China Offshore Wind Power to Hydrogen Industry - Analysis Report
China Offshore Wind Power to Hydrogen Industry - Analysis Report

China Offshore Wind Power to Hydrogen Industry - Analysis Report

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This report offers a comprehensive analysis of China's burgeoning offshore wind power to hydrogen industry. It delves into the technological, economic, and regulatory landscapes that shape this sector, providing insights into current operations and future growth potentials. For investors, policymakers, and industry stakeholders, this study serves as an indispensable resource, offering detailed market assessments, strategic recommendations, and forward-looking perspectives designed to facilitate informed decision-making and strategic planning in a rapidly evolving market.

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Study Overview

To provide professionals or investors with a deeper understanding of the current situation and future prospects of the offshore wind power hydrogen production industry, Chinacuity has released the "2025-2031 China Offshore Wind Power Hydrogen Production Market Operation Status and Development Trend Analysis Report" (hereinafter referred to as "the Report"). The Report provides a comprehensive review and in-depth analysis of China’s offshore wind power hydrogen production market, based on Chinacuity's years of continuous tracking, field research, surveys, and analysis.

To ensure the accuracy and reference value of the data, Chinacuity’s research team collected data through multiple channels, including annual reports of listed companies, manufacturer surveys, distributor discussions, and expert validations. The team then conducted multi-dimensional analysis, aiming to provide a deep understanding of various sectors within the industry. This helps professionals comprehensively grasp the development trends of the offshore wind power hydrogen production industry in 2023, as well as cutting-edge innovations, empowering industry players to lead the transition.

What is Wind Power Hydrogen Production?


Wind power hydrogen production refers to the process of using wind energy to generate electricity, which is then used for electrolysis to produce hydrogen, thereby converting wind energy into hydrogen energy. Offshore wind power hydrogen production is a form of this technology, where electricity generated from offshore wind is converted into hydrogen using electrolysis equipment, with the hydrogen transported to the desired location. Offshore wind energy resources are abundant, making them highly suitable for producing green hydrogen on a large scale. Based on the layout of electrolysis equipment, there are currently three main forms of offshore wind power hydrogen production.

Challenges in the Offshore Wind Power Industry


At present, the construction speed of the power grid is struggling to keep up with the rapid development of the offshore wind power industry. Low grid capacity has become a bottleneck that restricts the rapid growth of wind power. Adopting the model of "offshore wind power + hydrogen production" can promote the integration of the hydrogen energy industry with offshore renewable energy. This helps realize the storage potential of hydrogen energy: during peak power generation, excess electricity is converted into hydrogen, which can be converted back into electricity during off-peak periods to be fed into the grid. This can prevent wastage and ensure stable power output, providing a new solution for offshore wind power generation. In 2022, China’s wind power industry continued to thrive, with a national (excluding Hong Kong, Macau, and Taiwan) newly installed wind power capacity of 49.83 million kilowatts, bringing the cumulative wind power installed capacity to 396 million kilowatts. Among this, offshore wind power added 5.16 million kilowatts, with a total cumulative installed capacity of 30.51 million kilowatts.

Offshore Wind Power and Hydrogen Integration


The integration of offshore wind power and hydrogen energy development is one of the key drivers for the large-scale production of green hydrogen, as well as the solution to unlocking the full potential of deep-sea wind power development. China leads the world in offshore wind power installation, and this rapid development trend is expected to continue. With further advancement in domestic offshore wind power and the accumulation of experience in wind-hydrogen projects, industry entry barriers are becoming higher, making it difficult for new enterprises to enter the market. At the same time, competition within the industry is intense. Currently, the main players are Mingyang Smart Energy Group Co., Ltd. (明阳智慧能源集团股份公司), Zhongneng Fusion Smart Technology Co., Ltd. (中能融合智慧科技有限公司), China Huaneng Group Co., Ltd. (中国华能集团有限公司), and Guochuang Hydrogen Energy Technology Co., Ltd. (国创氢能科技有限公司).

