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Green Hydrogen Market Overview
“The Green Hydrogen Market Predictable at $3.95 billion in 2022, is estimated to increase at a CAGR of 39.83% from $20.05 billion in 2023 to $134.87 billion by 2030.”
Green hydrogen is produced through water electrolysis using renewable energy sources like wind or solar power. Government policies and environmental concerns about rising carbon emissions from fossil fuels are expected to stimulate demand for the hydrogen economy, presenting a potential growth scenario for the industry.
The US is a leading global adopter of renewable energy solutions, particularly in electricity generation and transportation. The government's energy act emphasizes clean energy solutions, with hydrogen from low-carbon sources potentially supplying 14% of the country's energy needs by 2050. In 2019, Air Liquide invested $150 million in a Nevada plant, capable of producing 30 tons per day, enough to power 40,000 fuel cell vehicles.
Germany leads the global green hydrogen installation market due to green hydrogen-friendly legislation, research funding, and demonstration projects. In July 2019, the government approved 11 demonstration-scale projects. With numerous projects in the pipeline, Germany is expected to lead the market during the projection period.
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Key Takeaways
In 2022, the alkaline electrolyzer segment will have a revenue share of more than 66.8%. However, the PEM electrolyzers category is expected to increase at a faster CAGR over the projection period.
The pipeline distribution route will account for 62.4% of revenue in 2022.
In 2022, the transportation segment will have a revenue share of more than 41.5%.
In 2022, Europe will contribute more than 52% of income.
Growth Factors
Green hydrogen, derived from renewable sources, produces fewer CO2 emissions than grey hydrogen, which accounts for 95% of the market. It can be used as a transportation fuel or feedstock in industrial activities. Green hydrogen and derived fuels like green ammonia can incorporate wind energy into cargo ship fuel tanks, boosting the decarbonization potential of renewable energy sources.
Renewable hydrogen, generated from renewable sources, can be used for household energy and electricity supply, making it abundant during weather-related power fluctuations. Currently, 96% of hydrogen generation comes from fossil fuels, releasing carbon dioxide into the environment. The power-to-gas process electrolyzes water into hydrogen and oxygen, with the byproduct oxygen being reused or released into the environment.
Hydrogen, the most abundant element on Earth, holds immense potential for creativity and can be used as a fuel, energy source, and raw material in the industrial industry. Germany is working to create a technologically open legal environment for the widespread use of green hydrogen. Green hydrogen is in high demand due to its ability to reduce carbon emissions and meet global needs.
The worldwide green hydrogen market is expected to grow due to environmental concerns and the growing use of nuclear and green hydrogen fuels. However, initial investment in infrastructure and prohibitive maintenance costs are key challenges in progressing the green hydrogen industry. The focus is on creating a technologically open legal environment for the widespread use of green hydrogen.
The green hydrogen industry is expected to grow in income due to increasing regulations and policies in the energy sector, as well as environmental concerns about carbon emissions from fossil fuel use. The global market will expand due to the convenience of storing and using green hydrogen. Offshore and onshore wind farms are widely used for green hydrogen generation, with offshore plants producing consistently throughout the year.
Wind energy costs have reduced by half in recent decades, increasing wind power's popularity. The mobility end use industry accounts for the majority of the green hydrogen market, as hydrogen has three times the energy per unit as fossil fuels. Fuel cell electric vehicles offer a long-term solution to fossil fuels, making green hydrogen a practical option for the automotive industry. Green hydrogen-powered cars are suitable for various applications.
Market Dynamics
Growth Drivers
Increasing government support
Governments play a critical role in developing supportive policy frameworks and regulations that ensure the green hydrogen market's long-term stability and predictability.
Governments around the world are focusing on establishing renewable energy targets, reducing emissions standards, and introducing carbon pricing mechanisms, all of which incentivize demand for green hydrogen.
Furthermore, policies that encourage the incorporation of green hydrogen into existing energy systems, such as blending it with natural gas in pipelines or supporting fuel cell technology, stimulate market growth.
