1 序文
2 調査範囲と方法論
2.1 調査の目的
2.2 ステークホルダー
2.3 データソース
2.3.1 一次情報源
2.3.2 二次情報源
2.4 市場推定
2.4.1 ボトムアップ・アプローチ
2.4.2 トップダウンアプローチ
2.5 予測方法
3 エグゼクティブ・サマリー
4 はじめに
4.1 概要
4.2 主要産業動向
5 世界の燃料電池市場
5.1 市場概要
5.2 市場パフォーマンス
5.3 COVID-19の影響
5.4 価格分析
5.4.1 主要価格指標
5.4.2 価格構造
5.4.3 マージン分析
5.5 タイプ別市場構成
5.6 用途別市場構成
5.7 地域別市場構成比
5.8 市場予測
5.9 SWOT分析
5.9.1 概要
5.9.2 強み
5.9.3 弱点
5.9.4 機会
5.9.5 脅威
5.10 バリューチェーン分析
5.10.1 概要
5.10.2 研究開発
5.10.3 原材料調達
5.10.4 製造
5.10.5 マーケティング
5.10.6 流通
5.10.7 最終用途
5.11 ポーターズファイブフォース分析
5.11.1 概要
5.11.2 買い手の交渉力
5.11.3 供給者の交渉力
5.11.4 競争の程度
5.11.5 新規参入の脅威
5.11.6 代替品の脅威
6 タイプ別市場構成
6.1 プロトン交換膜燃料電池(PEMFC)
6.1.1 市場動向
6.1.2 市場予測
6.2 固体酸化物形燃料電池(SOFC)
6.2.1 市場動向
6.2.2 市場予測
6.3 溶融炭酸塩型燃料電池(MCFC)
6.3.1 市場動向
6.3.2 市場予測
6.4 直接メタノール型燃料電池(DMFC)
6.4.1 市場動向
6.4.2 市場予測
6.5 リン酸型燃料電池(PAFC)