Key Industry Player: Goldwind Technology (金风科技)


Goldwind Technology has achieved a cumulative global wind power installation capacity exceeding 97 GW, with an operation and maintenance service capacity exceeding 56 GW and more than 47,000 wind turbines operating worldwide. With a focus on global energy transition goals, Goldwind Technology integrates renewable energy with digital technologies, actively building zero-carbon solutions for new power systems. The company optimizes and rebuilds every aspect of the energy chain, from energy production, distribution, storage, and consumption, utilizing innovative energy asset management models to fully support "carbon neutrality" with intelligent energy networks. In 2022, Goldwind Technology's wind power service revenue reached CNY 5.646 billion (approximately USD 770 million).

Environmental and Economic Impact of Offshore Wind Hydrogen Production


Offshore wind hydrogen production is an environmentally friendly energy form that reduces reliance on traditional energy sources and lowers greenhouse gas emissions. This aligns with society’s expectations for sustainable development and environmental protection, driving the industry towards more sustainable directions. The combination of offshore wind power and hydrogen energy helps solve the issue of offshore wind energy utilization and grid integration challenges. It also aids in expanding energy channels, promoting clean energy production and hydrogen energy development, and enhancing the quality of wind and renewable energy integration into the power system. This, in turn, will accelerate the offshore wind power hydrogen production industry, improve the hydrogen energy supply chain, and generate enormous economic benefits, achieving a win-win situation for both wind power and hydrogen energy industries.

Chinacuity's Role in Leading the Industry


The "2025-2031 China Offshore Wind Power Hydrogen Production Market Operation Status and Development Trend Analysis Report" is one of Chinacuity's most significant achievements, reflecting its commitment to leading industry transformation, its dedication to the industry, and its mission to provide crucial insights for professionals in the offshore wind power hydrogen production field. Chinacuity has built a comprehensive and multidimensional think tank system over the years, serving governments, enterprises, and financial institutions by providing services in technology, consulting, education, ecology, and capital.

Tables of contents

Chapter 1: Overview of the Offshore Wind Power Hydrogen Production Industry and Explanation of Data Sources

1.1 Definition of the Offshore Wind Power Hydrogen Production Industry

1.1.1 Concept & Industry Classification of Offshore Wind Power Hydrogen Production

  1. Concept & Definition of Offshore Wind Power Hydrogen Production
  2. Definition and Industry Classification of Offshore Wind Power Hydrogen Production in National Statistical Standards

1.1.2 Nature & Functional Characteristics of Offshore Wind Power Hydrogen Production

1.1.3 Terminology & Conceptual Clarification of Offshore Wind Power Hydrogen Production

  1. Explanation of Professional Terms for Offshore Wind Power Hydrogen Production
  2. Conceptual Clarification Related to Offshore Wind Power Hydrogen Production

1.2 Classification of the Offshore Wind Power Hydrogen Production Industry

1.3 Scope of Research in This Report

1.4 Market Regulation & Standard System of the Offshore Wind Power Hydrogen Production Industry


Chapter 2: Global Development Status and Market Trends Insights of the Offshore Wind Power Hydrogen Production Industry

2.1 Current Status of the Global Offshore Wind Power Hydrogen Production Industry

2.2 Current Application Status of Offshore Wind Power Hydrogen Production Abroad

2.3 Current Status and Plans for Global Offshore Wind Power Development

2.3.1 Global Installed Capacity of Offshore Wind Power
2.3.2 Global Offshore Wind Power Development Plans

2.4 Current Status of Global Hydrogen Energy Development

2.5 Offshore Wind Power Hydrogen Production Project Construction and Planning Worldwide

2.5.1 Global Offshore Wind Power Hydrogen Production Project Construction
2.5.2 Global Offshore Wind Power Hydrogen Production Development Plans

2.6 Development Status of Offshore Wind Power Hydrogen Production in Major Countries

2.6.1 Netherlands
2.6.2 United Kingdom
2.6.3 Germany
2.6.4 Denmark
2.6.5 Norway
2.6.6 Singapore
2.6.7 France
2.6.8 Belgium
2.6.9 South Korea

