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Power-to-gas Market by Technology (Electrolysis, Methanation), by Capacity (Less than 100 kW, 100–999 kW, 1000 kW and Above), by Use Case (Wind, Solar, Biomass), by Application (Residential, Commercial, Utility): Global Opportunity Analysis and Industry Forecast, 2022-2031

A15975

Pages: 286

Charts: 62

Tables: 170

The global power-to-gas market size was valued at $30.3 million in 2021, and is power-to-gas industry is projected to reach $84.4 million by 2031, growing at a CAGR of 10.8% from 2022 to 2031.

Power-to-gas technology adopts the electrolysis process to produce hydrogen gas from renewable or excess electricity that is available. The first step in the process is to produce synthetic hydrogen (H2) from water and renewable power via electrolysis. This hydrogen can be used directly as a final energy carrier or converted to methane, synthesis gas, electricity, liquid fuels, or chemicals during the second stage process. Under the second stage process, hydrogen reacts with carbon dioxide to produce methane.

Power to gas system is an effective way of integrating renewables sources with power generation sources. The aim of this technology is to store energy for long term by converting it to other easily storable energy carriers, and at the same time reduces the load on the electricity grid by controlling operations. The converted hydrogen and methane can also be converted back into electricity, as it can be used as backup power source.

The increase in demand for renewable hydrogen, which has the potential to decarbonize multiple sectors is expected to drive the market growth. The driver for the growth of the market is the cost reduction of the electrolyzer technology. According to the International Energy Agency, the electrolyzer stacks are responsible for 50% and 60% of the capital expenditure, and remaining factors like power electronics, gas-conditioning, and plant components are accounting for the remainder of the expenditure, which is a factor hampering the power-to-gas market growth.

Air quality regulations are increasing the need for hydrogen as a clean fuel for clean transport emissions across the globe. Energy storage provision has started to become an obligatory requirement in areas, including California. The grid balancing and rapid response demand-side services are offering high proportion of integration of renewable energy supply. Also, auto OEMs are rolling out Fuel Cell Electric Vehicles (FCEVs), which require high purity hydrogen fuel. The Global Hydrogen Refuelling Station infrastructure programmes are underway with remarkable deployment plans. In addition, the price volatility of fossil fuels is driving an industrial substitution to more sustainable chemical processes, which is the major factor augmenting the growth of the power to gas market.

The presence of the latest development in the hydrogen production technology, and hydrogen engine technology is expected to have a positive impact on the growth of the market. For instance, The Hydrogen Council, a CEO-led Initiative of 92 global companies to develop the hydrogen economy, published report on January 19, 2021, which says that low carbon hydrogen supply at scale is economically and environmentally feasible. ThyssenKrupp AG is currently setting up a new facility in Varennes, Qubec, Canada, with an aim to generate 11,100 metric tons of green hydrogen per year. On January 13, 2021, Linde PLC Company announced that it plans to build the worlds largest electrolyzer plant by the third quarter of 2022. According to the EU member states, the target for complete hydrogen mobility is expected to be completed by 2030. Majority of hydrogen required is anticipated to be supplied by power-to-gas companies.

On the basis of technology, the market is segmented into electrolysis and methanation. On the basis of capacity, the market is bifurcated into less than 100KW, 100-999KW, and 1000KW and above. On the basis of use case, the market is segmented into wind, solar, and biomass. On the basis of application, the market is segmented into residential, commercial, and utility. Region-wise, the market is studied across North America, Europe, Asia-Pacific, and LAMEA. Presently, Europe accounts for the largest power-to-gas market share, followed by North America and Asia-Pacific.

The major companies profiled in this report include, Hydrogenics, ITM Power, McPhy Energy, Siemens AG, MAN Energy Solutions, Nel Hydrogen, ThyssenKrupp, Electrochaea, Exytron, GreenHydrogen, Hitachi Zosen Inova Etogas, Fuelcell Energy, Avacon, Carbotech, and Aquahydrex. Rapid development of industrialization and modernization and exhaustion of fossil fuel resources have led to the innovation of alternative fuels such as hydrogen. The increase in the demand for hydrogen in various sectors has fuelled the growth of power to gas market. Additional growth strategies such as expansion of production capacities, acquisition, partnership, and research & innovation in the solar energy application have led to attain key developments in the global power to gas market trends.

[REGIONGRAPH]

The Europe market is shared between various countries such as France, Germany, Italy, Spain, UK, and others. Germany, Italy, and UK are countries in Europe that use the most solar energy. The presence of stringent regulations regarding the reduction of carbon footprint across the country and rapid development in recent years, which lead to surpassing the expectations in terms of steep cost reduction, user-friendliness, and its commercial applications in variety of sector have fuelled manufacturers to expand their manufacturing capabilities. Intense R&D activities and the pressure of people awareness regarding the prospects of hydrogen fuel cell on environment have a positive impact on the market growth.

European Union and various national associations with corporate members are helping policy makers to enable power to gas technology to deliver its immense potential to meet the EU 2030 targets, while providing maximum benefit for Europe climate, and significantly contribute to the European Green Deal. Technological advances and lower costs of capital have propelled renewables into the mainstream energy market. Furthermore, the boom of green investments in Europe and the ambitious policies are expected to dominate the global renewable energy in terms of capacity, technology development, and energy demand. The above mentioned initiatives are major factors expected to drive the power-to-gas market forecast growth in this region during the forecast period.

