such as urbanization and economic growth, promotes the adoption of nuclear power and makes the Asia-Pacific region the world's largest-growing nuclear energy market.

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Power Generation by application

Power generation application is expected to account largest market share during the forecast period.  Nuclear power plants produce enormous amounts of electricity uninterruptedly and thus are the choice option for increased energy production based on increasing urbanization, industrialization, and technological development. Their baseload capability to produce stability and reliability in power is essential, especially in emerging economies where electricity consumption keeps rising. Since the energy generation from wind and sun is intermittent, a high output by nuclear power ensures constant energy generation while reducing dependence on fossil fuel as energy needs expand more globally. 

Large nuclear reactor, by capacity 

Large reactors generate a lot of electricity, hence achieving economies of scale. Their high output helps to cover increasing energy demand in a much better way that brings the economies in the long term. The plants become favorites because they provide a constant and stable power supply for big industrial sectors and urban centers. Moreover, Large nuclear reactors create stable baseload power, hence stabilizing the grid, primarily because of the growing integration of renewables in countries. This helps ensure a stable, consistent supply of energy, and, as such, large reactors are capable of supplying a long power system demanding a constant generation of electricity.

Key Players

Some of the major players in the Nuclear Power Market are The State Atomic Energy Corporation ROSATOM (Russia), EDF (France), MITSUBISHI HEAVY INDUSTRIES, LTD. (Japan), AtkinsRéalis (Canada), Westinghouse Electric Company LLC. (US), Rolls-Royce plc (UK), NuScale Power, LLC. (US), China National Nuclear Corporation (China), Holtec International (US), ULTRA SAFE NUCLEAR (US), and Seaborg Technologies (Denmark) Among others.

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The State Atomic Energy Corporation Rosatom

The State Atomic Energy Corporation Rosatom (Russia), is one of the diversified corporations involved in all stages of the nuclear production chain. The company specializes in nuclear energy, nuclear plants, nuclear reactors & services, nuclear power generation, uranium enrichment, innovation, nuclear fuel, nuclear equipment, nuclear engineering, electricity trading, nuclear decommissioning, radioactive waste management, and nuclear fuel cycle. its business segments include uranium exploration and mining, nuclear fuel fabrication, nuclear power plant design and construction, power generation, and radioactive waste management.

With over 400 organizations, including research institutes and a unique fleet of nuclear-powered icebreakers, ROSATOM is Russia’s largest power generation company and a major player in global nuclear technology markets. The corporation also engages in innovative projects, such as wind power and nuclear medicine, and leads the Proryv (Breakthrough) Project, which aims to close the nuclear fuel cycle and enhance clean energy production.

Westinghouse Electric Company LLC

Westinghouse Electric Company LLC. (US) is one of the leading service providers and product suppliers in the nuclear power industry, specializing in nuclear power, plant upgrades, nuclear fuel, new plant, and outage services. Westinghouse Electric Company LLC provides products, solutions, and services including mission-critical nuclear fuel, maintenance services, engineering solutions, instrumentation and control systems, and manufactured components. It also offers services related to the decontamination, decommissioning, and remediation of power plant sites as well as technologies, equipment, and engineering and design services for new power plants.

Westinghouse Electric Company LLC offers small modular reactors such as integral pressurized water reactors and microreactors. The company played a pivotal role in the nuclear era by building the world’s first commercial pressurized water reactor in Shippingport, Pennsylvania.

Tuesday, 18 March 2025

Electrolyzers Market will Grow Rapidly by 2030

 The global Electrolyzers Market Share is expected to grow from estimated USD 3.75 billion in 2024 to USD 78.01 billion by 2030, at a CAGR of 65.9% during the forecast period. This growth mainly comes in response to supportive government initiatives that encourage renewable energy technologies as well as advancements in the electrolysis process. Electrolyzers play a crucial role in the production of hydrogen since they split water into hydrogen and oxygen using electricity that can be generated from renewable sources, such as solar and wind energies. As nations accelerate efforts to decarbonize and reduce the reliance on fossil fuels, electrolyzers are increasingly important in diverse applications involving power generation, transportation, or industrial processes. The recent interest in hydrogen fuel cells and green ammonia production further underlines the potential of the electrolyser market as the basis of global energy transition towards sustainable solutions.