2.7 Market Size and Outlook of the Global Offshore Wind Power Hydrogen Production Industry

2.7.1 Market Size of the Global Offshore Wind Power Hydrogen Production Industry
2.7.2 Market Forecast for the Global Offshore Wind Power Hydrogen Production Industry
2.7.3 Insights into Global Offshore Wind Power Hydrogen Production Industry Trends

2.8 Summary of Development Experience and Beneficial Lessons from the Global Offshore Wind Power Hydrogen Production Industry


Chapter 3: Development Status and Market Pain Points Analysis of the Offshore Wind Power Hydrogen Production Industry in China

3.1 Analysis of the Development History of the Offshore Wind Power Hydrogen Production Industry in China

3.2 Research on the Technological Progress of the Offshore Wind Power Hydrogen Production Industry in China

3.2.1 Research Investment in the Offshore Wind Power Hydrogen Production Industry (Intensity and Strength)
3.2.2 Research Innovation in the Offshore Wind Power Hydrogen Production Industry (Patents and Commercialization)
3.2.3 Offshore Wind Power Electrolytic Water Hydrogen Production Technology Routes (Processes and Procedures)

  1. Alkaline Electrolytic Water Hydrogen Production
  2. Proton Exchange Membrane (PEM) Electrolytic Water Hydrogen Production
  3. Solid Oxide Electrolytic Water Hydrogen Production
  4. Solid Polymer Anion Exchange Membrane Electrolytic Water Hydrogen Production

3.3 China’s New Installed Capacity and Cumulative Installed Capacity of Offshore Wind Power

3.4 Offshore Wind Power Hydrogen Production as One of the Future Pathways for Large-scale Green Hydrogen Supply

3.5 Offshore Wind Power Hydrogen Production as an Effective Path to Improve Offshore Wind Energy Utilization

3.6 Current Status of Offshore Wind Power Hydrogen Production Project Construction in China

3.7 Analysis of Market Entities in the Offshore Wind Power Hydrogen Production Industry in China

3.7.1 Types of Market Entities in the Offshore Wind Power Hydrogen Production Industry
3.7.2 Market Entry Methods for Companies in the Offshore Wind Power Hydrogen Production Industry
3.7.3 Number of Market Entities in the Offshore Wind Power Hydrogen Production Industry

3.8 Market Size of the Offshore Wind Power Hydrogen Production Industry in China

3.9 Development Pain Points in the Offshore Wind Power Hydrogen Production Industry in China


Chapter 4: Comprehensive Analysis of the Offshore Wind Power Hydrogen Production Industry Chain and Supporting Industries in China

4.1 Structure of the Offshore Wind Power Hydrogen Production Industry Chain

4.2 Ecological Map of the Offshore Wind Power Hydrogen Production Industry Chain

4.3 Regional Heat Map of the Offshore Wind Power Hydrogen Production Industry Chain

4.4 Cost Input Analysis of Offshore Wind Power Hydrogen Production Projects

4.5 Market Analysis of Offshore Wind Power Hydrogen Production Equipment in China

4.5.1 Types of Offshore Wind Power Hydrogen Production Equipment
4.5.2 Major Manufacturers and Products of Offshore Wind Power Hydrogen Production Equipment
4.5.3 Market Outlook for Offshore Wind Power Hydrogen Production Equipment
4.5.4 Development Trends for Offshore Wind Power Hydrogen Production Equipment

4.6 Market Analysis of Hydrogen Storage and Transportation Equipment for Offshore Wind Power Hydrogen Production in China

4.6.1 Overview of Hydrogen Storage and Transportation Equipment for Offshore Wind Power Hydrogen Production
4.6.2 Brief Analysis of the Hydrogen Storage Equipment Market
4.6.3 Brief Analysis of the Hydrogen Transportation Equipment Market