[TECHNOLOGYGRAPH]

The electrolysis segment dominates the global power to gas market. Electrolysis is a process where hydrogen is produced from the splitting of water molecules and does not involve fossil fuels. Hydrogen generated from this kind of process is generally known as green hydrogen but this method is generally more expensive than the fossil-fuel production method.

The increase in awareness among the people regarding the greenhouse gases and increasing demand for the energy and fossil fuels have driven the growth of the electrolysis process in the power to gas market. Around 4% of global hydrogen production came from electrolysis in 2020, which was around 8GW. The rapid development in various technologies and electrical efficiency of these hydrogen generators are important factors for the growth of the hydrogen production technology. Increase in investment among the developing countries across the globe towards the production of green hydrogen to reach net zero carbon targets by 2050 have driven the market.

[CAPACITYGRAPH]

The 1000KW and above segment dominates the global power to gas market. Above 1000KW capacity of power to gas technology is used in large scale utilities or industries, which are heavy consumers of electricity. The need for power for manufacturing various chemical industries, automotive industries, and others have led to the search for efficient alternative to provide clean energy source for sustainability.

The presence of various advantages of utilization of the renewable energy sources to power various industries and in the presence of low demand for power, the excess energy generated from the renewable power plants are converted to valuable fuels through power to gas technology for future utilization. Such factors are expected to drive the growth of the market.

[USECASEGRAPH]

The solar segment dominates the global power to gas market. The rapid industrialization and decrease in fossil fuel resources across the globe have led to demand for alternative fuel source such as hydrogen. Increase in the utilization hydrogen in green energy vehicle, such as hydrogen car is also a factor driving the growth of the market. Rise in demand and need for efficient energy storage technology has led to the demand for the power to gas technology products in various power consuming industry.

The increase in the demand for power due to rapid industrialization and modernization has propelled the application of solar energy sector. The application of solar power generation devices in large scale malls and other commercial buildings need highly efficient storage systems and low cost solar panels to generate power at its peak demand, which is a major reason for the growth of the solar energy industry. Hence, storing electricity during off peak period in remote areas or during seasonal variations is a major factor driving the utilization of solar in the power to gas market.

[APPLICATIONGRAPH]

The utility segment dominates the global power to gas market. Large scale wind & solar farms generate huge amount of renewable energy. During the peak utilization time, energy generated from these renewable energy sources is directly fed to the power gird or is used by manufacturing companies and nearby residential complexes.  Power to gas technology is used to save excess renewable energy in an efficient way, where electricity is used to power electrolyser and produce hydrogen, which can be used to produce various commercial gases such as methane.

The rapid industrialization and decrease in fossil fuel resources across the globe have led to demand for alternative fuel sources, such as hydrogen. Increase in utilization of hydrogen in green energy vehicle, such as hydrogen car is also a factor driving the growth of the market. The rise in demand and need for efficient energy storage technology has led to the demand for the power to gas products in various power consuming industries. The wide range of utilization of hydrogen in various industrial applications provide ample opportunities for the growth of the power to gas market. 

COVID-19 analysis:

COVID-19 has severely impacted the global economy with devastating effects on global trade, which has simultaneously affected households, business, financial institution, industrial establishments, and infrastructure companies. The novel coronavirus has affected several economies and caused lockdown in many countries, which has limited the growth of the market. The COVID-19 pandemic has had a severe impact on the power to gas market. There is a significant drop in demand in the global gas market. Chemical production, transportation, and industrial production industries were hampered for around four to six months due to the COVID-19 pandemic. The current expansion plans of electrolysis and methanation have been delayed by minimum one year. In the long term, the pandemic may prove to be beneficial to the power to gas market. Global governments are expected to focus on green gas and reduction of harmful emissions into the environment.

After the global vaccination, governments of various countries have taken initiatives to increase the investment in the renewable energy related industries, especially solar and wind power systems. Increase in investment is mostly to improve the national energy security during the pandemic and other crisis. The presence of above mentioned activities and change in policies due to the outbreak of the COVID-19 pandemic have positive impact on the development of the market during the forecast period.

Key Benefits For Stakeholders

  • This report provides a quantitative analysis of the market segments, current trends, estimations, and dynamics of the power-to-gas market analysis from 2021 to 2031 to identify the prevailing power-to-gas market opportunities.
  • The market research is offered along with information related to key drivers, restraints, and opportunities.
  • Porter's five forces analysis highlights the potency of buyers and suppliers to enable stakeholders make profit-oriented business decisions and strengthen their supplier-buyer network.
  • In-depth analysis of the power-to-gas market segmentation assists to determine the prevailing market opportunities.
  • Major countries in each region are mapped according to their revenue contribution to the global market.
  • Market player positioning facilitates benchmarking and provides a clear understanding of the present position of the market players.
  • The report includes the analysis of the regional as well as global power-to-gas market trends, key players, market segments, application areas, and market growth strategies.