Regional Analysis

Europe is the leading region for the Electrolyzer Market primarily due to its strengthened commitment to decarbonization and a more developed framework for adopting renewable energy. Most European countries have launched ambitious hydrogen strategies and policies, such as the European Green Deal and the "Fit for 55" package, which give priority to the production of green hydrogen to reach net-zero emission goals. The region sees considerable investment in renewable energy infrastructure, especially solar and wind power with seamless integration with technologies such as electrolyzers. Furthermore, Europe has an impressive industrial base and proactive collaborations between governments, private enterprises, and research institutions: a confluence that helps establish innovation and the scaling of electrolyzer production. This strategic focus puts Europe at the helm of the race toward a global hydrogen economy.

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Anion exchange membrane, by Technology

Anion exchange membrane (AEM) is now becoming the most rapidly growing technology in the Electrolyzers Market, owing to its unique combination of cost-effectiveness and performance efficiency. While PEM systems are rather expensively made using precious metal catalysts, non-precious metal catalysts are used in AEM, making them much cheaper. Besides this, the possibility of low-energy operation and compatibility with renewable sources makes it even more attractive during transition into green hydrogen. Membrane technology and scalability in the manufacturing processes further increase the efficiency of and robustness of AEM-based electrolyzers faster and make them favourites for those industries that look for low-cost, environmentally friendly hydrogen production.

Key Players

Some of the major players in the Electrolyzers Market as Siemens Energy (Germany), Nel ASA (Norway), thyssenkrupp nucera (Germany), John Cockerill (Belgium), Plug Power Inc. (US),  among others. The major strategies adopted by these players include new product launches, acquisitions, joint ventures, and expansions.

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Thyssenkrupp nucera

Thyssenkrupp nucera is a cleantech company and a leading provider of hydrogen and chlorine technologies. thyssenkrupp nucera, formerly known as Uhde Chlorine Engineers, was established as a joint venture between Industrie De Nora and thyssenkrupp AG. The company primarily deals in the supply of clean energy with green hydrogen at an industrial scale. thyssenkrupp nucera offers chlor-alkali and alkaline water electrolysis procedures for producing sustainable aviation fuels, hydrogen, chlorine, and others. The net hydrogen produced through its electrolyzers can cater to a very wide scope of applications: ranging from energy-notably, mobility-and various other industries. In addition, the company provides solutions for integrating grid-scale renewable energy and industrial-scale hydrogen use. thyssenkrupp nucera is also engaged in engineering, procurement, and construction of electrochemical plants. In 2022, the company signed an engineering and supply contract with Shell plc to set up a 200 MW green hydrogen facility in Rotterdam, Netherlands. The company enjoys a good presence in Japan and Germany.

John Cockerill

John Cockerill, formerly known as CMI Group, designs, integrates, upgrades, and maintains equipment across energy, defense, steelmaking, environmental, and general industrial sectors.  It also serves energy, environment, transport, hydrogen, solar, cooling, wind, nuclear, innovation, mobility, maintenance, water treatment, air & gas treatment, and waste to energy sector. The company has a solid presence in metals, heat treatment, surface treatment, and industrial project services, providing a wide array of solutions designed to meet diverse industrial needs. Through its hydrogen division, the company supplies alkaline electrolyzers for various applications, including energy, industry, and mobility.for various applications, such as energy, industrial, and mobility. The company also offers electrolyzers through its joint venture Cockerill Jingli Hydrogen (CJH). John Cockerill provides the most robust electrolyzers in the market, with the capacity to generate up to 1,300 Nm³ per hour, equating to 6.5 MW.The company has a presence in 24 countries across 5 continents. In December 2023, John Cockerill has entered the North American market with the groundbreaking of its first alkaline electrolyzer gigafactory in Baytown, Texas.

Nel ASA

Nel ASA is a hydrogen company specializing in electrolysers, hydrogen generation plants, hydrogen refueling stations, distributed energy systems, and energy storage. It designs solutions to produce and distribute hydrogen generated from renewable energy sources. The company also focuses on providing turnkey solutions for hydrogen energy storage. Various industries and energy & gas companies are major end users of its hydrogen technology. Nel ASA operates through two business segments: FUELING and Electrolyzer. It serves Electrolyzer Market through its Electrolyzer business segment. Under this, the company offers hydrogen production equipment and plants based on electrolyzer technology and power-to-gas systems. Nel ASA specializes in alkaline and proton exchange membrane (PEM) electrolyzers. It produces green hydrogen by harnessing energy from renewable sources such as solar and wind. The electrolyzers offered by the company have applications in various industries, such as chemicals, refining, metals, electronics, and others. The company has operations worldwide and a presence in approximately 20 countries. It has manufacturing facilities in Notodden, Norway; Wallingford, UK; and Connecticut, US. Its production facilities in Norway and Connecticut are utilized to manufacture electrolyzers. Since its establishment, the company has delivered approximately 2,700 proton exchange membrane (PEM) electrolyzers and 800 alkaline electrolyzers in more than 80 countries worldwide.