4.7 Analysis of Infrastructure Construction and EPC (Engineering, Procurement, and Construction) Market for Offshore Wind Power Hydrogen Production in China

4.7.1 Overview of Infrastructure Construction for Offshore Wind Power Hydrogen Production
4.7.2 Exploration, Design, and Engineering Construction for Offshore Wind Power Hydrogen Production
4.7.3 EPC for Offshore Wind Power Hydrogen Production

4.8 Summary of the Impact of Supporting Industries on the Offshore Wind Power Hydrogen Production Industry


Chapter 5: Exploration of Solutions and Business Models for Offshore Wind Power Hydrogen Production in China

5.1 Overview of Solutions for Offshore Wind Power Hydrogen Production

5.1.1 Solutions for Offshore Wind Power Hydrogen Production
5.1.2 Components of the Offshore Wind Power Hydrogen Production System
5.1.3 Hydrogen Storage Solutions for Offshore Wind Power Hydrogen Production
5.1.4 Hydrogen Transportation Solutions for Offshore Wind Power Hydrogen Production

  1. Shared Transmission Mode of “Electricity + Hydrogen”
  2. Offshore Hydrogen Production Station + Hydrogen Transportation via Pipeline
  3. Offshore Hydrogen Refueling Station + Hydrogen Transportation via Transport Ship

5.2 Sub-market for Offshore Wind Power Hydrogen Production: (Nearshore) Offshore Wind Power + Onshore Hydrogen Production

5.2.1 Solutions for Offshore Wind Power + Onshore Hydrogen Production

  1. Diagram of Offshore Wind Power + Onshore Hydrogen Production Solution
  2. System Composition of Offshore Wind Power + Onshore Hydrogen Production Solution

(1) Offshore Wind Farm
(2) Offshore Booster Station
(3) Onshore Substation
(4) Onshore Converter Station
(5) Hydrogen Production Station
(6) AC/DC Cables

  1. Advantages of Offshore Wind Power + Onshore Hydrogen Production Solution
  2. Challenges of Offshore Wind Power + Onshore Hydrogen Production Solution

Chapter 6: Regional Development and Key Regional Analysis of Offshore Wind Power Hydrogen Production in China

6.1 Distribution of Key Provinces and Cities for Offshore Wind Power Resources in China

6.2 Analysis of the Development Pattern in Key Provinces and Cities for the Offshore Wind Power Industry in China

6.3 Development Status of Offshore Wind Power Industry Clusters in China

6.4 Competitiveness Evaluation and Strategic Positioning Analysis of Key Provinces and Cities in China’s Offshore Wind Power Industry

6.5 Summary of Policies and Plans for Offshore Wind Power Hydrogen Production Industry in Key Provinces and Cities

6.6 Interpretation of Development Goals for Offshore Wind Power Hydrogen Production Industry in Key Provinces and Cities


Chapter 7: Case Study Analysis of Offshore Wind Power Hydrogen Production Enterprises in China

