Development of a test station for research on fuel cell components and materials (1996)
- Authors:
- USP affiliated authors: GONZALEZ, ERNESTO RAFAEL - IQSC ; PAGANIN, VALDECIR ANTONIO - IQSC ; TICIANELLI, EDSON ANTONIO - IQSC
- School: IQSC
- Subject: QUÍMICA
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Hydrogen Energy Progress, 11. Proceedings
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ABNT
PAGANIN, V A et al. Development of a test station for research on fuel cell components and materials. Hydrogen Energy Progress, 11. Proceedings. Tradução . Sttutgart: Dechema, 1996. . . Acesso em: 11 ago. 2022. -
APA
Paganin, V. A., Freire, T. J. P., Ticianelli, E. A., & Gonzalez, E. R. (1996). Development of a test station for research on fuel cell components and materials. In Hydrogen Energy Progress, 11. Proceedings. Sttutgart: Dechema. -
NLM
Paganin VA, Freire TJP, Ticianelli EA, Gonzalez ER. Development of a test station for research on fuel cell components and materials. In: Hydrogen Energy Progress, 11. Proceedings. Sttutgart: Dechema; 1996. [citado 2022 ago. 11 ] -
Vancouver
Paganin VA, Freire TJP, Ticianelli EA, Gonzalez ER. Development of a test station for research on fuel cell components and materials. In: Hydrogen Energy Progress, 11. Proceedings. Sttutgart: Dechema; 1996. [citado 2022 ago. 11 ] - Co tolerance on modified gas diffusion electrodes with ruthenium-based filtering layers
- Performance tests of a multicell, low catalyst loading, 100W PEM fuel cell stack
- An improved method for the preparation of dispersed catalysts
- Effect of membrane thickness on the characteristics of a PEM fuel cell
- Resposta de células a combustível com membrana polimérica após impregnação nafion com ácido fosfotunguistico
- Effect of water transport in a PEFC at low temperatures operating with dry hydrogen
- Development of small polymer electrolyte fuel cell stacks
- Development and electrochemical studies of gas diffusion electrodes for polymer electrolyte fuel cells
- Oxidação de hidrogênio/CO e metanol sobre eletrocatalisadores de Pt, Ru e Mo
- Studies of CO tolerance on modified gas diffusion electrodes containing ruthenium dispersed on carbon
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