Opportunity
Increasing spending in research and development
Research and development aim to enhance green hydrogen technology's performance and durability, leading to increased production rates and lower maintenance costs.
Advances in fuel cell technology can improve hydrogen-powered vehicles and other applications. These investments address the market's cost barrier and reduce production costs.
As research advances, scientists and engineers can optimize operations, enhance efficiency, and reduce material demand. Green hydrogen's lower production costs make it more competitive with fossil fuels, attracting investment and encouraging market adoption.
Competitive Landscape of the Green Hydrogen Market
Recent Developments in Green Hydrogen Market
In January 2023, Linde will increase the production of green hydrogen in California. To expand its hydrogen capacity, Linde will construct, own, and run the first of several proposed five-megawatt PEM (proton exchange membrane) electrolyzers.
In April 2020, two Germany-based companies Siemens Gas and Power and Uniper SE announced a joint agreement on implementing projects that produce and use green hydrogen from renewable energy sources. Such strategies are expected to enable the commercialization of green hydrogen as an alternative to fossil fuels.
Regional Insights
Europe's green hydrogen market is expected to remain dominant in 2022, with hydrogen being the primary energy source. The European Green Deal aims to reduce greenhouse gas emissions and prepare Europe's economy for a post-carbon future. China, the most opportunistic segment, holds the largest market share in the Asia-Pacific green hydrogen market, accounting for one-third of global production with a 20-million-ton output.
Segments Covered in the Green Hydrogen Market Report
Green Hydrogen Market By Distribution Channel
Green Hydrogen Market By Technology
Green Hydrogen Market By Application
Green Hydrogen Market By Region
Frequently Asked Questions
What is the current size of green hydrogen market?
Green Hydrogen Market Predictable at $3.95 billion in 2022, is estimated to increase at a CAGR of 39.83% from $20.05 billion in 2023 to $134.87 billion by 2030
What is the growth rate of the global green hydrogen market?
The global green hydrogen market is growing at a noteworthy CAGR of 39.83% from 2023 to 2030.
Which are the driving factors of the green hydrogen market?
The global green hydrogen market is investing in the development of procedures that will help reduce production costs and improve infrastructure as the need for hydrogen grow across numerous industries.
Which region hit the highest CAGR in the global green hydrogen market?
Asia-Pacific region is the fastest growing region in the green hydrogen market.
1.1. Research Objective
1.2. Scope of the Study
1.3. Definition
2.1. Research Approach
2.2. Data Sources
2.3. Assumptions & Limitations
3.1. Market Snapshot
4.1. Introduction
4.2. Market Classification and Scope
4.3. Industry Value Chain Analysis
4.3.1. Raw Material Procurement Analysis
4.3.2. Sales and Distribution Channel Analysis
4.3.3. Downstream Buyer Analysis
5.1. COVID-19 Landscape: Green Hydrogen Industry Impact
5.2. COVID 19 - Impact Assessment for the Industry
5.3. COVID 19 Impact: Global Major Government Policy
5.4. Market Trends and Opportunities in the COVID-19 Landscape
6.1. Market Dynamics
6.1.1. Market Drivers
6.1.2. Market Restraints
6.1.3. Market Opportunities
6.2. Porter’s Five Forces Analysis
6.2.1. Bargaining power of suppliers
6.2.2. Bargaining power of buyers
6.2.3. Threat of substitute
