1 Scope of the Report
1.1 Market Introduction
1.2 Years Considered
1.3 Research Objectives
1.4 Market Research Methodology
1.5 Research Process and Data Source
1.6 Economic Indicators
1.7 Currency Considered
1.8 Market Estimation Caveats
2 Executive Summary
2.1 World Market Overview
2.1.1 Global ePTFE Membrane for Fuel Cell Annual Sales 2018-2029
2.1.2 World Current & Future Analysis for ePTFE Membrane for Fuel Cell by Geographic Region, 2018, 2022 & 2029
2.1.3 World Current & Future Analysis for ePTFE Membrane for Fuel Cell by Country/Region, 2018, 2022 & 2029
2.2 ePTFE Membrane for Fuel Cell Segment by Type
2.2.1 0 – 10 nm
2.2.2 10 – 20 nm
2.3 ePTFE Membrane for Fuel Cell Sales by Type
2.3.1 Global ePTFE Membrane for Fuel Cell Sales Market Share by Type (2018-2023)
2.3.2 Global ePTFE Membrane for Fuel Cell Revenue and Market Share by Type (2018-2023)
2.3.3 Global ePTFE Membrane for Fuel Cell Sale Price by Type (2018-2023)
2.4 ePTFE Membrane for Fuel Cell Segment by Application
2.4.1 100 KW Below
2.4.2 100 KW to 500KW
2.4.3 500KW Above
2.5 ePTFE Membrane for Fuel Cell Sales by Application
2.5.1 Global ePTFE Membrane for Fuel Cell Sale Market Share by Application (2018-2023)
2.5.2 Global ePTFE Membrane for Fuel Cell Revenue and Market Share by Application (2018-2023)
2.5.3 Global ePTFE Membrane for Fuel Cell Sale Price by Application (2018-2023)
3 Global ePTFE Membrane for Fuel Cell by Company
3.1 Global ePTFE Membrane for Fuel Cell Breakdown Data by Company
3.1.1 Global ePTFE Membrane for Fuel Cell Annual Sales by Company (2018-2023)
3.1.2 Global ePTFE Membrane for Fuel Cell Sales Market Share by Company (2018-2023)
3.2 Global ePTFE Membrane for Fuel Cell Annual Revenue by Company (2018-2023)
3.2.1 Global ePTFE Membrane for Fuel Cell Revenue by Company (2018-2023)
3.2.2 Global ePTFE Membrane for Fuel Cell Revenue Market Share by Company (2018-2023)
3.3 Global ePTFE Membrane for Fuel Cell Sale Price by Company
3.4 Key Manufacturers ePTFE Membrane for Fuel Cell Producing Area Distribution, Sales Area, Product Type
3.4.1 Key Manufacturers ePTFE Membrane for Fuel Cell Product Location Distribution
3.4.2 Players ePTFE Membrane for Fuel Cell Products Offered
3.5 Market Concentration Rate Analysis
3.5.1 Competition Landscape Analysis
3.5.2 Concentration Ratio (CR3, CR5 and CR10) & (2018-2023)
3.6 New Products and Potential Entrants
3.7 Mergers & Acquisitions, Expansion
4 World Historic Review for ePTFE Membrane for Fuel Cell by Geographic Region
4.1 World Historic ePTFE Membrane for Fuel Cell Market Size by Geographic Region (2018-2023)
4.1.1 Global ePTFE Membrane for Fuel Cell Annual Sales by Geographic Region (2018-2023)
4.1.2 Global ePTFE Membrane for Fuel Cell Annual Revenue by Geographic Region (2018-2023)
4.2 World Historic ePTFE Membrane for Fuel Cell Market Size by Country/Region (2018-2023)