6.5.1 市場動向
6.5.2 市場予測
6.6 その他
6.6.1 市場動向
6.6.2 市場予測
7 用途別市場
7.1 定置
7.1.1 市場動向
7.1.2 市場予測
7.2 輸送
7.2.1 市場動向
7.2.2 市場予測
7.3 ポータブル
7.3.1 市場動向
7.3.2 市場予測
8 地域別市場内訳
8.1 アジア太平洋
8.1.1 市場動向
8.1.2 市場予測
8.2 北米
8.2.1 市場動向
8.2.2 市場予測
8.3 欧州
8.3.1 市場動向
8.3.2 市場予測
8.4 中東・アフリカ
8.4.1 市場動向
8.4.2 市場予測
8.5 中南米
8.5.1 市場動向
8.5.2 市場予測
9 燃料電池の製造工程
9.1 製品概要
9.2 原材料要件
9.3 製造プロセス
9.4 主な成功要因とリスク要因
10 競争環境
10.1 市場構造
10.2 主要プレーヤー
10.3 主要プレーヤーのプロフィール
10.3.1 バラード・パワー・システムズ社
10.3.2 ブルーム・エナジー・コーポレーション
10.3.3 東芝燃料電池株式会社
10.3.4 フュエルセル・エナジー社
10.3.5 プラグ・パワー社
10.3.6 Nuvera Fuel Cells Inc.
10.3.7 AFC Energy plc
10.3.8 SFCエナジーAG
10.3.9 三菱日立パワーシステムズ株式会社
10.3.10 パナソニック株式会社
10.3.11 インテリジェントエナジー
10.3.12 Doosan Fuel Cell America Inc.
図1:世界:燃料電池市場:主な推進要因と課題
図2:世界:燃料電池市場:販売額(単位:億米ドル)、2019年~2024年
図3:世界の燃料電池市場:タイプ別構成比(単位:%)、2024年
図4:世界:燃料電池の世界市場:燃料電池の世界市場:用途別構成比(%)、2024年
図5:世界の燃料電池の世界市場:燃料電池の世界市場:地域別構成比(%)、2024年
図6:世界の燃料電池の世界市場予測:販売金額(単位:億ドル)、2025年~2033年
図7:燃料電池市場:価格構造
図8:世界:燃料電池産業:SWOT分析
図9: 世界の燃料電池産業:バリューチェーン分析
図10: 世界:燃料電池産業:ポーターのファイブフォース分析
図11:世界燃料電池(固体高分子形燃料電池)市場:販売額(単位:百万米ドル)、2019年・2024年
図12:世界:燃料電池(固体高分子形燃料電池)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図13:世界:燃料電池(固体酸化物)市場:販売金額(単位:百万米ドル)、2019年・2024年
図14:世界:燃料電池(固体酸化物)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図15:世界:燃料電池(溶融炭酸塩)市場:販売金額(単位:百万米ドル)、2019年・2024年
図16:世界:燃料電池(溶融炭酸塩)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図17:世界:燃料電池(ダイレクトメタノール)市場:販売額(単位:百万米ドル)、2019年・2024年
図18:世界:燃料電池(ダイレクトメタノール)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図19:世界:燃料電池(リン酸)市場:販売額(単位:百万米ドル)、2019年・2024年
図 20: 世界:燃料電池(リン酸)市場の予測:販売額(単位:百万米ドル)、2025年~2033年
図21:世界:燃料電池(その他のタイプ)市場:販売金額(単位:百万米ドル)、2019年・2024年
図22:世界:燃料電池(その他のタイプ)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図23:世界:燃料電池(定置型)市場:販売金額(単位:百万米ドル)、2019年・2024年
図24:世界:燃料電池(定置型)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図25:世界:燃料電池(輸送用)市場:販売金額(単位:百万米ドル)、2019年および2024年
図26:世界の燃料電池(輸送用)市場の予測:販売金額(単位:百万米ドル)、2025年~2033年
図27:世界の燃料電池(ポータブル)市場:販売金額(単位:百万米ドル)、2019年・2024年
図28:世界:燃料電池(ポータブル燃料電池(ポータブル)市場予測:販売金額(単位:百万米ドル)、2025年~2033年
図29:アジア太平洋:燃料電池市場:販売金額(単位:百万米ドル)、2019年および2024年
図30:アジア太平洋地域:燃料電池市場の予測:販売金額(単位:百万米ドル)、2025年~2033年
図31:北米:燃料電池市場:販売金額(単位:百万米ドル)、2019年および2024年
図32:北米:燃料電池市場予測燃料電池市場の予測:販売金額(単位:百万米ドル)、2025~2033年
図33:欧州:燃料電池市場:販売金額(単位:百万米ドル)、2019年および2024年
図34:欧州:燃料電池市場予測燃料電池市場の予測:販売金額(単位:百万米ドル)、2025年~2033年
図35:中東およびアフリカ:燃料電池市場:販売金額(単位:百万米ドル)、2019年および2024年
図36:中東およびアフリカ:燃料電池市場の予測:販売金額(単位:百万米ドル)、2025年~2033年
図37:ラテンアメリカ:燃料電池市場:販売金額(単位:百万米ドル)、2019年および2024年
図38:ラテンアメリカ:燃料電池市場の予測:販売金額(単位:百万米ドル)、2025年~2033年
図39:燃料電池の製造:詳細なプロセスフロー
[表一覧]
表1:世界の燃料電池市場:主要産業ハイライト、2024年・2033年
表2:世界の燃料電池市場の予測:タイプ別内訳(単位:百万米ドル)、2025年~2033年
表3:世界の燃料電池の世界市場予測:用途別構成比(単位:百万ドル)、2025-2033年
表4:世界の燃料電池の世界市場予測:地域別構成比(単位:百万米ドル)、2025-2033年
表5:燃料電池:原材料所要量
表6:世界の燃料電池の世界市場競争構造
表7:世界の燃料電池の世界市場主要プレーヤー
The global fuel cell market size reached USD 6.6 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 43.7 Billion by 2033, exhibiting a growth rate (CAGR) of 20.81% during 2025-2033. Asia Pacific currently dominates the market, holding a market share of over 56.6% in 2024. This dominance is driven by strong government support, investments in hydrogen infrastructure, and growing adoption across industries.