Wednesday, 4 December 2024

Green Ammonia Market: Driving the Future of Sustainable Energy

The global Green Ammonia Market Size by value is expected to grow from USD 0.3 billion in 2024 to USD 6.2 billion by 2030, at a CAGR of 66.0% from 2024 to 2030. Green ammonia may be produced using renewable energy sources such as wind and solar power. This integration promotes the use of excess renewable energy, which would otherwise be limited, and converts it into a reliable and transportable source of energy. This ability to store and transmit renewable energy minimizes intermittency while increasing system stability. The chemical, fertilizer, and industrial industries are under growing pressure to adopt sustainable practices and reduce their carbon footprint. Green ammonia is a possible option for these companies to produce green chemicals and fertilizers that fulfill sustainability and regulatory requirements.

 


Furthermore, technical advances in electrolysis, particularly in PEM (Proton Exchange Membrane) and alkaline water electrolysis, have boosted the efficiency and reduced the costs of producing green hydrogen, a critical precursor of green ammonia.

 

The green ammonia industry is being driven by demand from green chemical makers and the power-generating industry. Similarly, the global push for sustainable and low-carbon solutions will also propel the market growth.

 

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The combination of green ammonia production with renewable energy sources such as wind and solar power helps to repurpose excess electricity that would otherwise be wasted. This integration encourages the use of renewables and aids in the transition to a more sustainable energy system. Governments are establishing regulations, subsidies, and incentives to encourage green ammonia production and use. These governmental initiatives encourage investment in green ammonia projects, which drives market growth. Countries with substantial renewable energy resources are investing in green ammonia production for export. Green ammonia may be transported and exchanged internationally, creating economic possibilities for producing nations while also helping to the global energy revolution.

 

To minimize carbon emissions, Europe has implemented rigorous rules and set ambitious climate targets. The European Green Deal intends to make the EU climate-neutral by 2050, including considerable investments in renewable energy and green technology. Subsidies, tax breaks, and grants for green ammonia projects all help to drive market expansion. Europe is home to renowned research organizations and firms pioneering breakthrough green ammonia technology. Continuous innovation and technical improvements in electrolysis, ammonia synthesis, and energy storage are increasing the efficiency and cost-effectiveness of green ammonia manufacturing. In addition to this, the growing public knowledge and support for sustainable energy and climate action is boosting demand for green ammonia. The general public and stakeholders are campaigning for greener energy options, encouraging businesses and governments to incorporate green ammonia into their sustainability initiatives.

 

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Key Market Players:

 

Some of the major players in the Green Ammonia Market are Siemens Energy (Germany), ACME Group (India), Iberdrola, S.A. (Spain), ThyssenKrupp AG (Germany), Nel ASA (Norway), and Yara (Norway).

Wednesday, 20 November 2024

Blue Ammonia Market Insights with statistics and Growth Prediction

The global Blue Ammonia Market is expected to grow from an estimated USD 78 million in 2023 to USD 7,664 million by 2030, at a CAGR of 62.3% according to a new report by MarketsandMarkets™.  Blue ammonia is a type of ammonia that is produced using natural gas as a feedstock, but with the carbon dioxide emissions from the production process captured and stored. This makes blue ammonia a lower-carbon alternative to traditional ammonia production, which releases large amounts of greenhouse gases into the atmosphere. Growing focus on reducing greenhouse gas emissions and increasing efforts toward empowering hydrogen economy will drive the demand for blue ammonia market.