4.2.1 Global ePTFE Membrane for Fuel Cell Annual Sales by Country/Region (2018-2023)
4.2.2 Global ePTFE Membrane for Fuel Cell Annual Revenue by Country/Region (2018-2023)
4.3 Americas ePTFE Membrane for Fuel Cell Sales Growth
4.4 APAC ePTFE Membrane for Fuel Cell Sales Growth
4.5 Europe ePTFE Membrane for Fuel Cell Sales Growth
4.6 Middle East & Africa ePTFE Membrane for Fuel Cell Sales Growth
5 Americas
5.1 Americas ePTFE Membrane for Fuel Cell Sales by Country
5.1.1 Americas ePTFE Membrane for Fuel Cell Sales by Country (2018-2023)
5.1.2 Americas ePTFE Membrane for Fuel Cell Revenue by Country (2018-2023)
5.2 Americas ePTFE Membrane for Fuel Cell Sales by Type
5.3 Americas ePTFE Membrane for Fuel Cell Sales by Application
5.4 United States
5.5 Canada
5.6 Mexico
5.7 Brazil
6 APAC
6.1 APAC ePTFE Membrane for Fuel Cell Sales by Region
6.1.1 APAC ePTFE Membrane for Fuel Cell Sales by Region (2018-2023)
6.1.2 APAC ePTFE Membrane for Fuel Cell Revenue by Region (2018-2023)
6.2 APAC ePTFE Membrane for Fuel Cell Sales by Type
6.3 APAC ePTFE Membrane for Fuel Cell Sales by Application
6.4 China
6.5 Japan
6.6 South Korea
6.7 Southeast Asia
6.8 India
6.9 Australia
6.10 China Taiwan
7 Europe
7.1 Europe ePTFE Membrane for Fuel Cell by Country
7.1.1 Europe ePTFE Membrane for Fuel Cell Sales by Country (2018-2023)
7.1.2 Europe ePTFE Membrane for Fuel Cell Revenue by Country (2018-2023)
7.2 Europe ePTFE Membrane for Fuel Cell Sales by Type
7.3 Europe ePTFE Membrane for Fuel Cell Sales by Application
7.4 Germany
7.5 France
7.6 UK
7.7 Italy
7.8 Russia
8 Middle East & Africa
8.1 Middle East & Africa ePTFE Membrane for Fuel Cell by Country
8.1.1 Middle East & Africa ePTFE Membrane for Fuel Cell Sales by Country (2018-2023)
8.1.2 Middle East & Africa ePTFE Membrane for Fuel Cell Revenue by Country (2018-2023)
8.2 Middle East & Africa ePTFE Membrane for Fuel Cell Sales by Type
8.3 Middle East & Africa ePTFE Membrane for Fuel Cell Sales by Application
8.4 Egypt
8.5 South Africa
8.6 Israel
8.7 Turkey
8.8 GCC Countries
9 Market Drivers, Challenges and Trends
9.1 Market Drivers & Growth Opportunities
9.2 Market Challenges & Risks
9.3 Industry Trends
10 Manufacturing Cost Structure Analysis
10.1 Raw Material and Suppliers
10.2 Manufacturing Cost Structure Analysis of ePTFE Membrane for Fuel Cell
10.3 Manufacturing Process Analysis of ePTFE Membrane for Fuel Cell
10.4 Industry Chain Structure of ePTFE Membrane for Fuel Cell
11 Marketing, Distributors and Customer
11.1 Sales Channel
11.1.1 Direct Channels
11.1.2 Indirect Channels
11.2 ePTFE Membrane for Fuel Cell Distributors
11.3 ePTFE Membrane for Fuel Cell Customer
12 World Forecast Review for ePTFE Membrane for Fuel Cell by Geographic Region
12.1 Global ePTFE Membrane for Fuel Cell Market Size Forecast by Region
12.1.1 Global ePTFE Membrane for Fuel Cell Forecast by Region (2024-2029)
12.1.2 Global ePTFE Membrane for Fuel Cell Annual Revenue Forecast by Region (2024-2029)
