Asia Pacific Captive Hydrogen Generation Market Size - By Process (Steam Reformer, Electrolysis and Others), By Application (Petroleum Refining, Chemical, Metal), 2024 – 2032

Asia Pacific Captive Hydrogen Generation Market Size - By Process (Steam Reformer, Electrolysis and Others), By Application (Petroleum Refining, Chemical, Metal), 2024 – 2032


Asia Pacific Captive Hydrogen Generation Market size is poised to record 6.1% CAGR over 2024-2032, owing to the influx of incentives, subsidies, and R&D funding. Japan, South Korea, China, and Australia are increasingly implementing national hydrogen strategies and roadmaps to promote hydrogen production and utilization. Leading companies, including energy giants, chemical manufacturers, and technology providers, are heavily investing in hydrogen projects. The rising emphasis on retrofitting existing facilities with captive hydrogen generation capabilities will also support the market growth.

The industry is segmented into process, application and country.

By process, the APAC captive hydrogen generation industry value from the electrolysis segment may record robust CAGR from 2024 to 2032. The growth can be attributed to the rising popularity of this process, particularly in industries, such as chemicals, due to its potential for clean and sustainable hydrogen production. Electrolysis facilitates sustainable hydrogen production, particularly when integrated with renewable energy sources. Effective integration of electrolysis systems with existing industrial processes and renewable energy sources will also define the segment growth.

Based on application, the Asia Pacific captive hydrogen generation market from the chemical segment will expand up to 2032. Hydrogen is used as a feedstock in several chemical processes, such as ammonia production, methanol synthesis, and hydrocracking. Advances in hydrogen production technologies, such as high efficiency electrolyzers and hydrogen storage systems, are also making captive generation more viable and attractive for the chemical sector.

Japan captive hydrogen generation market size will witness significant growth through 2032, led by rapid advances in hydrogen production technologies. The Japanese government is actively promoting hydrogen as a key component of its energy strategy. Several policies are also aiming to establish a hydrogen-based society for targeting hydrogen production, infrastructure development, and adoption across various sectors. Rising integration of renewable energy sources like solar and wind with hydrogen production will also boost the regional industry growth.


Chapter 1 Methodology & Scope
1.1 Research design
1.2 Base estimates & calculations
1.3 Forecast model
1.4 Primary research & validation
1.4.1 Primary sources
1.4.2 Data mining sources
1.5 Market definitions
Chapter 2 Industry Insights
2.1 Industry ecosystem
2.2 Regulatory landscape
2.3 Industry impact forces
2.3.1 Growth drivers
2.3.2 Industry pitfalls & challenges
2.4 Growth potential analysis
2.5 Porter's analysis
2.5.1 Bargaining power of suppliers
2.5.2 Bargaining power of buyers
2.5.3 Threat of new entrants
2.5.4 Threat of substitutes
2.6 PESTEL analysis
Chapter 3 Competitive landscape, 2023
3.1 Introduction
3.2 Strategic dashboard
3.3 Innovation & technology landscape
Chapter 4 Market Size and Forecast, By Process, 2021 – 2032 (USD Billion)
4.1 Key trends
4.2 Steam reformer
4.3 Electrolysis
4.4 Others
Chapter 5 Market Size and Forecast, By Application, 2021 – 2032 (USD Billion)
5.1 Key trends
5.2 Petroleum refinery
5.3 Chemical
5.4 Metal
5.5 Others
Chapter 6 Market Size and Forecast, By Country, 2021 – 2032 (USD Billion)
6.1 Key trends
6.2 China
6.3 India
6.4 Japan
Chapter 7 Company Profiles
7.1 Air Products and Chemicals, Inc
7.2 BASF SE
7.3 Cummins Inc
7.4 Enapter
7.5 GAIL Limited
7.6 HoSt Group
7.7 Hitachi Zosen Corporation
7.8 Linde plc
7.9 Messer Group GmbH
7.10 McPhy Energy S.A
7.11 NEL Hydrogen
7.12 Nuclear Power Corporation of India Limited
7.13 Siemens Energy
7.14 Teledyne Energy Systems, Inc

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