A fuel cell refers to an electrochemical cell that converts chemical potential energy into electrical energy. It consists of a cathode, anode, and electrolyte, which carries electrically charged particles from one electrode toward the other. It is primarily utilized as a backup power in commercial, industrial, and residential buildings and in remote or inaccessible areas. It is also used to power vehicles, including forklifts, automobiles, buses, trains, boats, motorcycles, and submarines. It offers higher efficiency, flexibility, longer operating time, enhanced reliability, and cost-effectiveness. As compared to traditional power generation methods, it produces electricity without combustion, resulting in lower greenhouse gas emissions and reduced pollution.
The widespread product utilization in the automotive industry to power the electric motor of buses, utility vehicles, and electric scooters due to their quick start and high-power densities is one of the key factors driving the market growth. In line with this, the increasing product demand to produce combined heat and power (CHP) in households and commercial spaces like hotels, hospitals, educational centers, and public buildings is acting as another growth-inducing factor. Apart from this, the rising demand for clean and sustainable energy sources, owing to the increasing focus on reducing carbon emissions and transitioning to sustainable energy solutions, is providing an impetus to the market growth. Furthermore, continuous research and development (R&D) efforts have led to significant advancements in technology, improving the performance, durability, and cost-effectiveness, which, in turn, is fostering the market growth. Other factors, including the implementation of favorable government initiatives to encourage the adoption and development of the latest technology, growing interest in hydrogen as an energy carrier, rapid industrialization, and rising awareness about the associated benefits, are presenting remunerative growth opportunities for the market.
Fuel Cell Market Trends/Drivers:
Significant growth in the automotive industry
Fuel cells are widely used in the automotive industry as a potential alternative to internal combustion engines (ICEs), offering several advantages such as zero emissions, higher efficiency, and quieter operation. They are also used in auxiliary power units (APUs) to provide electric power for vehicle accessories, such as air conditioning and heating in commercial trucks and buses. Moreover, the adoption of fuel cell electric vehicles (FCEVs) is favoring the market growth. These vehicles utilize hydrogen gas as the fuel source that can be produced from a variety of sources, including renewable energy through electrolysis, natural gas reforming, or other processes.
The rising demand for clean and sustainable energy sources
Growing concerns about climate change, air pollution, and the need to reduce greenhouse gas emissions have fueled the demand for cleaner energy alternatives. Fuel cells offer a low or zero-emission energy conversion technology, as they produce electricity through electrochemical reactions without combustion, which, in turn, is contributing to the market growth. Additionally, the widespread product utilization, as it assists in integrating intermittent renewable energy sources into the grid by efficiently converting stored hydrogen or other renewable fuels into electricity, is favoring the market growth. Besides this, the implementation of various supportive policies, government initiatives, and financial incentives to promote the adoption of clean energy technologies are providing an impetus to the market growth.
Extensive research and development (R&D) activities
The market is continuously evolving due to the extensive R&D activities leading to various innovations to enhance their performance, durability, and cost-effectiveness. Moreover, the launch of advanced modeling and simulation tools to improve the fundamental processes and optimize the designs is providing a thrust to the market growth. Apart from this, the utilization of improved materials and design techniques to increase the product durability and lifespan is acting as another growth-inducing factor. Furthermore, manufacturers are adopting computational fluid dynamics (CFD) modeling, multi-physics simulations, and control strategies for efficient and reliable operation, which is contributing to the market growth.
Fuel Cell Industry Segmentation:
IMARC Group provides an analysis of the key trends in each segment of the global fuel cell market report, along with forecasts at the global and regional levels from 2025-2033. Our report has categorized the market based on type and application.