 

Key Market Segments

  • By Application
    • Residential
    • Commercial
    • Utility
  • By Technology
    • Electrolysis
    • Methanation
  • By Capacity
    • Less than 100 kW
    • 100–999 kW
    • 1000 kW and Above
  • By Use Case
    • Wind
    • Solar
    • Biomass
  • By Region
    • North America
      • U.S.
      • Canada
      • Mexico
    • Europe
      • Germany
      • U.K.
      • France
      • Italy
      • Spain
      • Rest of Europe
    • Asia-Pacific
      • China
      • Japan
      • India
      • South Korea
      • Rest Of Asia Pacific
    • LAMEA
      • Brazil
      • Saudi Arabia
      • South Africa
      • Rest of LAMEA


Key Market Players

  • Cummins Inc.
  • ITM Power
  • CarboTech
  • Thyssenkrupp AG
  • Avacon AG
  • Electrochaea
  • AquaHydrex
  • FuelCell Energy Inc.
  • Nel Hydrogen
  • Siemens
  • Green Hydrogen Systems
  • Exytron GmbH
  • MAN Energy Solutions
  • Hitachi Zosen Inova AG
  • McPhy Energy
  • CHAPTER 1: INTRODUCTION

    • 1.1. Report description

    • 1.2. Key market segments

    • 1.3. Key benefits to the stakeholders

    • 1.4. Research methodology

      • 1.4.1. Primary research

      • 1.4.2. Secondary research

      • 1.4.3. Analyst tools and models

  • CHAPTER 2: EXECUTIVE SUMMARY

    • 2.1. CXO Perspective

  • CHAPTER 3: MARKET OVERVIEW

    • 3.1. Market definition and scope

    • 3.2. Key findings

      • 3.2.1. Top impacting factors

      • 3.2.2. Top investment pockets

    • 3.3. Porter’s five forces analysis

      • 3.3.1. Low bargaining power of suppliers

      • 3.3.2. Low threat of new entrants

      • 3.3.3. Low threat of substitutes

      • 3.3.4. Low intensity of rivalry

      • 3.3.5. Low bargaining power of buyers

    • 3.4. Market dynamics

      • 3.4.1. Drivers

        • 3.4.1.1. Regulations to promote hydrogen production technologies
        • 3.4.1.2. Increase in market share of renewable energy in power generation
        • 3.4.1.3. Increase in utilization of hydrogen and CNG in transportation sector
      • 3.4.2. Restraints

        • 3.4.2.1. Loss of energy and presence of low-cost batteries
      • 3.4.3. Opportunities

        • 3.4.3.1. Development of various eco-friendly power-to-gas production technologies
    • 3.5. Value Chain Analysis

