Green Hydrogen Market Analysis and Forecast to 2031: By Technology (Proton Exchange Membrane Electrolyzer, Alkaline Electrolyzer, Solid Oxide Electrolyzer), Application (Power Generation, Transportation, Chemical Feedstock, Others), and Region

Green Hydrogen Market Analysis and Forecast to 2031: By Technology (Proton Exchange Membrane Electrolyzer, Alkaline Electrolyzer, Solid Oxide Electrolyzer), Application (Power Generation, Transportation, Chemical Feedstock, Others), and Region

Green hydrogen is a type of hydrogen produced through the electrolysis of water using renewable energy sources. The process of electrolysis splits water molecules into hydrogen and oxygen atoms using an electric current. The hydrogen produced can be used in a variety of ways, including as a fuel for vehicles or as a way to store energy.

A key advantage of green hydrogen is that it does not produce greenhouse gas emissions when used. This is in contrast to traditional hydrogen, which is produced from natural gas and emits carbon dioxide when burned. Green hydrogen can therefore help to reduce greenhouse gas emissions and combat climate change.

Key Trends

In the past decade, there has been a growing interest in green hydrogen technology. This is due to the many potential benefits that this technology can offer. Some of the key trends in green hydrogen technology include:

  • Increased Efficiency: One of the main trends in green hydrogen technology is the increased efficiency of electrolyzers. This is important because it means that more hydrogen can be produced from renewable energy sources.
  • Cost reductions: Another trend is the reduction in the cost of green hydrogen technology. This is due to the improved efficiency of electrolyzers and the development of new technologies.
  • Improved Storage: Another trend is the improved storage of green hydrogen. This is due to the development of new storage technologies, such as metal hydrides.
  • Increased Use: Another trend is the increased use of green hydrogen. This is due to the many potential applications of green hydrogen, such as in fuel cells and as a chemical feedstock.
  • Increased Investment: Another trend is the increased investment in green hydrogen technology. This is due to the growing interest in this technology and the potential benefits it can offer.
Key Drivers

There are many factors that are driving the green hydrogen market. One of the most important drivers is the need to decarbonize the economy and move to cleaner energy sources. Hydrogen is seen as a key part of this transition, as it can be used in a variety of ways to replace fossil fuels. For example, it can be used as a fuel for transportation, as a way to store energy, and as a feedstock for various industrial processes.

Another key driver of the green hydrogen market is the falling cost of production. Thanks to advances in technology, it is now possible to produce hydrogen more cheaply and efficiently than ever before. This is making it increasingly competitive with other energy sources, such as natural gas.

Finally, there is growing political support for green hydrogen. Many countries are now committing to hydrogen targets as part of their climate change mitigation plans. This is providing a boost to the market and is helping to drive investment in the sector.

Restraints & Challenges

The cost of producing hydrogen gas from renewable energy sources is currently higher than the cost of producing hydrogen gas from fossil fuels. In order to make the hydrogen economy economically viable, the cost of producing hydrogen gas from renewable energy sources must be reduced. There are a number of ways to reduce the cost of electrolysis, including improving the efficiency of electrolyzers, using renewable energy sources such as solar and wind power, and using nuclear power.

Another challenge in the development of a hydrogen economy is the need to develop a hydrogen infrastructure, including a network of hydrogen production and distribution facilities. The infrastructure required to support a hydrogen economy is currently not in place. In order to develop a hydrogen economy, it will be necessary to invest in the development of a hydrogen infrastructure.

