Gas diffusion layer market

Gas Diffusion Layer Market, By Type (Carbon Paper Type, Carbon Cloth Type, and Other (Metal Substrates)), By Application (Polymer Electrolyte Fuel Cells, Hydrogen /Oxygen Air Fuel Cells, Direct Methanol Fuel Cells, and Others), and By Region (North America, Latin America, Asia Pacific, Europe, and Middle East & Africa) - Size, Share, Outlook, and Opportunity Analysis, 2022 - 2030

  • Dec 2022
  • CMI4819
  • 110 Pages
  • Excel & Pdf
  • Energy

The gas diffusion layers (GDL) are a fibrous porous media with two primary functions: uniform distribution of reactive gases on the electrode surfaces and electron transfer to or from the external electrical circuit. They are made of thin carbon fibers, a porous and hydrophobic material. The gas diffusion layers are a very important supporting material in a membrane electrode assembly (MEA). Gas diffusion layers are a porous substance made up of a dense array of carbon fibres that also act as an electrically conductive pathway for collecting current. GDLs are often subjected to high compression forces as part of the MEA when assembled, and thus, GDLs need to be rigid and stable enough to withstand these mechanical stresses.

Global gas diffusion layer market was valued at US$ 510.13 Million in 2021 in terms of revenue, exhibiting a CAGR of 26.09% during the forecast period (2022 to 2030).

Drivers

One of the key factors expected to stimulate market growth during the forecast period is the increasing awareness regarding harmful effects of greenhouse gases. Lack of clean energy policies has resulted in an increase in CO2 emissions across the globe. For instance, as per the article published by IEA (International Energy Agency) on March 2, 2021, the global CO2 emission rose by 2% or 60 million tons from December 2019 to December 2020. The gas diffusion layer distributes all of the gases to the membrane on which catalysts are applied which are called as catalyst coated membrane (CCM). This membrane assists in the separation of oxygen and hydrogen, thereby, transmitting positively charged protons from the anode side to the cathode side. As more gas flows homogenously across the entire cross-sectional area, more electricity is produced, which in turn increases the power density of the fuel cell.

Among regions, Asia Pacific held dominant position in the global gas diffusion layer market in 2021, accounting for 42.5% market share in terms of revenue, followed by North America and Europe. The market for gas diffusion layers has grown as a result of significant investments in fuel cell technology, especially in Japan and South Korea. Other countries such as Singapore, India, Indonesia, and Malaysia have started or are about to start exclusive fuel cell marketing programs in their respective local areas. These countries are now focusing on fuel cells for backup power (hospitals, educational institutions, and others). From 2020, India invested in fuel cell systems to supply backup power for telecommunication towers.

The COVID-19 impact across industries varies. The outbreak has impacted growth switch in every sector of the economy, and power generation sector, is no exception. The increasing spread of COVID-19 has also mandated the gas diffusion layer manufacturers to deploy precautionary measures in their facilities including labors and plant controllers screening and monitoring and sanitizing the facilities. This has further increased the plant operational costs, which has indirectly increased the prices of these high value-added carbon paper. However, unlocking and reopening of industries coupled with shifting focus on production and sustainable development is expected to boost the growth of the energy sector over the post-pandemic period.  For instance, as per the article by The International Energy Agency (IEA) on March 2, 2021, the global energy demand gained momentum in December 2020, after showing a dip of around 6% in April 2020.

Figure 1. Global Gas Diffusion Layer Market Value Share (%), By Region, 2021

Market Restraints

High cost associated with gas diffusion layer has negatively affected the gas diffusion layer market. The major base material in gas diffused layers is polyacrylonitrile (PAN). Since, the cost of PAN is higher (~US$ 15-20 per kg) as compared to other natural fibers such as cotton or bamboo fiber, the demand for gas infused layers is expected to get hampered to some extent. Moreover, the raw material used in the gas diffusion layer such as PAN or carbon cloth or paper should have high graphitization temperatures (~1700°C) for attaining higher conductivity and post-carbonization treatment, which further adds up to additional costs. These factors are projected to hinder the demand for gas infused layers to some extent.

Gas Diffusion Layer Market Report Coverage

Report Coverage Details
Base Year: 2021 Market Size in 2021: US$ 510.13 Mn 
Historical Data for: 2017-2020 Estimated Year: 2022
Forecast Period 2022 to 2030 CAGR: 26.09% Forecast Period: 2022-2030
Geographies covered:
  • By Region: North America, Latin America, Europe, Asia Pacific, Middle East & Africa
Segments covered:
  • By Type: Carbon Paper Type, Carbon Cloth Type, Other (Metal Substrates), Other (Metal Substrates)
  • By Application: Polymer Electrolyte Fuel Cells, Hydrogen /Oxygen Air Fuel Cells, Direct Methanol Fuel Cells, Others
Companies covered:

AvCarb Llc., Caplinq Corporation, Freudenberg Group, Fuel Cells Etc., Mitsubishi Chemical Corporation, Mott Corporation, SGL Carbon, Technical Fibre Products, Toray Industries, Inc., and GKD Gebr. Kufferath AG.