    • 3.6. Key Regulation Analysis

    • 3.7. Patent Landscape

  • CHAPTER 4: POWER-TO-GAS MARKET, BY TECHNOLOGY

    • 4.1. Overview

      • 4.1.1. Market size and forecast

    • 4.2. Electrolysis

      • 4.2.1. Key market trends, growth factors and opportunities

      • 4.2.2. Market size and forecast, by region

      • 4.2.3. Market share analysis by country

    • 4.3. Methanation

      • 4.3.1. Key market trends, growth factors and opportunities

      • 4.3.2. Market size and forecast, by region

      • 4.3.3. Market share analysis by country

  • CHAPTER 5: POWER-TO-GAS MARKET, BY CAPACITY

    • 5.1. Overview

      • 5.1.1. Market size and forecast

    • 5.2. Less than 100 kW

      • 5.2.1. Key market trends, growth factors and opportunities

      • 5.2.2. Market size and forecast, by region

      • 5.2.3. Market share analysis by country

    • 5.3. 100–999 kW

      • 5.3.1. Key market trends, growth factors and opportunities

      • 5.3.2. Market size and forecast, by region

      • 5.3.3. Market share analysis by country

    • 5.4. 1000 kW and Above

      • 5.4.1. Key market trends, growth factors and opportunities

      • 5.4.2. Market size and forecast, by region

      • 5.4.3. Market share analysis by country

  • CHAPTER 6: POWER-TO-GAS MARKET, BY USE CASE

    • 6.1. Overview

      • 6.1.1. Market size and forecast

    • 6.2. Wind

      • 6.2.1. Key market trends, growth factors and opportunities

      • 6.2.2. Market size and forecast, by region

      • 6.2.3. Market share analysis by country

    • 6.3. Solar

      • 6.3.1. Key market trends, growth factors and opportunities

      • 6.3.2. Market size and forecast, by region

      • 6.3.3. Market share analysis by country

    • 6.4. Biomass

      • 6.4.1. Key market trends, growth factors and opportunities

      • 6.4.2. Market size and forecast, by region

      • 6.4.3. Market share analysis by country

  • CHAPTER 7: POWER-TO-GAS MARKET, BY APPLICATION

    • 7.1. Overview

      • 7.1.1. Market size and forecast

    • 7.2. Residential

      • 7.2.1. Key market trends, growth factors and opportunities

      • 7.2.2. Market size and forecast, by region

      • 7.2.3. Market share analysis by country

    • 7.3. Commercial

      • 7.3.1. Key market trends, growth factors and opportunities

      • 7.3.2. Market size and forecast, by region

      • 7.3.3. Market share analysis by country

    • 7.4. Utility

      • 7.4.1. Key market trends, growth factors and opportunities

      • 7.4.2. Market size and forecast, by region

      • 7.4.3. Market share analysis by country

  • CHAPTER 8: POWER-TO-GAS MARKET, BY REGION

    • 8.1. Overview

      • 8.1.1. Market size and forecast By Region

    • 8.2. North America

      • 8.2.1. Key market trends, growth factors and opportunities

      • 8.2.2. Market size and forecast, by Technology

      • 8.2.3. Market size and forecast, by Capacity

      • 8.2.4. Market size and forecast, by Use Case

      • 8.2.5. Market size and forecast, by Application

      • 8.2.6. Market size and forecast, by country

        • 8.2.6.1. U.S.
          • 8.2.6.1.1. Market size and forecast, by Technology
          • 8.2.6.1.2. Market size and forecast, by Capacity
          • 8.2.6.1.3. Market size and forecast, by Use Case
          • 8.2.6.1.4. Market size and forecast, by Application
        • 8.2.6.2. Canada
          • 8.2.6.2.1. Market size and forecast, by Technology
          • 8.2.6.2.2. Market size and forecast, by Capacity
          • 8.2.6.2.3. Market size and forecast, by Use Case
          • 8.2.6.2.4. Market size and forecast, by Application
        • 8.2.6.3. Mexico
          • 8.2.6.3.1. Market size and forecast, by Technology
          • 8.2.6.3.2. Market size and forecast, by Capacity
          • 8.2.6.3.3. Market size and forecast, by Use Case
          • 8.2.6.3.4. Market size and forecast, by Application
    • 8.3. Europe

      • 8.3.1. Key market trends, growth factors and opportunities

      • 8.3.2. Market size and forecast, by Technology

      • 8.3.3. Market size and forecast, by Capacity

      • 8.3.4. Market size and forecast, by Use Case

      • 8.3.5. Market size and forecast, by Application

      • 8.3.6. Market size and forecast, by country

        • 8.3.6.1. Germany
          • 8.3.6.1.1. Market size and forecast, by Technology
          • 8.3.6.1.2. Market size and forecast, by Capacity
          • 8.3.6.1.3. Market size and forecast, by Use Case
          • 8.3.6.1.4. Market size and forecast, by Application
        • 8.3.6.2. U.K.
          • 8.3.6.2.1. Market size and forecast, by Technology
          • 8.3.6.2.2. Market size and forecast, by Capacity
          • 8.3.6.2.3. Market size and forecast, by Use Case
          • 8.3.6.2.4. Market size and forecast, by Application
        • 8.3.6.3. France
          • 8.3.6.3.1. Market size and forecast, by Technology
          • 8.3.6.3.2. Market size and forecast, by Capacity
          • 8.3.6.3.3. Market size and forecast, by Use Case
          • 8.3.6.3.4. Market size and forecast, by Application
        • 8.3.6.4. Italy
          • 8.3.6.4.1. Market size and forecast, by Technology
          • 8.3.6.4.2. Market size and forecast, by Capacity
          • 8.3.6.4.3. Market size and forecast, by Use Case
          • 8.3.6.4.4. Market size and forecast, by Application
        • 8.3.6.5. Spain
          • 8.3.6.5.1. Market size and forecast, by Technology
          • 8.3.6.5.2. Market size and forecast, by Capacity
          • 8.3.6.5.3. Market size and forecast, by Use Case
          • 8.3.6.5.4. Market size and forecast, by Application
        • 8.3.6.6. Rest of Europe
          • 8.3.6.6.1. Market size and forecast, by Technology
          • 8.3.6.6.2. Market size and forecast, by Capacity
          • 8.3.6.6.3. Market size and forecast, by Use Case
          • 8.3.6.6.4. Market size and forecast, by Application
    • 8.4. Asia-Pacific

      • 8.4.1. Key market trends, growth factors and opportunities

      • 8.4.2. Market size and forecast, by Technology

      • 8.4.3. Market size and forecast, by Capacity

      • 8.4.4. Market size and forecast, by Use Case

      • 8.4.5. Market size and forecast, by Application

      • 8.4.6. Market size and forecast, by country

        • 8.4.6.1. China
          • 8.4.6.1.1. Market size and forecast, by Technology
          • 8.4.6.1.2. Market size and forecast, by Capacity
          • 8.4.6.1.3. Market size and forecast, by Use Case
          • 8.4.6.1.4. Market size and forecast, by Application
        • 8.4.6.2. Japan
          • 8.4.6.2.1. Market size and forecast, by Technology
          • 8.4.6.2.2. Market size and forecast, by Capacity
          • 8.4.6.2.3. Market size and forecast, by Use Case
          • 8.4.6.2.4. Market size and forecast, by Application
        • 8.4.6.3. India
          • 8.4.6.3.1. Market size and forecast, by Technology
          • 8.4.6.3.2. Market size and forecast, by Capacity
          • 8.4.6.3.3. Market size and forecast, by Use Case
          • 8.4.6.3.4. Market size and forecast, by Application
        • 8.4.6.4. South Korea
          • 8.4.6.4.1. Market size and forecast, by Technology
          • 8.4.6.4.2. Market size and forecast, by Capacity
          • 8.4.6.4.3. Market size and forecast, by Use Case
          • 8.4.6.4.4. Market size and forecast, by Application
        • 8.4.6.5. Rest Of Asia Pacific
          • 8.4.6.5.1. Market size and forecast, by Technology
          • 8.4.6.5.2. Market size and forecast, by Capacity
          • 8.4.6.5.3. Market size and forecast, by Use Case
          • 8.4.6.5.4. Market size and forecast, by Application
    • 8.5. LAMEA