7.1 Overview of Key Enterprises in the Offshore Wind Power Hydrogen Production Industry in China

7.2 Case Study Analysis of Key Enterprises in the Offshore Wind Power Hydrogen Production Industry

7.2.1 Mingyang Smart Energy Group Co., Ltd. (明阳智慧能源集团股份公司)

  1. Company Overview
  2. Business Operations

7.2.2 Zhongneng Integration Smart Technology Co., Ltd. (中能融合智慧科技有限公司)

  1. Company Overview
  2. Development Strategy

7.2.3 China Huaneng Group Co., Ltd. (中国华能集团有限公司)

  1. Company Overview
  2. Business Operations

7.2.4 China Energy Investment Corporation (国家能源投资集团有限责任公司)

  1. Company Overview
  2. Business Operations

7.2.5 China Shipbuilding Group Wind Power Development Co., Ltd. (中国船舶集团风电发展有限公司)

  1. Company Overview
  2. Related Layout

7.2.6 Guochuang Hydrogen Energy Technology Co., Ltd. (国创氢能科技有限公司)

  1. Company Overview
  2. Related Layout

7.2.7 Xinjiang Goldwind Science & Technology Co., Ltd. (新疆金风科技股份有限公司)

  1. Company Overview
  2. Business Operations

7.2.8 Shenzhen Turing Industrial Development Co., Ltd. (深圳市图灵科创产业发展有限公司)

  1. Company Overview
  2. Major Products

7.2.9 Dongfang Electric Corporation (东方电气股份有限公司)

  1. Company Overview
  2. Business Operations

7.2.10 China Three Gorges Corporation (中国长江三峡集团有限公司)

  1. Company Overview
  2. Business Operations

Chapter 8: Economic and SWOT Analysis of Offshore Wind Power Hydrogen Production Industry in China

8.1 Economic (ECONOMY) Environment Analysis of the Offshore Wind Power Hydrogen Production Industry in China

8.2 Social (SOCIETY) Environment Analysis of the Offshore Wind Power Hydrogen Production Industry in China

8.3 Policy (POLICY) Environment Analysis of the Offshore Wind Power Hydrogen Production Industry in China

8.4 SWOT Analysis of the Offshore Wind Power Hydrogen Production Industry (Strengths/Weaknesses/Opportunities/Threats)


Chapter 9: Market Outlook and Development Trend Analysis of the Offshore Wind Power Hydrogen Production Industry in China

9.1 Development Potential Assessment for the Offshore Wind Power Hydrogen Production Industry in China

9.2 Key Growth Points for the Future Development of the Offshore Wind Power Hydrogen Production Industry in China

9.3 Market Outlook for the Offshore Wind Power Hydrogen Production Industry in China

9.4 Development Trend Forecast for the Offshore Wind Power Hydrogen Production Industry in China (Including the Impact of the Pandemic)


Chapter 10: Investment Strategy Planning and Recommendations for the Offshore Wind Power Hydrogen Production Industry in China

10.1 Entry and Exit Barriers in the Offshore Wind Power Hydrogen Production Industry in China

10.1.1 Entry Barriers Analysis in the Offshore Wind Power Hydrogen Production Industry
10.1.2 Exit Barriers Analysis in the Offshore Wind Power Hydrogen Production Industry

10.2 Investment Risk Warning for the Offshore Wind Power Hydrogen Production Industry in China

10.3 Investment Opportunity Analysis in the Offshore Wind Power Hydrogen Production Industry in China

10.3.1 Investment Opportunities in Weak Links of the Offshore Wind Power Hydrogen Production Industry Chain
10.3.2 Investment Opportunities in Segmented Fields of the Offshore Wind Power Hydrogen Production Industry
10.3.3 Investment Opportunities in Regional Markets of the Offshore Wind Power Hydrogen Production Industry
10.3.4 Investment Opportunities in White Spaces of the Offshore Wind Power Hydrogen Production Industry

10.4 Investment Value Assessment for the Offshore Wind Power Hydrogen Production Industry in China

10.5 Investment Strategies and Recommendations for the Offshore Wind Power Hydrogen Production Industry in China


List of Charts and Tables

  • Chart 1: Typical Structure of a Wind Power Hydrogen Production System
  • Chart 2: Framework of the Marine Hydrogen Energy Standard System
  • Chart 3: Key Directions for Building Offshore Hydrogen Production Standards
  • Chart 4: Global Cumulative Installed Capacity of Offshore Wind Power (2020-2024)
  • Chart 5: Statistical Analysis of Four Hydrogen Energy Development Models Worldwide
  • Chart 6: Feasibility Study of Offshore Wind Farms for Hydrogen Production Domestically and Abroad
  • Chart 7: Principle of Solid Oxide Electrolytic Hydrogen Production
  • Chart 8: Statistics of China’s Installed Capacity of Offshore Wind Power (2020-2024)
  • Chart 9: Statistics of China’s Hydrogen Production Structure
  • Chart 10: Ecological Map of the Offshore Wind Power Hydrogen Production Industry Chain

...more charts and tables in the main report...

 

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