By Technology
  • Proton exchange membrane electrolyzer
  • Alkaline electrolyzer
  • Solid oxide electrolyzer
By Application
  • Power Generation
  • Chemical Feedstock
  • Transportation
  • Others
Key Players
  • Air Liquide
  • Nel Hydrogen
  • ITM Power
  • Linde
  • PowerCell
  • Plug Power
  • Ballard Power Systems
  • Hydrogenics
  • FuelCell Energy
  • McPhy Energy
  • Air Products and Chemicals
  • Royal Dutch Shell


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Chapter 1. Market Introduction
1.1. Objectives of the Study
1.2. Market Definition and Research & Scope
1.3. Research Methodologies
1.4. Market Estimation Techniques
Chapter 2. Executive Summary
2.1. Summary
2.2. Key Highlights of the Market
Chapter 3. Green Hydrogen Market Outlook
3.1. Green Hydrogen Market Segmentation
3.2. Market Dynamics
3.2.1. Market Drivers
3.2.1.1. Driver 1
3.2.1.2. Driver 2
3.2.1.3. Driver 3
3.2.2. Market Restraints
3.2.2.1. Restraint 1
3.2.2.2. Restraint 2
3.2.3. Market Opportunities
3.2.3.1. Opportunity 1
3.2.3.2. Opportunity 2
3.3. Porter’s Five Forces Analysis
3.3.1. Threat of New Entrants
3.3.2. Threat of Substitutes
3.3.3. Bargaining Power of Buyers
3.3.4. Bargaining Power of Supplier
3.3.5. Competitive Rivalry
3.4. Pestle Analysis
3.5. Value Chain Analysis
3.5.1. Raw Type Suppliers
3.5.2. Manufacturers
3.5.3. Wholesalers and Retailers
3.6. Impact of Russia and Ukraine War On the Global Green Hydrogen Market
Chapter 4. Economic Impact of Covid-19
4.1. Overall Impact of Covid-19
4.2. Impact of Covid On the Global Green Hydrogen Market
4.3. Economic Impact Analysis
Chapter 5. Green Hydrogen Market by Application
5.1. Market Overview
5.2. Power Generation
5.2.1. Market Size and Forecast, 2021-2031 ($Million)
5.2.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
5.3. Chemical Feedstock
5.3.1. Market Size and Forecast, 2021-2031 ($Million)
5.3.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
5.4. Transportation
5.4.1. Market Size and Forecast, 2021-2031 ($Million)
5.4.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
5.5. Others
5.5.1. Market Size and Forecast, 2021-2031 ($Million)
5.5.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
Chapter 6. Green Hydrogen Market by Technology
6.1. Market Overview
6.2. Proton exchange membrane electrolyzer
6.2.1. Market Size and Forecast, 2021-2031 ($Million)
6.2.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
6.3. Alkaline electrolyzer
6.3.1. Market Size and Forecast, 2021-2031 ($Million)
6.3.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
6.4. Solid oxide electrolyzer
6.4.1. Market Size and Forecast, 2021-2031 ($Million)
6.4.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
6.5. Others
6.5.1. Market Size and Forecast, 2021-2031 ($Million)
6.5.2. Market Size and Forecast, by Region, 2021-2031 ($Million)
Chapter 7. Green Hydrogen Market, by Region
7.1. Overview
7.2. North America
7.2.1. Key Market Trends and Opportunities
7.2.2. North America Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.2.3. North America Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.2.4. North America Green Hydrogen Market Size and Forecast by Country, 2021-2031, ($Million)
7.2.5. The U.S.
7.2.5.1. U.S. Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.2.5.2. U.S. Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.2.6. Canada
7.2.6.1. Canada Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.2.6.2. Canada Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.2.7. Mexico
7.2.7.1. Mexico Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.2.7.2. Mexico Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3. Europe
7.3.1. Key Market Trends and Opportunities
7.3.2. Europe Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.3. Europe Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.4. Europe Green Hydrogen Market Size and Forecast by Country, 2021-2031, ($Million)
7.3.5. Germany
7.3.5.1. Germany Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.5.2. Germany Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.6. France
7.3.6.1. France Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.6.2. France Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.7. U.K.
7.3.7.1. U.K. Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.7.2. U.K. Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.8. Spain