      • 8.5.1. Key market trends, growth factors and opportunities

      • 8.5.2. Market size and forecast, by Technology

      • 8.5.3. Market size and forecast, by Capacity

      • 8.5.4. Market size and forecast, by Use Case

      • 8.5.5. Market size and forecast, by Application

      • 8.5.6. Market size and forecast, by country

        • 8.5.6.1. Brazil
          • 8.5.6.1.1. Market size and forecast, by Technology
          • 8.5.6.1.2. Market size and forecast, by Capacity
          • 8.5.6.1.3. Market size and forecast, by Use Case
          • 8.5.6.1.4. Market size and forecast, by Application
        • 8.5.6.2. Saudi Arabia
          • 8.5.6.2.1. Market size and forecast, by Technology
          • 8.5.6.2.2. Market size and forecast, by Capacity
          • 8.5.6.2.3. Market size and forecast, by Use Case
          • 8.5.6.2.4. Market size and forecast, by Application
        • 8.5.6.3. South Africa
          • 8.5.6.3.1. Market size and forecast, by Technology
          • 8.5.6.3.2. Market size and forecast, by Capacity
          • 8.5.6.3.3. Market size and forecast, by Use Case
          • 8.5.6.3.4. Market size and forecast, by Application
        • 8.5.6.4. Rest of LAMEA
          • 8.5.6.4.1. Market size and forecast, by Technology
          • 8.5.6.4.2. Market size and forecast, by Capacity
          • 8.5.6.4.3. Market size and forecast, by Use Case
          • 8.5.6.4.4. Market size and forecast, by Application
  • CHAPTER 9: COMPETITIVE LANDSCAPE

    • 9.1. Introduction

    • 9.2. Top winning strategies

    • 9.3. Product mapping of top 10 player

    • 9.4. Competitive dashboard

    • 9.5. Competitive heatmap

    • 9.6. Top player positioning, 2021

  • CHAPTER 10: COMPANY PROFILES

    • 10.1. Cummins Inc.

      • 10.1.1. Company overview

      • 10.1.2. Key executives

      • 10.1.3. Company snapshot

      • 10.1.4. Operating business segments

      • 10.1.5. Product portfolio

      • 10.1.6. Key strategic moves and developments

    • 10.2. ITM Power

      • 10.2.1. Company overview

      • 10.2.2. Key executives

      • 10.2.3. Company snapshot

      • 10.2.4. Operating business segments

      • 10.2.5. Product portfolio

    • 10.3. McPhy Energy

      • 10.3.1. Company overview

      • 10.3.2. Key executives

      • 10.3.3. Company snapshot

      • 10.3.4. Operating business segments

      • 10.3.5. Product portfolio

      • 10.3.6. Business performance

    • 10.4. Siemens

      • 10.4.1. Company overview

      • 10.4.2. Key executives

      • 10.4.3. Company snapshot

      • 10.4.4. Operating business segments

      • 10.4.5. Product portfolio

      • 10.4.6. Business performance

    • 10.5. MAN Energy Solutions

      • 10.5.1. Company overview

      • 10.5.2. Key executives

      • 10.5.3. Company snapshot

      • 10.5.4. Operating business segments

      • 10.5.5. Product portfolio

    • 10.6. Nel Hydrogen

      • 10.6.1. Company overview

      • 10.6.2. Key executives

      • 10.6.3. Company snapshot

      • 10.6.4. Operating business segments

      • 10.6.5. Product portfolio

      • 10.6.6. Key strategic moves and developments

    • 10.7. Thyssenkrupp AG

      • 10.7.1. Company overview

      • 10.7.2. Key executives

      • 10.7.3. Company snapshot

      • 10.7.4. Operating business segments

      • 10.7.5. Product portfolio

    • 10.8. Electrochaea

      • 10.8.1. Company overview

      • 10.8.2. Key executives

      • 10.8.3. Company snapshot

      • 10.8.4. Operating business segments

      • 10.8.5. Product portfolio

    • 10.9. Exytron GmbH

      • 10.9.1. Company overview

      • 10.9.2. Key executives

      • 10.9.3. Company snapshot

      • 10.9.4. Operating business segments

      • 10.9.5. Product portfolio

    • 10.10. Green Hydrogen Systems

      • 10.10.1. Company overview

      • 10.10.2. Key executives

      • 10.10.3. Company snapshot

      • 10.10.4. Operating business segments

      • 10.10.5. Product portfolio

    • 10.11. Hitachi Zosen Inova AG

      • 10.11.1. Company overview

      • 10.11.2. Key executives

      • 10.11.3. Company snapshot

      • 10.11.4. Operating business segments

      • 10.11.5. Product portfolio

    • 10.12. FuelCell Energy Inc.