Growth Drivers:
  • Increasing awareness about harmful effects of greenhouse gases
  • Promotional activities undertaken by statutory governing bodies
Restraints & Challenges:
  • High cost associated with gas diffusion layer

Market Trends

Adoption of several marketing strategies by the key players have seen a major growth in the market. Key players are focusing on strategies such as mergers, acquisitions, and capacity expansions to increase their geographical reach and widen their product portfolio in the global gas diffusion layer market. For instance, in March 2020, Toray Industries, Inc.'s Germany-based subsidiary, Greenerity, constructed its second factory in Bavaria, Germany. This new facility manufactures, develops, and distributes essential parts for hydrogen fuel cells and water electrolyzers.

On the basis of application, in 2021, hydrogen/oxygen air fuel cells segment held largest revenue share of 38.7% in global gas diffusion layer market. Being a carrier of energy, hydrogen fuel cells can be applied in a variety of use cases. Typical applications of fuel cell can be categorized into two major types: stationary power transportation and other applications including portable power. Governments across the globe are taking initiatives to promote hydrogen fuel cells for transportation.

Figure 2. Global Gas Diffusion Layer Market Value Share (%), By Application, 2021

Recent Developments

  • In April 2022, Hexagon Purus, a global leader in key technologies for zero emission mobility acquired Cryoshelter, an Austrian company that has developed the LNG tank system for heavy duty trucks to enhance zero-emission mobility technology.
  • In December 2021, the Indian Oil Corporation, a central public sector undertaking under the ownership of Ministry of Petroleum and Natural Gas, Government of India acquired 5% stakes in the Indian gas Exchange to enter the natural gas market.

Competitive Section

Major players operating in the global gas diffusion layer market include AvCarb Llc., Caplinq Corporation, Freudenberg Group, Fuel Cells Etc., Mitsubishi Chemical Corporation, Mott Corporation, SGL Carbon, Technical Fibre Products, Toray Industries, Inc., and GKD Gebr. Kufferath AG.

Table of Contents

  1. Research Objectives and Assumptions
    • Research Objectives
    • Assumptions
    • Abbreviations
  2. Market Purview
    • Report Description
      • Market Definition and Scope
    • Executive Summary
      • Market Snippet, By Type
      • Market Snippet, By Application
      • Market Snippet, By Region
    • Coherent Opportunity Map (COM)
  3. Market Dynamics, Regulations, and Trends Analysis
    • Market Dynamics
      • Drivers
      • Restraints
      • PEST Analysis
      • PORTER’s Five Forces Analysis
      • Market Opportunities
      • Regulatory Scenario
      • Key Developments
      • Industry Trend
  4. Global Gas Diffusion Layer Market - Impact of Coronavirus (COVID-19) Pandemic
    • Overview
    • Factors Affecting Global Gas Diffusion Layer Market – COVID-19
    • Impact Analysis
  5. Global Gas Diffusion Layer Market, By Type, 2017-2030 (US$ Million)
    • Introduction
      • Market Share Analysis, 2022, 2025, and 2030 (%)
      • Y-o-Y Growth Analysis, 2017 - 2030
      • Segment Trends
    • Carbon Paper Type
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
    • Carbon Cloth Type
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
    • Others (Metal Substrates)
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
  6. Global Gas Diffusion Layer Market, By Application, 2017-2030 (US$ Million)
    • Introduction
      • Market Share Analysis, 2022, 2025, and 2030 (%)
      • Y-o-Y Growth Analysis, 2017 - 2030
      • Segment Trends
    • Polymer Electrolyte Fuel Cells
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
    • Hydrogen/Oxygen Fuel Cells
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
    • Direct Methanol Fuel Cells
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
    • Others
      • Introduction
      • Market Size and Forecast, and Y-o-Y Growth, 2017 - 2030, (US$ Million)
  7. Global Gas Diffusion Layer Market, By Region, 2017-2030 (US$ Million)
    • Introduction
      • Market Share Analysis, By Region, 2022, 2025, and 2030 (%)
      • Y-o-Y Growth Analysis, For Region, 2017 - 2030
    • North America
      • Market Share Analysis, By Country, 2022, 2025 and 2030 (%)
      • Y-o-Y Growth Analysis, By Country, 2017 – 2030
      • Market Size and Forecast, By Type, 2017- 2030 (US$ Million)
      • Market Size and Forecast, By Application, 2017- 2030 (US$ Million)
      • Countries
        • U.S.
        • Canada
    • Latin America
      • Market Share Analysis, By Country, 2022, 2025 and 2030 (%)
      • Y-o-Y Growth Analysis, By Country, 2017 – 2030
      • Market Size and Forecast, By Type, 2017- 2030 (US$ Million)
      • Market Size and Forecast, By Application, 2017- 2030 (US$ Million)
      • Countries
        • Brazil
        • Argentina
        • Mexico
        • Rest of Latin America
    • Europe
      • Market Share Analysis, By Country, 2022, 2025 and 2030 (%)
      • Y-o-Y Growth Analysis, By Country, 2017 – 2030
      • Market Size and Forecast, By Type, 2017- 2030 (US$ Million)
      • Market Size and Forecast, By Application, 2017- 2030 (US$ Million)
      • Countries
        • France
        • Germany
        • Italy
        • Spain
        • U.K.
        • Russia
        • Rest of Europe
    • Asia Pacific
      • Market Share Analysis, By Country, 2022, 2025 and 2030 (%)
      • Y-o-Y Growth Analysis, By Country, 2017 – 2030
      • Market Size and Forecast, By Type, 2017- 2030 (US$ Million)
      • Market Size and Forecast, By Application, 2017- 2030 (US$ Million)
      • Countries
        • China
        • India
        • Japan
        • ASEAN
        • Australia
        • South Korea
        • Rest of Asia Pacific
    • Middle East & Africa
      • Market Share Analysis, By Country, 2022, 2025 and 2030 (%)
      • Y-o-Y Growth Analysis, By Country, 2017 – 2030
      • Market Size and Forecast, By Type, 2017- 2030 (US$ Million)
      • Market Size and Forecast, By Application, 2017- 2030 (US$ Million)
      • Countries
        • Middle East
        • Africa
  8. Competitive Landscape
    • Heat Map Analysis
    • Market Share Analysis (3x3 Matrix)
    • Company Profiles
      • AvCarb Llc.
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Caplinq Corporation
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Freudenberg Group
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Fuel Cells Etc.
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Mitsubishi Chemical Corporation
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Mott Corporation
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • SGL Carbon
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Technical Fibre Products
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • Toray Industries, Inc.
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
      • GKD Gebr. Kufferath AG
        • Company Overview
        • Product Portfolio
        • Recent Developments/Updates
  9. Section
    • References
    • Research Methodology
    • About Us and Sales Contact

