Green Hydrogen Market
Global green hydrogen market was valued at $ 4.2 billion in 2022 and is likely to reach $ 83.7 billion by 2032, registering a CAGR of 31.8% over the forecast period of 2023-2032.
Green hydrogen serves as a sustainable energy carrier created through electrolysis, harnessing renewable energy sources such as wind or solar power. In this process, water undergoes separation into hydrogen and oxygen, all without generating any carbon emissions. What sets green hydrogen apart is its environmentally conscious production, completely devoid of fossil fuels. Positioned as a versatile and environmentally friendly energy solution, green hydrogen carries significant potential for decarbonizing diverse sectors like transportation, industry, and power generation. Its adoption contributes to fostering a more sustainable and climate-friendly energy environment. The green hydrogen market is witnessing an extraordinary surge, driven by a combination of factors that highlight the growing acknowledgment and adoption of this revolutionary energy source. In the face of the urgent need to shift towards sustainable and carbon-neutral energy solutions, green hydrogen stands out as a pivotal player in the worldwide endeavour to combat climate change.
Source: Secondary Research, Primary Research, MRP Database and Analyst Review
A transformative shift toward clean energy sources is in progress, driven by an increasing awareness of the pressing need to address climate change. Green hydrogen, generated through water electrolysis using renewable energy, stands out as a symbol of sustainability in this evolving landscape. As nations and industries commit to reducing carbon footprints, the demand for green hydrogen is set to increase. Governments worldwide are aligning their energy policies with ambitious decarbonisation goals, fostering an environment conducive to the adoption and expansion of green hydrogen technologies. The foundation of green hydrogen lies in its dependence on renewable energy sources, such as solar and wind power, for the electrolysis process. The rising capacity and affordability of renewable energy technologies have significantly bolstered the feasibility and competitiveness of green hydrogen production. As the world witnesses an unprecedented growth in renewable energy installations, the synergy between green hydrogen and renewables amplifies. The incorporation of these technologies not only guarantees a sustainable and eco-friendly production process but also establishes green hydrogen as a pivotal player in the renewable energy arena.
Sectors characterized by substantial carbon footprints, including heavy manufacturing, chemicals, and steel production, face mounting pressure to undertake decarbonisation initiatives in their operations. Green hydrogen, as a versatile and clean energy carrier, offers a viable solution to replace traditional hydrogen produced from fossil fuels. The decarbonisation imperative, driven by both regulatory requirements and corporate sustainability commitments, creates a compelling market for green hydrogen as industries seek transformative solutions to align with global climate goals. Ongoing advancements in electrolysis technologies are enhancing the efficiency and cost-effectiveness of green hydrogen production. Proton exchange membrane (PEM) electrolysers and alkaline electrolysers, the two main types of electrolysis technologies, are witnessing improvements in performance, durability, and scalability. These technological advancements translate into reduced production costs, making green hydrogen increasingly competitive compared to conventional hydrogen production methods. As the efficiency of electrolysis technologies continues to rise, the economic viability of green hydrogen becomes more attractive, driving higher adoption rates.
A pivotal factor in the surge of green hydrogen sales is the declining production costs associated with its manufacturing. As economies of scale are realized and technological advancements are implemented, the cost of producing green hydrogen is steadily decreasing. Industry stakeholders are making strategic investments to scale up production capacity, leveraging economies of scale to drive down costs. The economic viability of green hydrogen, coupled with a favourable regulatory environment and growing market demand, positions it as a competitive and economically attractive alternative to traditional hydrogen sources. The global nature of the green hydrogen market is fostering international collaboration and partnerships. Countries, companies, and research institutions are joining forces to share expertise, pool resources, and collectively advance the development and deployment of green hydrogen technologies. International collaboration facilitates knowledge exchange, accelerates innovation, and promotes standardization, creating a robust ecosystem for the growth of the green hydrogen market on a global scale.
The emergence of hydrogen ecosystems, where various stakeholders collaborate to create a seamless value chain for green hydrogen, is a trend that further propels its market growth. These ecosystems encompass the entire hydrogen value chain, from production and distribution to end-use applications. The development of comprehensive hydrogen ecosystems ensures the efficient integration of green hydrogen into existing energy infrastructures, fostering a holistic approach to its adoption and contributing to increased sales.