      • 10.12.1. Company overview

      • 10.12.2. Key executives

      • 10.12.3. Company snapshot

      • 10.12.4. Operating business segments

      • 10.12.5. Product portfolio

      • 10.12.6. Business performance

    • 10.13. Avacon AG

      • 10.13.1. Company overview

      • 10.13.2. Key executives

      • 10.13.3. Company snapshot

      • 10.13.4. Operating business segments

      • 10.13.5. Product portfolio

    • 10.14. CarboTech

      • 10.14.1. Company overview

      • 10.14.2. Key executives

      • 10.14.3. Company snapshot

      • 10.14.4. Operating business segments

      • 10.14.5. Product portfolio

    • 10.15. AquaHydrex

      • 10.15.1. Company overview

      • 10.15.2. Key executives

      • 10.15.3. Company snapshot

      • 10.15.4. Operating business segments

      • 10.15.5. Product portfolio

  • LIST OF TABLES

  • TABLE 01. GLOBAL POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 02. POWER-TO-GAS MARKET FOR ELECTROLYSIS, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 03. POWER-TO-GAS MARKET FOR METHANATION, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 04. GLOBAL POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 05. POWER-TO-GAS MARKET FOR LESS THAN 100 KW, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 06. POWER-TO-GAS MARKET FOR 100–999 KW, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 07. POWER-TO-GAS MARKET FOR 1000 KW AND ABOVE, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 08. GLOBAL POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 09. POWER-TO-GAS MARKET FOR WIND, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 10. POWER-TO-GAS MARKET FOR SOLAR, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 11. POWER-TO-GAS MARKET FOR BIOMASS, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 12. GLOBAL POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 13. POWER-TO-GAS MARKET FOR RESIDENTIAL, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 14. POWER-TO-GAS MARKET FOR COMMERCIAL, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 15. POWER-TO-GAS MARKET FOR UTILITY, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 16. POWER-TO-GAS MARKET, BY REGION, 2021-2031 ($THOUSAND)
    TABLE 17. NORTH AMERICA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 18. NORTH AMERICA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 19. NORTH AMERICA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 20. NORTH AMERICA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 21. NORTH AMERICA POWER-TO-GAS MARKET, BY COUNTRY, 2021-2031 ($THOUSAND)
    TABLE 22. U.S. POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 23. U.S. POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 24. U.S. POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 25. U.S. POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 26. CANADA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 27. CANADA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 28. CANADA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 29. CANADA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 30. MEXICO POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 31. MEXICO POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 32. MEXICO POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 33. MEXICO POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 34. EUROPE POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 35. EUROPE POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 36. EUROPE POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 37. EUROPE POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 38. EUROPE POWER-TO-GAS MARKET, BY COUNTRY, 2021-2031 ($THOUSAND)
    TABLE 39. GERMANY POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 40. GERMANY POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 41. GERMANY POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 42. GERMANY POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 43. U.K. POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 44. U.K. POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 45. U.K. POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 46. U.K. POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 47. FRANCE POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 48. FRANCE POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 49. FRANCE POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 50. FRANCE POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 51. ITALY POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 52. ITALY POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 53. ITALY POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 54. ITALY POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 55. SPAIN POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 56. SPAIN POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 57. SPAIN POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 58. SPAIN POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 59. REST OF EUROPE POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 60. REST OF EUROPE POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 61. REST OF EUROPE POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 62. REST OF EUROPE POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 63. ASIA-PACIFIC POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 64. ASIA-PACIFIC POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 65. ASIA-PACIFIC POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 66. ASIA-PACIFIC POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 67. ASIA-PACIFIC POWER-TO-GAS MARKET, BY COUNTRY, 2021-2031 ($THOUSAND)