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The blue ammonia market has been segmented based on end-use into transportation, power generation, and industrial feedstock. The industrial feedstock segment is expected to hold the largest share during the forecast period, in the industrial feedstock segment the fertilizer industry is expected to remain the largest consumer of blue ammonia. Ammonia is used to produce fertilizers, which are essential for crop production. As the global population grows and the demand for food increases, the demand for blue ammonia is also expected to grow. Blue ammonia can help to reduce the environmental impact of the fertilizer industry. The carbon dioxide emissions from the production of blue ammonia are captured and stored, which helps to mitigate climate change.

 

The blue ammonia market segments based on application into three segments: energy, mobility, and chemical & refinery. The mobility segment is expected to be the fastest growing during the forecast period. Owing to the rising adaption of the fuel cell electric vehicles and hydrogen fueling station. Due to the hydrogen fuel cell's electrochemical reaction only producing water vapor as a byproduct, FCEVs have zero emissions. Due to this feature, FCEVs are a desirable alternative for both consumers and governments aiming to reduce air pollution and battle climate change.

 

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North America is expected to be the largest blue ammonia market during the forecast period. The North America region, comprising of US, Canada, and Mexico. Governments are dedicated to combating climate change and lowering greenhouse gas emissions. North America is committed to reducing its greenhouse gas emissions, and blue ammonia is a lower-carbon alternative to traditional ammonia production. The fertilizer industry is the largest consumer of ammonia, and the demand for fertilizer is expected to grow in North America as the population grows and the demand for food increases.

 

Key Market Players:

 

Some of the major players in the Blue Ammonia Market are Yara International ASA (Norway), Saudi Arabian Oil Company Saudi Aramco (Saudi Arabia), MA'ADEN Ma'aden (Saudi Arabia), CF Industries Holdings, Inc. CF Industries (US), Qatar Fertiliser Company (QAFCO) Qatar Fertiliser Company (Qatar), Shell plc (United Kingdom), Air Products and Chemicals, Inc. Air Products and Chemicals (US), and OCI (Netherlands). 

Tuesday, 8 February 2022

Green Ammonia Market: Demand for long-term Storage of Renewable Energy

 

Green Ammonia Market
According to the new market research report "Green Ammonia Market by Technology (Alkaline Water Electrolysis (AWE), Proton Exchange Membrane (PEM), and Solid Oxide Electrolysis (SOE)), End User (Transportation, Power Generation, and Industrial Feedstock) and Region - Global Forecast to 2030", published by MarketsandMarkets™, The global Green Ammonia Market size is projected to grow from USD 16 million in 2021 and is projected to reach USD 5,415 million by 2030, at a CAGR of 90.2% during the forecast period. Ammonia is green hydrogen synthesized with nitrogen in an electrochemical Haber-Bosch system. Green ammonia is completely carbon-free ammonia. Electrolyzers are used in green hydrogen production and work in an alkaline water medium or proton exchange membrane or solid oxide medium. These electrolyzers use electricity derived from renewable sources, such as solar, wind, and tidal, to produce green hydrogen.

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Power generation is estimated to be the largest segment in the Green Ammonia Market in 2020.

Power generation segment is projected to be the largest segment in the Green Ammonia Market. The growth of this segment is mainly attributed to the high demand of energy requirements for various end use industries. With green ammonia production, renewable energy can be stored and reused for power generation at consumption points. This will make the generation of renewable energy more efficient and usable for the long term.

The Europe region is projected to account for the largest share in the Green Ammonia Market

The Europe region is projected to lead the Green Ammonia Market in terms of both value and volume from 2021 to 2026. Fast-track urbanization and the growing agricultural needs of the rising population have raised the demand for green hydrogen in Europe to reduce carbon emissions in the region.

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Siemens (Germany), NEL Hydrogen (Norway), ThyssenKrupp (Germany), ITM Power (UK), and McPhy Energy (France), amongst others, are the key players operating in the Green Ammonia Market. Merger & acquisitions, investments & expansions, partnerships & collaborations, and new product developments are some of the major strategies adopted by these key players to enhance their positions in the Green Ammonia Market.

Monday, 30 August 2021

Offshore Wind Market Showing Robust Growth

According to the new market research report "Offshore Wind Market by Component (Turbines (Nacelle, Rotors & Blades, Tower), Substructure, Electrical Infrastructure), Location (Shallow Water, Transitional Water, & Deepwater) and Region (North America, Asia Pacific, & Europe) - Global forecast to 2026", published by MarketsandMarkets™, the global offshore wind market size will grow to USD 56.8 billion by 2026 (forecast year) from USD 31.8 billion in 2021 (estimated year), at a CAGR of 12.3% during the forecast period. Offshore wind is one of the renewable energy sources and refers to electricity that is generated at offshore locations. Offshore wind farms comprise turbines, substructure, electrical infrastructure, logistics, assembly and installation. They can be installed in three locations in water bodies, i.e., shallow water, transitional water, and deepwater. Offshore wind is a crucial pillar in energy mix together with onshore wind for regions such as Europe, Asia Pacific, and North America to achieve their goals pertaining to climate neutrality.

