
Region:Europe
Author(s):Shweta Singh and Jyothika Borah
Product Code:KRBR12
September 2022
140

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Rising demand for cleaner energy from all major industry sectors and escalating environmental issues arising from carbon emissions are major growth drivers for Europe’s Green Hydrogen market. For instance, according to Eurostat, a statistical office of the European Union located in Luxembourg, renewable energy sources accounted for 37% of total EU electricity consumption in 2020, up from 34% in 2019.
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By Geography: Germanyaccounts for largest share among all countries within the total Europe Green Hydrogen market, accounting for about 20% of total market revenue.

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Competitive Landscape
The Green Hydrogen market is highly competitive with ~150 players which include globally diversified players, regional players as well as a large number of country-niche players having their own niche in water electrolysis tech advancement for multiple industries. Most of the country-niche players are renewable energy and equipment suppliers.
Large global players control about 45% of the market, while regional players hold the second largest share. Some of the major players in the market include Linde Plc., Shell Plc., Air Products and Chemicals Inc., Air Liquide, Thyssenkrupp AG, Nel ASA, Siemens Energy, Schaeffler AG, Toshiba Energy Systems & Solutions Corporation, Ballard Power Systems, Plug Power Inc., Bloom Energy and among others.
The leading global specialist companies such as Linde Plc, Shell Plc, Air Liquide, and Thyssenkrupp are highly focused on providing a significant number of clean/green hydrogen solutions and advanced techniques that can be used across multiple industries, including aviation, manufacturing, oil and gas, energy, and more.
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Recent Developments Related to Major Players
Conclusion
The Europe Green Hydrogen Market is forecasted to continue an exponential growth that is witnessed since 2019, during the forecast period also, primarily driven by rising demand for cleaner energy from all major industry sectors and escalating environmental issues arising from carbon emissions. Though the market is highly competitive with over 150 participants, few global players control dominant share and regional players also hold significant share.
Key Segments Covered in Europe Green Hydrogen Market: -
Companies Mentioned in the Report: -
Time Period Captured in the Report: -
Key Target Audience – Organizations and Entities Who Can Benefit by Subscribing This Report: -
Key Topics Covered in the Report: -
Frequently Asked Questions
What is the Study Period of this Market Report?
The Europe Green Hydrogen Market is covered from 2019 – 2030 in this report, which includes a forecast for the period 2022-2030.
What is the Future Growth Rate of Europe Green Hydrogen Market?
The Europe Green Hydrogen Market is expected to witness a CAGR of about 40% over the next 8 years.
What are the Key Factors Driving the Europe Green Hydrogen Market?
Rising demand for cleaner energy from all major industry sectors and escalating environmental issues arising from carbon emissions. are expected to be the primary drivers of this market.
Which is the Largest Technology Segment within the Europe Green Hydrogen Market?
Alkaline Electrolysis Technology holds the largest share of Europe’s Green Hydrogen Market.
Who are the Key Players in Europe Green Hydrogen Market?
Linde Plc., Shell Plc., Air Products and Chemicals Inc., Air Liquide, Thyssenkrupp AG, Nel ASA, Siemens Energy, Schaeffler AG, Toshiba Energy Systems & Solutions Corporation, Ballard Power Systems, Plug Power Inc., and Bloom Energy among others are the major companies operating in Europe Green Hydrogen Market.