12.2 Americas Forecast by Country
12.3 APAC Forecast by Region
12.4 Europe Forecast by Country
12.5 Middle East & Africa Forecast by Country
12.6 Global ePTFE Membrane for Fuel Cell Forecast by Type
12.7 Global ePTFE Membrane for Fuel Cell Forecast by Application
13 Key Players Analysis
13.1 Gore
13.1.1 Gore Company Information
13.1.2 Gore ePTFE Membrane for Fuel Cell Product Portfolios and Specifications
13.1.3 Gore ePTFE Membrane for Fuel Cell Sales, Revenue, Price and Gross Margin (2018-2023)
13.1.4 Gore Main Business Overview
13.1.5 Gore Latest Developments
13.2 Shandong Dongyue Future Hydrogen Energy
13.2.1 Shandong Dongyue Future Hydrogen Energy Company Information
13.2.2 Shandong Dongyue Future Hydrogen Energy ePTFE Membrane for Fuel Cell Product Portfolios and Specifications
13.2.3 Shandong Dongyue Future Hydrogen Energy ePTFE Membrane for Fuel Cell Sales, Revenue, Price and Gross Margin (2018-2023)
13.2.4 Shandong Dongyue Future Hydrogen Energy Main Business Overview
13.2.5 Shandong Dongyue Future Hydrogen Energy Latest Developments
13.3 Donaldson Filtration Solutions
13.3.1 Donaldson Filtration Solutions Company Information
13.3.2 Donaldson Filtration Solutions ePTFE Membrane for Fuel Cell Product Portfolios and Specifications
13.3.3 Donaldson Filtration Solutions ePTFE Membrane for Fuel Cell Sales, Revenue, Price and Gross Margin (2018-2023)
13.3.4 Donaldson Filtration Solutions Main Business Overview
13.3.5 Donaldson Filtration Solutions Latest Developments
14 Research Findings and Conclusion
※参考情報 燃料電池用ePTFE膜の概念は、先進的なエネルギー変換デバイスにおける重要な構成要素として、ますます注目を集めています。ePTFE(拡散ポリテトラフルオロエチレン)膜は、高い透過性と優れた化学的安定性を持つ特性を備えた材料であり、燃料電池の性能を向上させるために利用されています。 ePTFE膜はポリテトラフルオロエチレン(PTFE)の一種であり、特殊な製造プロセスにより三次元の多孔質構造を持つように加工されています。この構造により、膜はガス透過性を持ちながらも液体の通過を防ぐ特性を持っています。燃料電池の導電性を高めたり、水の管理を改善したりするために、ePTFE膜はサンドイッチ方式で他の材料と組み合わせて使用されることが多いです。 特徴として、ePTFE膜は非常に軽量で、耐腐食性や耐熱性にも優れています。また、広範な温度範囲で安定して機能するため、様々な環境条件においても使用可能です。さらに、ePTFEは非常に低い表面エネルギーを持ち、汚れが付きにくく、自己清浄機能を有しています。このため、燃料電池の性能劣化を防ぐ役割も果たします。 種類としては、ePTFE膜には異なる孔径や厚みのものがあり、用途に応じて選択されます。例えば、細かい孔径の膜は高い選択透過率を持ち、他のガスに対する分離機能が求められる場合に適しています。一方、大きな孔径の膜は流体の透過性が高く、水蒸気の排出を促進する場合に使用されます。また、ePTFE膜は補強材と組み合わせて使用されることが一般的で、強度や耐久性が求められる場面で効果を発揮します。 用途として、ePTFE膜は主に燃料電池、特に燃料電池自動車や portable fuel cell systems において重要な役割を果たします。燃料電池は水素と酸素を反応させて電気を生成するデバイスですが、効率よく化学反応を進行させるためには、適切な水管理が重要です。ePTFE膜はガスの場合は透過させつつ、液体の漏れを防ぎ、この水管理に寄与します。さらに、燃料電池の一部として利用される際には、さまざまな形状やサイズに設計されることが求められます。 また、燃料電池に関連する技術として、膜電極接合体(MEA)やイオン導電性ポリマー膜(PEM)などがあり、ePTFE膜はこれらの材料と密接に協力して作動します。MEAは、燃料電池の心臓部で、電解質膜の両側に電極が配置された構造をしています。ePTFE膜は、MEAの支持材として使用されることが多く、その性能を向上させる補助的な役割を果たします。特に、高電流密度での操作が求められる条件下でも、ePTFE膜の使用により安定した性能を維持することが可能です。 このように、燃料電池用ePTFE膜は、燃料電池システムの性能向上に大きく寄与する重要な要素です。今後も、持続可能なエネルギーへの移行が進む中で、ePTFE膜に関する研究開発はさらに進展し、より高性能で経済的な燃料電池技術の実現に向けた希望が寄せられています。エネルギー効率の向上、環境への負荷の軽減、そして持続可能な社会の構築のために、ePTFE膜は重要な役割を担っていると言えるでしょう。 |