Offshore Wind Market

The turbine segment is expected to dominate the offshore wind market, by component, during the forecast period.

The turbine segment accounted for the largest share of the offshore wind market, by component, in 2020. The turbine segment of Offshore Wind Market is further classified into three modules—nacelle, rotors and blades, and tower. Rotors and blades are most stressed part of the turbine and are responsible for catching the wind.

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The shallow water is expected to dominate the offshore wind market, by location, during the forecast period.

Shallow water covers more of market share in this segment as development of wind power in shallow water is generally cost effective, due to better weather conditions. But with the improvement in technologies and strong wind conditions present in transitional and deep sea water, more future projects are planned for deeper waters. However, offshore wind turbines are installed in all three water locations depending on the region, turbine capacity, and wind speed.

The nacelle is expected to dominate the offshore wind market, by turbine module, during the forecast period.

Nacelle is one of the important components of an offshore wind turbine and accounts for the maximum cost of the turbine, as it comprises all the main power generation equipment. The nacelle is the section of the turbine that houses the components that convert kinetic energy from the wind into mechanical energy, which is then used to turn a generator that generates electricity. It comprises the drivetrain, power take-off system elements, monitoring systems and other equipment, such as generator, gearbox, bearings, cooling system, yaw system, pitch system, transformer, converter, switchgear, brake, and sensors.

The substation is expected to show strong growth in offshore wind market, by electrical infrastructure, during the forecast period.

Substation and Wires & Cables are the sub-segments under electrical infrastructure. It consists of equipment necessary to transmit the electrical power generated from the offshore wind farms to the end users. Due to increasing demand for offshore wind power and connecting the power generated from these offshore wind to the main grid for distribution of energy to end users, substation market is witnessing a strong growth.

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Asia Pacific is expected to lead the offshore wind market

The Asia Pacific region includes China, Japan, Vietnam, Taiwan and South Korea. This region has shown strong demand for power owing to rapid urbanization and industrialization. With the shift towards decarbonization and sustainable development, there has been a strong demand for renewable power resources. Governments in this region are increasingly opening gates for development and installation of offshore wind. Technological advancements and clean energy consumption would further propel wind power deployment and open up opportunities in the emerging markets in APAC. Various countries are speeding up the installation of offshore wind in order to diversify their energy mix as well as to meet their goal of rection in carbon emission Moreover, favorable supportive schemes, huge investments in grid infrastructure to maximize wind power generation, and foreign direct investments would attract investors to the wind power industry.

The key players include General Electric (US), Vestas (Denmark), Siemens Gamesa (Spain), Goldwind (China), Shanghai Electric Wind Power Equipment Co. (China). The leading players are adopting various strategies to increase their share in the Offshore Wind Market.

Monday, 13 July 2020

Green Ammonia Market projected to grow at a CAGR of 54.9% from 2020 to 2030


According to the new market research report "Green Ammonia Market by Technology (Alkaline Water Electrolysis (AWE), Proton Exchange Membrane (PEM), and Solid Oxide Electrolysis (SOE)), End User (Transportation, Power Generation, and Industrial Feedstock), and Region - Global Forecast to 2030",published by MarketsandMarkets™, the Green Ammonia Market size will grow to  USD 852 million by 2030 (forecasted year) from USD 11 million in 2020 (estimated year), at a CAGR of 54.9% during the forecast period. The rising investments in green fuel and large scale green energy plans in Europe and North America, drives the Green Ammonia Market in the region. Moreover, increasing adoption of electric vehicles leads to renewable energy deployment at large scale in Asia Pacific region, creates opportunities for Green Ammonia Market.