    TABLE 68. CHINA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 69. CHINA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 70. CHINA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 71. CHINA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 72. JAPAN POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 73. JAPAN POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 74. JAPAN POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 75. JAPAN POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 76. INDIA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 77. INDIA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 78. INDIA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 79. INDIA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 80. SOUTH KOREA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 81. SOUTH KOREA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 82. SOUTH KOREA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 83. SOUTH KOREA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 84. REST OF ASIA PACIFIC POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 85. REST OF ASIA PACIFIC POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 86. REST OF ASIA PACIFIC POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 87. REST OF ASIA PACIFIC POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 88. LAMEA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 89. LAMEA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 90. LAMEA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 91. LAMEA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 92. LAMEA POWER-TO-GAS MARKET, BY COUNTRY, 2021-2031 ($THOUSAND)
    TABLE 93. BRAZIL POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 94. BRAZIL POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 95. BRAZIL POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 96. BRAZIL POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 97. SAUDI ARABIA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 98. SAUDI ARABIA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 99. SAUDI ARABIA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 100. SAUDI ARABIA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 101. SOUTH AFRICA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 102. SOUTH AFRICA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 103. SOUTH AFRICA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 104. SOUTH AFRICA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 105. REST OF LAMEA POWER-TO-GAS MARKET, BY TECHNOLOGY, 2021-2031 ($THOUSAND)
    TABLE 106. REST OF LAMEA POWER-TO-GAS MARKET, BY CAPACITY, 2021-2031 ($THOUSAND)
    TABLE 107. REST OF LAMEA POWER-TO-GAS MARKET, BY USE CASE, 2021-2031 ($THOUSAND)
    TABLE 108. REST OF LAMEA POWER-TO-GAS MARKET, BY APPLICATION, 2021-2031 ($THOUSAND)
    TABLE 109. CUMMINS INC.: KEY EXECUTIVES
    TABLE 110. CUMMINS INC.: COMPANY SNAPSHOT
    TABLE 111. CUMMINS INC.: PRODUCT SEGMENTS
    TABLE 112. CUMMINS INC.: PRODUCT PORTFOLIO
    TABLE 113. CUMMINS INC.: KEY STRATERGIES
    TABLE 114. ITM POWER: KEY EXECUTIVES
    TABLE 115. ITM POWER: COMPANY SNAPSHOT
    TABLE 116. ITM POWER: PRODUCT SEGMENTS
    TABLE 117. ITM POWER: PRODUCT PORTFOLIO
    TABLE 118. MCPHY ENERGY: KEY EXECUTIVES
    TABLE 119. MCPHY ENERGY: COMPANY SNAPSHOT
    TABLE 120. MCPHY ENERGY: SERVICE SEGMENTS
    TABLE 121. MCPHY ENERGY: PRODUCT PORTFOLIO
    TABLE 122. SIEMENS: KEY EXECUTIVES
    TABLE 123. SIEMENS: COMPANY SNAPSHOT
    TABLE 124. SIEMENS: PRODUCT SEGMENTS
    TABLE 125. SIEMENS: PRODUCT PORTFOLIO
    TABLE 126. MAN ENERGY SOLUTIONS: KEY EXECUTIVES
    TABLE 127. MAN ENERGY SOLUTIONS: COMPANY SNAPSHOT
    TABLE 128. MAN ENERGY SOLUTIONS: SERVICE SEGMENTS
    TABLE 129. MAN ENERGY SOLUTIONS: PRODUCT PORTFOLIO
    TABLE 130. NEL HYDROGEN: KEY EXECUTIVES
    TABLE 131. NEL HYDROGEN: COMPANY SNAPSHOT
    TABLE 132. NEL HYDROGEN: PRODUCT SEGMENTS
    TABLE 133. NEL HYDROGEN: PRODUCT PORTFOLIO
    TABLE 134. NEL HYDROGEN: KEY STRATERGIES
    TABLE 135. THYSSENKRUPP AG: KEY EXECUTIVES
    TABLE 136. THYSSENKRUPP AG: COMPANY SNAPSHOT
    TABLE 137. THYSSENKRUPP AG: PRODUCT SEGMENTS
    TABLE 138. THYSSENKRUPP AG: PRODUCT PORTFOLIO
    TABLE 139. ELECTROCHAEA: KEY EXECUTIVES
    TABLE 140. ELECTROCHAEA: COMPANY SNAPSHOT
    TABLE 141. ELECTROCHAEA: PRODUCT SEGMENTS
    TABLE 142. ELECTROCHAEA: PRODUCT PORTFOLIO
    TABLE 143. EXYTRON GMBH: KEY EXECUTIVES
    TABLE 144. EXYTRON GMBH: COMPANY SNAPSHOT
    TABLE 145. EXYTRON GMBH: PRODUCT SEGMENTS
    TABLE 146. EXYTRON GMBH: PRODUCT PORTFOLIO
    TABLE 147. GREEN HYDROGEN SYSTEMS: KEY EXECUTIVES
    TABLE 148. GREEN HYDROGEN SYSTEMS: COMPANY SNAPSHOT
    TABLE 149. GREEN HYDROGEN SYSTEMS: PRODUCT SEGMENTS
    TABLE 150. GREEN HYDROGEN SYSTEMS: PRODUCT PORTFOLIO
    TABLE 151. HITACHI ZOSEN INOVA AG: KEY EXECUTIVES
    TABLE 152. HITACHI ZOSEN INOVA AG: COMPANY SNAPSHOT
    TABLE 153. HITACHI ZOSEN INOVA AG: PRODUCT SEGMENTS
    TABLE 154. HITACHI ZOSEN INOVA AG: PRODUCT PORTFOLIO
    TABLE 155. FUELCELL ENERGY INC.: KEY EXECUTIVES
    TABLE 156. FUELCELL ENERGY INC.: COMPANY SNAPSHOT
    TABLE 157. FUELCELL ENERGY INC.: PRODUCT SEGMENTS
    TABLE 158. FUELCELL ENERGY INC.: PRODUCT PORTFOLIO
    TABLE 159. AVACON AG: KEY EXECUTIVES
    TABLE 160. AVACON AG: COMPANY SNAPSHOT
    TABLE 161. AVACON AG: PRODUCT SEGMENTS
    TABLE 162. AVACON AG: PRODUCT PORTFOLIO
    TABLE 163. CARBOTECH: KEY EXECUTIVES
    TABLE 164. CARBOTECH: COMPANY SNAPSHOT
    TABLE 165. CARBOTECH: PRODUCT SEGMENTS
    TABLE 166. CARBOTECH: PRODUCT PORTFOLIO
    TABLE 167. AQUAHYDREX: KEY EXECUTIVES
    TABLE 168. AQUAHYDREX: COMPANY SNAPSHOT
    TABLE 169. AQUAHYDREX: PRODUCT SEGMENTS
    TABLE 170. AQUAHYDREX: PRODUCT PORTFOLIO
  • LIST OF FIGURES