6.2.4. Threat of new entrants
6.2.5. Degree of competition
7.1.1. Company Market Share/Positioning Analysis
7.1.2. Key Strategies Adopted by Players
7.1.3. Vendor Landscape
7.1.3.1. List of Suppliers
7.1.3.2. List of Buyers
8.1. Green Hydrogen Market, by Technology, 2023-2030
8.1.1. Proton Exchange Membrane Electrolyzer
8.1.1.1. Market Revenue and Forecast (2020-2030)
8.1.2. Alkaline Electrolyzer
8.1.2.1. Market Revenue and Forecast (2020-2030)
8.1.3. Solid Oxide Electrolyzer
8.1.3.1. Market Revenue and Forecast (2020-2030)
9.1. Green Hydrogen Market, by Renewable Source, 2023-2030
9.1.1. Solar Energy
9.1.1.1. Market Revenue and Forecast (2020-2030)
9.1.2. Wind Energy
9.1.2.1. Market Revenue and Forecast (2020-2030)
9.1.3. Others (hydropower, geothermal, and hybrid of solar & wind)
9.1.3.1. Market Revenue and Forecast (2020-2030)
10.1. Green Hydrogen Market, by Distribution Channel, 2023-2030
10.1.1. Pipeline
10.1.1.1. Market Revenue and Forecast (2020-2030)
10.1.2. Cargo
10.1.2.1. Market Revenue and Forecast (2020-2030)
11.1. Green Hydrogen Market, by Application, 2023-2030
11.1.1. Power Generation
11.1.1.1. Market Revenue and Forecast (2020-2030)
11.1.2. Transportation
11.1.2.1. Market Revenue and Forecast (2020-2030)
11.1.3. Industry Energy
11.1.3.1. Market Revenue and Forecast (2020-2030)
11.1.4. Industry Feedstock
11.1.4.1. Market Revenue and Forecast (2020-2030)
11.1.5. Builsing Heat & Power
11.1.5.1. Market Revenue and Forecast (2020-2030)
11.1.6. Others
11.1.6.1. Market Revenue and Forecast (2020-2030)
12.1. North America
12.1.1. Market Revenue and Forecast, by Technology (2020-2030)
12.1.2. Market Revenue and Forecast, by Renewable Source (2020-2030)
12.1.3. Market Revenue and Forecast, by Distribution Channel (2020-2030)
12.1.4. Market Revenue and Forecast, by Application (2020-2030)
12.1.5. U.S.
12.1.5.1. Market Revenue and Forecast, by Technology (2020-2030)
12.1.5.2. Market Revenue and Forecast, by Renewable Source (2020-2030)
12.1.5.3. Market Revenue and Forecast, by Distribution Channel (2020-2030)
12.1.5.4. Market Revenue and Forecast, by Application (2020-2030)
12.1.6. Rest of North America
12.1.6.1. Market Revenue and Forecast, by Technology (2020-2030)
12.1.6.2. Market Revenue and Forecast, by Renewable Source (2020-2030)
12.1.6.3. Market Revenue and Forecast, by Distribution Channel (2020-2030)
12.1.6.4. Market Revenue and Forecast, by Application (2020-2030)
12.2. Europe
12.2.1. Market Revenue and Forecast, by Technology (2020-2030)
12.2.2. Market Revenue and Forecast, by Renewable Source (2020-2030)
12.2.3. Market Revenue and Forecast, by Distribution Channel (2020-2030)
12.2.4. Market Revenue and Forecast, by Application (2020-2030)
12.3. APAC
12.3.1. Market Revenue and Forecast, by Technology (2020-2030)
12.3.2. Market Revenue and Forecast, by Renewable Source (2020-2030)
12.3.3. Market Revenue and Forecast, by Distribution Channel (2020-2030)
12.3.4. Market Revenue and Forecast, by Application (2020-2030)
13.1. NEL ASA
13.2. ITM Power
13.3. ENGIE
13.4. SEIMENS
13.5. Air Products Inc.
13.6. Messer Group GMBH
13.7. Plug Power Inc.
13.8. Cummins Inc.
13.9. Air LIQUIDE
13.10. LINDE
14.1. Primary Research
14.2. Secondary Research
14.3. Assumptions
15.1. About Us
15.2. Glossary of Terms
Segments Covered in the Green Hydrogen Market Report
Green Hydrogen Market By Distribution Channel
Green Hydrogen Market By Technology
Green Hydrogen Market By Application
Green Hydrogen Market By Region
Research Methodology
Base Year:2022
Historical Data:2018-2022
No of Pages:122
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