Green Ammonia Market


The power generation segment is expected to be the fastest growing Green Ammonia Market.
The power generation segment, by end user, Green Ammonia Market is estimated to grow at the fastest rate during the forecast period. This is mainly because of the increasing share of renewables in the power generation mix and decreasing cost of equipment and technology associated with renewables. According to the International Renewable Energy Agency (IRENA), solar and wind are the most potential renewable energy sources and are likely to dominate the renewable power sector in the coming years. Wind power and solar PV have increased their share in the European and North American regions. Therefore, with green ammonia production, renewable energy can be stored and reused for power generation at consumption points. This will make renewable energy generation more efficient and usable for the long-term. There by creating growth opportunities for Green Ammonia Market.

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The Solid Oxide Electrolysis (SOE) segment is expected to dominate the Green Ammonia Market.
SOE technology is an upcoming technology for green hydrogen systems. The SOE process is used to produce green hydrogen from surplus electricity generated from renewable sources. This green hydrogen is further synthesis in ammonia synthesis unit to produce green ammonia. Furthermore, the green hydrogen produced by the process can be stored and used as a fuel cell, and reconverted into electricity again when the demand arises. This allows the storage of electricity when production exceeds demand. Moreover, increasing demand for fuel cells boost the demand for solid oxide electrolyzers. There by acting as a driving force for the Green Ammonia Market during the forecast period.

Europe likely to emerge as the largest Green Ammonia Market
In this report, the Green Ammonia Market has been analyzed for four regions, namely, Europe, Asia Pacific, North America, and Rest of the World (RoW). RoW includes China, Russia, India, France, and Austria. The government of the Netherlands considers green hydrogen to be essential for achieving its energy transition goals and maintaining energy-intensive industries to improve the business climate for green hydrogen in the country. As per the Climate Agreement, the Netherlands will launch a national hydrogen program, which will primarily focus on unlocking the supply of green hydrogen, developing the necessary green hydrogen infrastructure, and reducing production costs of green hydrogen projects. Also, the program aims to achieve 3GW to 4GW of installed electrolyzer capacity by 2030, with additional growth of renewable electricity. Such initiatives and developments are expected to bolster the growth of the Green Ammonia Market in Europe during the forecast period.

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The major players in the global Green Ammonia Market are Siemens (Germany), MAN Energy Solutions (Germany), ITM Power (UK), Nel Hydrogen Solutions (Norway), Yara International (Norway) and Haldor Topsoe (Denmark).

Tuesday, 7 July 2020

Renewable Energy Market Will Keep Growing Despite COVID-19



Post COVID-19, the report "COVID-19 Impact on Renewable Energy Market by Technology (Wind and Solar), End-User (Utilities, Captive (Industrial, Commercial and Residential) and Region - Global Forecast to 2021" The global Renewable Energy Market size is projected to grow from USD 184.3 billion in 2020 to USD 226.1 billion by 2021, in the realistic scenario during the forecast period. The major factors driving the growth of the renewable energy industry include the slowdown in oil consumption due to the COVID-19 outbreak as many utilities are trying for a 100% transition into renewables.

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The solar segment is projected to be the largest segment in the Renewable Energy Market during the forecast period

The solar segment is likely to witness the adoption of new solar technologies such as floating solar farms and Building-Integrated Photovoltaics (BIPV) solar technology during the forecast period (from 2019 to 2021). Also, the demand for energy from the residential and commercial sectors is continuously increasing as the majority of the population is staying at home and working from home. Hence, adopting new technologies is expected to be cost-effective for the companies as well as end-users.

The utilities/power producers segment is projected to be the largest market for renewable energy during the forecast period

Utilities/power producers who had already shifted or are planning to shift to the renewable energy sector will be the gainers during the forecast period. Also, the long-term and reliable government policies and increased energy independence are expected to be the key motives for utilities making the transition to 100% renewables in the future.

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The Asia Pacific region is projected to be the largest market for renewable energy during the forecast period

The Asia Pacific region is expected to be the largest market for renewable energy during the forecast period. There will be no shortage of renewable energy parts in the Asia Pacific region as China has already relocated some of its production capacity in neighboring countries such as Vietnam and India. Also, the Asia Pacific region is close to the optimistic scenario because China holds the majority of Renewable Energy Market share, and only a few areas in the country are affected by the COVID-19 outbreak.

Friday, 5 June 2020

Small Hydropower Market: Growing Demand for Electricity to Increasing Installation of Small Hydropower Capacity

The global small hydropower market is projected to reach USD 3.0 billion by 2024 from an estimated market size of USD 2.6 billion in 2019, at a CAGR of 2.4% during the forecast period. The global market is set to witness significant growth owing to the application of small hydropower projects for rural electrification, financial incentives and policy initiatives, and investments in hydropower projects in response to climate change.