Breakup by Type:
• Proton Exchange Membrane Fuel Cells (PEMFC)
• Solid Oxide Fuel Cells (SOFC)
• Molten Carbonate Fuel Cells (MCFC)
• Direct Methanol Fuel Cells (DMFC)
• Phosphoric Acid Fuel Cells (PAFC)
• Others
Proton exchange membrane fuel cells (PEMFC) dominate the market
The report has provided a detailed breakup and analysis of the market based on the type. This includes proton exchange membrane fuel cells (PEMFC), solid oxide fuel cells (SOFC), molten carbonate fuel cells (MCFC), direct methanol fuel cells (DMFC), phosphoric acid fuel cells (PAFC), and others. According to the report, proton exchange membrane fuel cells (PEMFC) represented the largest market segment.
Proton exchange membrane fuel cells (PEMFCs) are widely used in applications, such as automotive vehicles, to provide quick refueling times and operate in a wide range of environmental conditions, making them suitable for passenger cars, buses, and other forms of transportation. Moreover, PEMFCs are used in portable electronic devices, such as laptops, smartphones, tablets, and cameras, to offer longer runtime than batteries and can be rapidly refueled with hydrogen or methanol cartridges. Furthermore, PEMFC provides a reliable and sustainable power source for outdoor activities, emergency backup power, and remote locations, which, in turn, is positively influencing the market growth.
Breakup by Application:
• Stationary
• Transportation
• Portable
Stationary represents the leading segment
The report has provided a detailed breakup and analysis of the market based on the application. This includes stationary, transportation, and portable. According to the report, stationary represented the largest market segment.
Stationary systems are designed for stationary or non-mobile applications. They provide reliable and continuous power generation for residential, commercial, and industrial purposes. Additionally, stationary variants are used in industrial settings, such as manufacturing facilities, warehouses, and industrial parks, which is acting as another growth-inducing factor. Besides this, stationary variants offer several advantages, including high efficiency, low emissions, fuel flexibility, and modularity, making them suitable for a wide range of stationary applications, thus supporting the market growth.
Breakup by Region:
• Asia Pacific
• North America
• Europe
• Middle East and Africa
• Latin America
Asia Pacific exhibits a clear dominance in the market, accounting for the largest fuel cell market share
The report has also provided a comprehensive analysis of all the major regional markets, which include Asia Pacific, North America, Europe, Middle East and Africa, and Latin America.
The increasing energy demand, the need for clean and sustainable energy solutions, and government support for the adoption of the technology are some of the key factors driving the market growth in the Asia Pacific region. Apart from this, fuel cells are being used in backup power systems for critical infrastructure, including data centers and telecommunications facilities, which is providing a considerable boost to the market. Besides this, the widespread product utilization in distributed power generation systems and backup power applications, coupled with the development of hydrogen refueling stations, is favoring the market growth. Apart from this, continued investments and collaborations in research, development, and infrastructure development are expected to further propel the product use across various sectors in the region.
Competitive Landscape:
Several key market players are significantly investing in research and development (R&D) projects to enhance their performance, durability, and cost-effectiveness. In line with this, manufacturers are focusing on introducing new catalyst compositions to improve the overall performance. Moreover, the advent of novel applications, including transportation, stationary power, and portable power, is providing an impetus to the market growth. Apart from this, prominent players are developing advanced manufacturing processes and techniques that help lower the production costs of components and systems, which in turn, is supporting the market growth.
The report has provided a comprehensive analysis of the competitive landscape in the market. Detailed profiles of all major companies have also been provided. Some of the key players in the market include:
• Ballard Power Systems Inc.
• Bloom Energy Corporation
• Toshiba Fuel Cell Power Systems Corporation
• FuelCell Energy Inc
• Plug Power Inc
• Nuvera Fuel Cells Inc
• AFC Energy plc
• SFC Energy AG
• Mitsubishi Hitachi Power Systems, Ltd
• Panasonic Corporation
• Intelligent Energy Limited
• Doosan Fuel Cell America Inc.
Key Questions Answered in This Report
1.How big is the fuel cell market?
2.What is the future outlook of fuel cell market?
3.What are the key factors driving the fuel cell market?
4.Which region accounts for the largest fuel cell market share?
5.Which are the leading companies in the global fuel cell market?
