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Proton Exchange Membrane Fuel Cells Materials Properties And Performance Green Chemistry And Chemical Engineering 1st Edition David P Wilkinson

  • SKU: BELL-1296112
Proton Exchange Membrane Fuel Cells Materials Properties And Performance Green Chemistry And Chemical Engineering 1st Edition David P Wilkinson
$ 31.00 $ 45.00 (-31%)

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Proton Exchange Membrane Fuel Cells Materials Properties And Performance Green Chemistry And Chemical Engineering 1st Edition David P Wilkinson instant download after payment.

Publisher: CRC Press
File Extension: PDF
File size: 5.82 MB
Pages: 462
Author: David P. Wilkinson, Jiujun Zhang, Rob Hui, Jeffrey Fergus, Xianguo Li
ISBN: 9781439806647, 1439806640
Language: English
Year: 2009
Edition: 1

Product desciption

Proton Exchange Membrane Fuel Cells Materials Properties And Performance Green Chemistry And Chemical Engineering 1st Edition David P Wilkinson by David P. Wilkinson, Jiujun Zhang, Rob Hui, Jeffrey Fergus, Xianguo Li 9781439806647, 1439806640 instant download after payment.

A Detailed, Up-to-Date Treatment of Key Developments in PEMFC MaterialsThe potential to revolutionize the way we power our world

Because of its lower temperature and special polymer electrolyte membrane, the proton exchange membrane fuel cell (PEMFC) is well-suited for transportation, portable, and micro fuel cell applications. But the performance of these fuel cells critically depends on the materials used for the various cell components. Durability, water management, and reducing catalyst poisoning are important factors when selecting PEMFC materials.

Written by international PEMFC scientists and engineers from top-level organizations, Proton Exchange Membrane Fuel Cells : Materials Properties and Performance provides a single resource of information for understanding how to select and develop materials for improved PEMFC performance. The book focuses on the major components of the fuel cell unit, along with design and modeling aspects. It covers catalysts and catalyst layers, before discussing the key components of membranes, diffusion layers, and bipolar plates. The book also explores materials modeling for the PEMFC.

This volume assesses the current status of PEMFC fuel cell technology, research and development directions, and the scientific and engineering challenges facing the fuel cell community. It demonstrates how the production of a commercially viable PEMFC requires a compromise of materials with adequate properties, design interaction, and manufacturability.

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