The Mini Hydropower segment is expected to be the most significant contributor to the Small hydropower market
The small hydropower, by type, is segmented into Mini Hydropower, and Micro Hydropower segments. The Mini hydropower segment is expected to lead the small hydropower market during the forecast period.  Installations in the mini-hydropower segment are largely driven rural electrification. China led the way in installing small hydropower plants for rural electrification. In developed countries such as the US and Norway, the installations are to increase the renewable energy share in the nation’s energy mix.


The 1–10 MW segment is expected to hold the largest share of the small hydropower market
The 1–10 MW segment is expected to dominate the small hydropower market in 2019 owing to the small hydropower installations in various countries across the globe. This higher share of 1–10 MW plants can be attributed to the small-scale decentralized projects being deployed in developing nations, especially in Asia Pacific, for rural electrification. Asia Pacific dominated the 1–10 MW segment of the small hydropower market.  China, Vietnam, and India are the account for the significant share of the small hydropower installations in this region. The demand for small hydropower is driven by increasing investments for rural electrification in these countries.

Asia Pacific is expected to be the largest small hydropower market
Asia Pacific is currently the largest small hydropower market, followed by Europe and North America. The Asia Pacific is estimated to be the largest market from the global small hydropower market from 2019 to 2024. China, Vietnam, and India are the world’s fastest-growing economies, contributing mainly to the Asia Pacific market. The Asia Pacific market is expected to grow during the forecast period owing to the investments in rural electrification and off-grid energy generation.


Both global and regional players dominate the global small hydropower market. The leading players in global small hydropower market, such as Voith (Germany), ANDRITZ (Austria), GE Renewable Energy (France), Toshiba (Japan), Siemens (Germany), BHEL (India), Gilbert Gilkes & Gordon (UK), and Flovel (India).

Monday, 13 April 2020

Wave Energy Market Size worth $107 Million by 2025


According to the new market research report "Wave Energy Market by Technology (OSW, OBC, & Overtopping Converters), Location (Onshore, Nearshore, Offshore), Application (Desalination, Power Generation, and Environmental Protection), and Region - Global Forecast to 2025" The global Wave Energy Market is projected to reach USD 107 million by 2025 from an estimated market size of USD 44 million in 2020, at a CAGR of 19.3% during the forecast period. The factors driving the growth for Wave energy are Likewise, increasing R&D investments and focus on clean energy generation offer excellent opportunities to this market.

The power generation segment is expected to be the most significant Wave Energy Market, by application, during the forecast period

By application, the Wave Energy Market by application is segmented into desalination, power generation, and environmental protection. The power generation segment is expected to be the largest and fastest-growing market. Multiple countries across the globe are focusing on enhancing their power generation capacity by integrating new and non-conventional renewable technologies, perhaps, giving wave energy converters an excellent opportunity to grow in the future.

Browse in-depth TOC on "Wave Energy Market"

65 – Tables
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160– Pages


The oscillating body converters segment is expected to be the largest Wave Energy Market, by technology, during the forecast period

The oscillating body converters segment is expected to grow at the highest rate during the forecast period. Oscillating body converters absorb the kinetic energy of the wave and further drive a generator for power generation. The main advantage of this type of wave energy converter is its high operational efficiency. In addition, these converters can be used for power generation as well as desalination applications.

Europe is expected to dominate the global Wave Energy Market during the forecast period.

In this report, the Wave Energy Market has been analyzed for four regions, namely, Asia Pacific, North America, Europe, and Rest of the World. Europe is expected to lead the market during the forecast period. The growing demand and electrical energy generation from renewable sources of energy is a major factor that is driving the market for wave energy converters in the future. Also, WECs are predominantly being designed as well as developed in the European region.


To enable an in-depth understanding of the competitive landscape, the report includes the profiles of some of the top players in the Wave Energy Market. These include Eco Wave Power (Israel), Carnegie Clean Energy (Australia), SINN Power (Germany), CorPower (Sweden), Ocean Power Technology (US), and AMOG Consulting (Australia). The leading players are trying to establish themselves in the markets of developed countries and are adopting various strategies to increase their respective market shares.

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