7.3.8.1. Spain Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.8.2. Spain Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.9. Italy
7.3.9.1. Italy Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.9.2. Italy Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.10. Russia
7.3.10.1. Russia Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.10.2. Russia Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.3.11. Rest of Europe
7.3.11.1. Rest of Europe Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.3.11.2. Rest of Europe Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4. Asia-Pacific
7.4.1. Key Market Trends and Opportunities
7.4.2. Asia-Pacific Green Hydrogen Market Size and Forecast by Country, 2021-2031, ($Million)
7.4.3. Asia-Pacific Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.4. Asia-Pacific Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4.5. China
7.4.5.1. China Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.5.2. China Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4.6. India
7.4.6.1. India Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.6.2. India Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4.7. Japan
7.4.7.1. Japan Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.7.2. Japan Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4.8. South Korea
7.4.8.1. South Korea Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.8.2. South Korea Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.4.9. Rest of APAC
7.4.9.1. Rest of APAC Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.4.9.2. Rest of APAC Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.5. Rest of the World
7.5.1. Key Market Trends and Opportunities
7.5.2. Rest of the World Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.5.3. Rest of the World Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.5.4. Rest of the World Green Hydrogen Market Size and Forecast by Country, 2021-2031, ($Million)
7.5.5. Latin America
7.5.5.1. Latin America Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.5.5.2. Latin America Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.5.6. Middle East
7.5.6.1. Middle East Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.5.6.2. Middle East Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
7.5.7. Africa
7.5.7.1. Africa Green Hydrogen Market Size and Forecast by Application, 2021-2031, ($Million)
7.5.7.2. Africa Green Hydrogen Market Size and Forecast by Technology, 2021-2031, ($Million)
Chapter 8. Competitive Landscape
8.1. Market Overview
8.2. Market Share Analysis/Key Player Positioning
8.3. Developmental Strategy Benchmarking
8.3.1. New Product Development
8.3.2. Product Launches
8.3.3. Business Expansions
8.3.4. Partnerships, Joint Ventures, and Collaborations
8.3.5. Mergers and Acquisitions
Chapter 9. Company Profiles
9.1. Air Liquide
9.1.1. Company Snapshot
9.1.2. Financial Performance
9.1.3. Product offerings
9.1.4. Key Strategic Initiatives
9.1.5. Swot Analysis
9.2. Nel Hydrogen
9.2.1. Company Snapshot
9.2.2. Financial Performance
9.2.3. Product offerings
9.2.4. Key Strategic Initiatives
9.2.5. Swot Analysis
9.3. ITM Power
9.3.1. Company Snapshot
9.3.2. Financial Performance
9.3.3. Product offerings
9.3.4. Key Strategic Initiatives
9.3.5. Swot Analysis
9.4. Linde
9.4.1. Company Snapshot
9.4.2. Financial Performance
9.4.3. Product offerings
9.4.4. Key Strategic Initiatives
9.4.5. Swot Analysis
9.5. PowerCell
9.5.1. Company Snapshot
9.5.2. Financial Performance
9.5.3. Product offerings
9.5.4. Key Strategic Initiatives
9.5.5. Swot Analysis
9.6. Plug Power
9.6.1. Company Snapshot
9.6.2. Financial Performance
9.6.3. Product offerings
9.6.4. Key Strategic Initiatives
9.6.5. Swot Analysis
9.7. Ballard Power Systems
9.7.1. Company Snapshot
9.7.2. Financial Performance
9.7.3. Product offerings
9.7.4. Key Strategic Initiatives
9.7.5. Swot Analysis
9.8. Hydrogenics
9.8.1. Company Snapshot
9.8.2. Financial Performance
9.8.3. Product offerings
9.8.4. Key Strategic Initiatives
9.8.5. Swot Analysis
9.9. FuelCell Energy
9.9.1. Company Snapshot
9.9.2. Financial Performance
9.9.3. Product offerings
9.9.4. Key Strategic Initiatives
9.9.5. Swot Analysis
9.10. McPhy Energy
9.10.1. Company Snapshot
9.10.2. Financial Performance
9.10.3. Product offerings
9.10.4. Key Strategic Initiatives
9.10.5. Swot Analysis
*the List of Company Is Subject To Change During the Final Compilation of the Report

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