Key Segments Covered in Europe Green Hydrogen Market:
Companies Mentioned in the Report
1.1 Highlights of Europe Green Hydrogen Market Historic Growth & Forecast
1.2 Highlights of Market Trends, Challenges, and Competition
1.3 Highlights of Market Revenue Share by Segments
2.1 Europe Green Hydrogen Market Taxonomy
2.2 Industry Value Chain
2.3 The Ecosystem of Major Entities in Europe’s Green Hydrogen Market
2.4 Government Regulations & Developments
2.5 Key Growth Drivers & Challenges Impacting the Market
2.6 COVID-19 Impact on Europe’s Green Hydrogen Market
2.7 Total Europe Green Hydrogen Market Historic Growth by Segment Type, 2019-2021
2.7.1 By Technology
2.7.2 By Application
2.7.3 By Generation and Delivery Mode
2.7.4 By Major Countries
2.8 Total Europe Green Hydrogen Market Historic Growth and Forecast, 2019-2030
2.9 Key Takeaways
3.1 Market Definition - Segmentation by Technology
3.2 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
3.2.1 Alkaline Electrolyzer
3.2.2 Proton Exchange Membrane (PEM) Electrolyzer
3.2.3 Solid Oxide Electrolyzer
3.2.4 Key Takeaways from Market Segmentation by Technology
4.1 Market Definition - Segmentation by Application
4.2 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Application, 2019-2030
4.2.1 Industrial Processes
4.2.2 Domestic Energy Systems (Residential, and Commercial Premises)
4.2.3 Power Grids
4.2.4 Mobility
4.2.5 Key Takeaways from Market Segmentation by Application
5.1 Market Definition - Segmentation by Generation and Delivery Mode
5.2 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Generation and Delivery Mode, 2019-2030
5.2.1 Captive
5.2.2 Merchant
5.2.3 Key Takeaways from Market Segmentation by Generation and Delivery Mode
6.1 Types of Players (Competitors) & Business Models
6.2 Porter’s 5 Forces Analysis of Europe’s Green Hydrogen Competitors
6.3 Key Developments in the Europe Green Hydrogen Sector Impacting Market Growth
6.4 Comparison of Leading Competitors within Europe’s Green Hydrogen Market, 2021
6.5 Comparison of Leading Competitors within Europe Green Hydrogen Market by Coverage of Technology Segments, 2021
6.6 Comparison of Leading Competitors within Europe Green Hydrogen Market by Coverage of Application, 2021
6.7 Comparison of Leading Competitors within Europe Green Hydrogen Market by Coverage of Generation and Delivery Mode, 2021
6.8 Key Takeaways from Competitive Landscape
7.1 Linde Plc.
7.2 Shell Plc.
7.3 Air Products and Chemicals, Inc.
7.4 Air Liquide
7.5 Thyssenkrupp AG
7.6 Nel ASA
7.7 Siemens Energy AG
7.8 Schaeffler AG
7.9 Toshiba Energy Systems & Solutions Corporation (Toshiba ESS)
7.10 Ballard Power Systems
7.11 Plug Power Inc.
7.12 Bloom Energy
8.1 Major Countries Comparison of Macroeconomic Factors
8.2 Total Europe- Market Revenue Share, Historic Growth, Outlook and Forecasts by Geography, 2019-2030
8.3 Major Countries Market Analysis, Historic Growth, Outlook & Forecasts
8.4 Germany – Green Hydrogen Market Analysis
8.4.1 Major Production and Consumption Hubs in Germany
8.4.2 Notable Emerging Green Hydrogen Companies in Germany
8.4.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.4.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.4.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.5 Germany – Green Hydrogen Market Analysis
8.5.1 Major Production and Consumption Hubs in Germany
8.5.2 Notable Emerging Green Hydrogen Companies in Germany
8.5.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.5.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.5.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.6 Netherlands – Green Hydrogen Market Analysis
8.6.1 Major Production and Consumption Hubs in the Netherlands
8.6.2 Notable Emerging Green Hydrogen Companies in the Netherlands
8.6.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.6.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.6.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.7 Poland – Green Hydrogen Market Analysis
8.7.1 Major Production and Consumption Hubs in Poland
8.7.2 Notable Emerging Green Hydrogen Companies in Poland
8.7.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.7.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.7.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.8 Italy – Green Hydrogen Market Analysis
8.8.1 Major Production and Consumption Hubs in Italy
8.8.2 Notable Emerging Green Hydrogen Companies in Italy
8.8.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.8.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.8.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.9 France – Green Hydrogen Market Analysis
8.9.1 Major Production and Consumption Hubs in France
8.9.2 Notable Emerging Green Hydrogen Companies in France
8.9.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.9.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.9.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
8.10 Spain – Green Hydrogen Market Analysis
8.10.1 Major Production and Consumption Hubs in Spain
8.10.2 Notable Emerging Green Hydrogen Companies in Spain
8.10.3 Market Revenue Share, Historic Growth, Outlook and Forecasts by Technology, 2019-2030
8.10.4 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Applications, 2019-2030
8.10.5 Market Revenue Share, Historic Growth, Outlook, and Forecasts by Delivery and Generation Mode, 2019-2030
9.1 Notable Statements/Quotes from Industry Experts and C-Level Executives on Current Status and Future Outlook of the Market
10.1 Analyst Recommendations on Identified Major Opportunities and Potential Strategies to Gain from Opportunities
11.1 Research Methodology - Market Size Estimation, Forecast, and Sanity Check Approach
11.2 Sample Discussion Guide
11.3 Disclaimer
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