  • FIGURE 01. POWER-TO-GAS MARKET SNAPSHOT, BY SEGMENTATION, 2022–2031
    FIGURE 02. POWER-TO-GAS MARKET SNAPSHOT, BY REGION, 2022–2031
    FIGURE 03. POWER-TO-GAS MARKET SEGMENTATION
    FIGURE 04. TOP INVESTMENT POCKETS
    FIGURE 05. MODERATE BARGAINING POWER OF SUPPLIERS
    FIGURE 06. MODERATE BARGAINING POWER OF BUYERS
    FIGURE 07. MODERATE THREAT OF NEW ENTRANTS
    FIGURE 08. MODERATE THREAT OF SUBSTITUTES
    FIGURE 09. MODERATE COMPETITIVE RIVALRY
    FIGURE 10. POWER-TO-GAS MARKET DYNAMICS
    FIGURE 11. VALUE CHAIN ANALYSIS
    FIGURE 12. POWER-TO-GAS MARKET, BY TECHNOLOGY, 2022–2031 ($THOUSAND)
    FIGURE 13. COMPARATIVE ANALYSIS OF ELECTROLYSIS MARKET, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 14. COMPARATIVE ANALYSIS OF METHANATION MARKET, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 15. POWER-TO-GAS MARKET, BY CAPACITY, 2022–2031 ($THOUSAND)
    FIGURE 16. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR LESS THAN 100 KW, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 17. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR 100–999 KW, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 18. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR 1000 KW AND ABOVE, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 19. POWER-TO-GAS MARKET, BY USE CASE, 2022–2031 ($THOUSAND)
    FIGURE 20. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR WIND, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 21. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR SOLAR, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 22. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR BIOMASS, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 23. POWER-TO-GAS MARKET, BY APPLICATION, 2022–2031 ($THOUSAND)
    FIGURE 24. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR RESIDENTIAL, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 25. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR COMMERCIAL, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 26. COMPARATIVE ANALYSIS OF POWER-TO-GAS MARKET FOR UTILITY, BY COUNTRY, 2022 & 2031 ($THOUSAND)
    FIGURE 27. U.S. POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 28. CANADA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 29. MEXICO POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 30. GERMANY POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 31. UK POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 32. FRANCE POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 33. ITALY POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 34. SPAIN POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 35. REST OF EUROPE POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 36. CHINA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 37. JAPAN POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 38. INDIA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 39. SOUTH KOREA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 40. REST OF ASIA-PACIFIC POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 41. BRAZIL POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 42. SAUDI ARABIA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 43. SOUTH AFRICA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 44. REST OF LAMEA POWER-TO-GAS MARKET REVENUE, 2021–2031 ($THOUSAND)
    FIGURE 45. MARKET PLAYER POSITIONING, 2021
    FIGURE 46. TOP WINNING STRATEGIES, BY YEAR, 2020–2022
    FIGURE 47. TOP WINNING STRATEGIES, BY DEVELOPMENT, 2020–2022 (%)
    FIGURE 48. TOP WINNING STRATEGIES, BY COMPANY, 2020–2022
    FIGURE 49. FUELCELL ENERGY INC.: REVENUE ($ MILLION)
    FIGURE 50. FUELCELL ENERGY INC.: REVENUE ($ MILLION) BY REGION
    FIGURE 51. GREEN HYDROGEN SYSTEMS: REVENUE ($ MILLION)
    FIGURE 52. GREEN HYDROGEN SYSTEMS: REVENUE ($ MILLION) BY REGION
    FIGURE 53. ITM POWER: REVENUE ($ MILLION)
    FIGURE 54. ITM POWER: REVENUE BY REGION ($ MILLION)
    FIGURE 55. SIEMENS AG: R&D EXPENDITURE ($ MILLION)
    FIGURE 56. SIEMENS AG: REVENUE ($ MILLION)
    FIGURE 57. SIEMENS AG: REVENUE (IN $ MILLION) BY SEGMENT
    FIGURE 58. SIEMENS AG: REVENUE (IN $ MILLION) BY SEGMENT
    FIGURE 59. MCPHY ENERGY S.A.: REVENUE ($ MILLION)
    FIGURE 60. MCPHY ENERGY S.A.: REVENUE ($ MILLION) BY REGION
    FIGURE 61. THYSSENKRUPP: REVENUE ($ MILLION)
    FIGURE 62. THYSSENKRUPP: NET SALES ($ MILLION) BY SEGMENT

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