Green hydrogen Market Overview
Market Attributes |
Details |
Market Size in 2022 |
$ 4.2 billion |
Market Size in 2032 |
$ 83.7 billion |
Forecast Period |
2023-2032 |
CAGR |
31.8% |
Market Dynamics |
· Drivers o Global Decarbonisation Initiatives o Technological Advancements and Cost Reductions · Restraints o Infrastructure Development Challenges o Competition from Grey Hydrogen · Opportunities o Diversification of End-Use Applications o Economic Development and Job Creation |
Segments Covered in the report |
· By Technology o Alkaline Electrolyser o Polymer Electrolyte Membrane Electrolyser · By End-Use Industry o Mobility o Power o Chemical o Food and Beverages o Others |
Regions Covered in the Report |
· North America o U.S. o Canada o Mexico · Latin America o Brazil o Argentina o Rest of Latin America · Europe o Germany o UK o France o Russia o Italy o Spain o Rest of Europe · Asia-Pacific o China o Japan o India o South Korea o Australia o Rest of Asia-Pacific · Middle East & Africa o Israel o UAE o Saudi Arabia o Iran o Rest of MEA |
Companies |
· ABB · Air Liquide · Ballard Power Systems · Ceres Power · Enapter · ENGIE · Green Hydrogen Systems · Hydrogenics (a Cummins Company) · ITM Power · Linde · McPhy · Nel Hydrogen · Plug Power · Siemens Energy · Thyssenkrupp Industrial Solutions |
1: Introduction
1.1 Report Description
1.2 Overview of Green Hydrogen
1.3 Evolution and Advancements in Green Hydrogen
1.4 Market Segmentation and Scope
1.5 Research Methodology
2: Executive Summary
2.1 Key Findings
2.2 Market Trends and Insights
2.3 Key Market Players
2.4 Future Outlook
3: Market Dynamics
3.1 Market Drivers
3.2 Market Restraints
3.3 Market Opportunities
3.4 Porter's Five Forces Analysis
3.5 Value Chain Analysis
3.6 Impact of COVID-19 on the Green Hydrogen Market
4: Green Hydrogen Market, by Technology
4.1 Overview
4.2 Alkaline Electrolyzer
4.2.1 Key Market Trends
4.2.2 Market Size, 2022-2032
4.3 Polymer Electrolyte Membrane Electrolyzer
4.3.1 Key Market Trends
4.3.2 Market Size, 2022-2032
5: Green Hydrogen Market, by End-Use Industry
5.1 Mobility
5.1.1 Key Market Trends
5.1.2 Market Size, 2022-2032
5.2 Power
5.2.1 Key Market Trends
5.2.2 Market Size, 2022-2032
5.3 Chemical
5.3.1 Key Market Trends
5.3.2 Market Size, 2022-2032
5.4 Food and Beverages
5.4.1 Key Market Trends
5.4.2 Market Size, 2022-2032
5.5 Others
5.5.1 Key Market Trends
5.5.2 Market Size, 2022-2032
6: Regional Analysis
6.1 North America
6.1.1. U.S.
6.1.1. Canada
6.1.2. Mexico
6.2. Latin America
6.2.1 Brazil
6.2.2 Argentina
6.2.3 Rest of Latin America
6.3. Europe
6.3.1. Germany
6.3.2. UK
6.3.3. France
6.3.4. Russia
6.3.5. Italy
6.3.6. Spain
6.3.7. Rest of Europe
6.4. Asia-Pacific
6.4.1. China
6.4.2. Japan
6.4.3. India
6.4.4. South Korea
6.4.5. Australia
6.4.6. Rest of Asia-Pacific
6.5. Middle East & Africa
6.5.1. Israel
6.5.2. UAE
6.5.3. Saudi Arabia
6.5.4. Iran
6.5.5. Rest of MEA
7: Competitive Landscape
7.1 ABB
7.1.1 Overview
7.1.2 Product Portfolio
7.1.3 Financial Performance
7.1.4 Recent Developments
7.2 Air Liquide
7.2.1 Overview
7.2.2 Product Portfolio
7.2.3 Financial Performance
7.2.4 Recent Developments
7.3 Ballard Power Systems
7.3.1 Overview
7.3.2 Product Portfolio
7.3.3 Financial Performance
7.3.4 Recent Developments
7.4 Ceres Power
7.4.1 Overview
7.4.2 Product Portfolio
7.4.3 Financial Performance
7.4.4 Recent Developments
7.5 Enapter
7.5.1 Overview
7.5.2 Product Portfolio
7.5.3 Financial Performance
7.5.4 Recent Developments
7.6 Enapter
7.6.1 Overview
7.6.2 Product Portfolio
7.6.3 Financial Performance
7.6.4 Recent Developments
7.7 Hydrogenics (a Cummins Company)
7.7.1 Overview
7.7.2 Product Portfolio
7.7.3 Financial Performance
7.7.4 Recent Developments
7.8 ITM Power
7.8.1 Overview
7.8.2 Product Portfolio
7.8.3 Financial Performance
7.8.4 Recent Developments
7.9 Linde
7.9.1 Overview
7.9.2 Product Portfolio
7.9.3 Financial Performance
7.9.4 Recent Developments
7.10 McPhy
7.10.1 Overview
7.10.2 Product Portfolio
7.10.3 Financial Performance
7.10.4 Recent Developments
8: Investment Analysis
9: Market Opportunity and Trends