* Browse 50 market data tables* and 40 figures* on “Global Gas Diffusion Layer Market” - forecast to 2030.

Detailed Segmentation:

  • Global Gas Diffusion Layer Market, By Type:
    • Carbon Paper Type
    • Carbon Cloth Type
    • Other (Metal Substrates)
  • Global Gas Diffusion Layer Market, By Application:
    • Polymer Electrolyte Fuel Cells
    • Hydrogen /Oxygen Air Fuel Cells
    • Direct Methanol Fuel Cells
    • Others
  • Global Gas Diffusion Layer Market, By Region:
    • North America
      • U.S.
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Canada
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
    • Europe
      • U.K.
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Germany
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Italy
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • France
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Spain
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Russia
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Rest of Europe
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others        
    • Latin America
      • Brazil
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Argentina
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Mexico
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Rest of Latin America
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
    • Asia Pacific
      • China
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • India
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Japan
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • ASEAN
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • South Korea
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Australia
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Rest of Asia Pacific
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
    • Middle East & Africa
      • Middle East
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others
      • Africa
        • By Type:
          • Carbon Paper Type
          • Carbon Cloth Type
          • Other (Metal Substrates)
        • By Application:
          • Polymer Electrolyte Fuel Cells
          • Hydrogen /Oxygen Air Fuel Cells
          • Direct Methanol Fuel Cells
          • Others     
- Frequently Asked Questions -

What was the global gas diffusion layer market size in 2021?

Global gas diffusion layer market was valued at around US$ 510.13 Million in 2021.

What are the major factors that are expected to drive growth of market during the forecast period?

Increasing awareness regarding harmful effects of greenhouse gases and promotional activities undertaken by statutory governing bodies is projected to propel the overall product demand during the forecast period

What are the trends in the market?

Increasing awareness regarding harmful effects of greenhouse gases and promotional activities undertaken by statutory governing bodies is projected to propel the overall product demand during the forecast period.

What are the key factors hampering growth of the market?

High cost associated with gas diffusion layer is anticipated to restrain the market growth in the coming years.

Which are the key players in the market?

Major players operating in the market include AvCarb Llc., Caplinq Corporation, Freudenberg Group, Fuel Cells Etc., Mitsubishi Chemical Corporation, Mott Corporation, SGL Carbon, Technical Fibre Products, Toray Industries, Inc., and GKD Gebr. Kufferath AG

What is the estimated CAGR for the market?

The market is estimated to grow at around 26.09 % CAGR in the forecast period (2022-2030).
© 2024 Coherent Market Insights Pvt Ltd. All Rights Reserved.