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Polymer Electrolyte Fuel Cell Durability

Polymer Electrolyte Fuel Cell Durability
Author: Felix N. Büchi
Publisher: Springer Science & Business Media
Total Pages: 489
Release: 2009-02-08
Genre: Science
ISBN: 038785536X

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This book covers a significant number of R&D projects, performed mostly after 2000, devoted to the understanding and prevention of performance degradation processes in polymer electrolyte fuel cells (PEFCs). The extent and severity of performance degradation processes in PEFCs were recognized rather gradually. Indeed, the recognition overlapped with a significant number of industrial dem- strations of fuel cell powered vehicles, which would suggest a degree of technology maturity beyond the resaolution of fundamental failure mechanisms. An intriguing question, therefore, is why has there been this apparent delay in addressing fun- mental performance stability requirements. The apparent answer is that testing of the power system under fully realistic operation conditions was one prerequisite for revealing the nature and extent of some key modes of PEFC stack failure. Such modes of failure were not exposed to a similar degree, or not at all, in earlier tests of PEFC stacks which were not performed under fully relevant conditions, parti- larly such tests which did not include multiple on–off and/or high power–low power cycles typical for transportation and mobile power applications of PEFCs. Long-term testing of PEFCs reported in the early 1990s by both Los Alamos National Laboratory and Ballard Power was performed under conditions of c- stant cell voltage, typically near the maximum power point of the PEFC.


Polymer Electrolyte Fuel Cells 17 (PEFC 17)

Polymer Electrolyte Fuel Cells 17 (PEFC 17)
Author: D. J. Jones
Publisher: The Electrochemical Society
Total Pages: 1165
Release: 2017
Genre: Fuel cells
ISBN: 1607688255

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Polymer Electrolyte Fuel Cells 14 (PEFC 14)

Polymer Electrolyte Fuel Cells 14 (PEFC 14)
Author: H. Gasteiger
Publisher: The Electrochemical Society
Total Pages: 1269
Release: 2014
Genre: Fuel cells
ISBN: 1607685396

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Polymer Electrolyte Fuel Cell Durability

Polymer Electrolyte Fuel Cell Durability
Author: Felix N. Büchi
Publisher: Springer
Total Pages: 510
Release: 2009-02-20
Genre: Science
ISBN: 9780387855349

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This book covers a significant number of R&D projects, performed mostly after 2000, devoted to the understanding and prevention of performance degradation processes in polymer electrolyte fuel cells (PEFCs). The extent and severity of performance degradation processes in PEFCs were recognized rather gradually. Indeed, the recognition overlapped with a significant number of industrial dem- strations of fuel cell powered vehicles, which would suggest a degree of technology maturity beyond the resaolution of fundamental failure mechanisms. An intriguing question, therefore, is why has there been this apparent delay in addressing fun- mental performance stability requirements. The apparent answer is that testing of the power system under fully realistic operation conditions was one prerequisite for revealing the nature and extent of some key modes of PEFC stack failure. Such modes of failure were not exposed to a similar degree, or not at all, in earlier tests of PEFC stacks which were not performed under fully relevant conditions, parti- larly such tests which did not include multiple on–off and/or high power–low power cycles typical for transportation and mobile power applications of PEFCs. Long-term testing of PEFCs reported in the early 1990s by both Los Alamos National Laboratory and Ballard Power was performed under conditions of c- stant cell voltage, typically near the maximum power point of the PEFC.


Polymer Electrolyte Fuel Cells

Polymer Electrolyte Fuel Cells
Author: Alejandro A. Franco
Publisher: CRC Press
Total Pages: 608
Release: 2016-04-19
Genre: Science
ISBN: 9814364401

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This book focuses on the recent research progress on the fundamental understanding of the materials degradation phenomena in PEFC, for automotive applications. On a multidisciplinary basis, through contributions of internationally recognized researchers in the field, this book provides a complete critical review on crucial scientific topics related


34th European Symposium on Computer Aided Process Engineering /15th International Symposium on Process Systems Engineering

34th European Symposium on Computer Aided Process Engineering /15th International Symposium on Process Systems Engineering
Author: Flavio Manenti
Publisher: Elsevier
Total Pages: 3634
Release: 2024-06-28
Genre: Technology & Engineering
ISBN: 0443288259

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The 34th European Symposium on Computer Aided Process Engineering / 15th International Symposium on Process Systems Engineering, contains the papers presented at the 34th European Symposium on Computer Aided Process Engineering / 15th International Symposium on Process Systems Engineering joint event. It is a valuable resource for chemical engineers, chemical process engineers, researchers in industry and academia, students, and consultants for chemical industries. Presents findings and discussions from the 34th European Symposium on Computer Aided Process Engineering / 15th International Symposium on Process Systems Engineering joint event


Polymer Electrolyte Fuel Cell Degradation

Polymer Electrolyte Fuel Cell Degradation
Author: Matthew M. Mench
Publisher: Academic Press
Total Pages: 474
Release: 2012
Genre: Technology & Engineering
ISBN: 0123869366

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For full market implementation of PEM fuel cells to become a reality, two main limiting technical issues must be overcome- cost and durability. This cutting-edge volume directly addresses the state-of-the-art advances in durability within every fuel cell stack component. [...] chapters on durability in the individual fuel cell components -- membranes, electrodes, diffusion media, and bipolar plates -- highlight specific degradation modes and mitigation strategies. The book also includes chapters which synthesize the component-related failure modes to examine experimental diagnostics, computational modeling, and laboratory protocol"--Back cover.