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Proton Conducting Membrane Fuel Cells III

Proton Conducting Membrane Fuel Cells III
Author: M. Murthy
Publisher: The Electrochemical Society
Total Pages: 562
Release: 2005
Genre: Science
ISBN: 9781566774550

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"This volume contains papers presented at the 3rd Symposium on Proton Conducting Membrane Fuel Cells, which took place at the Salt Lake City ECS meeting in the fall of 2002."--p. iii.


Proton Conducting Membrane Fuel Cells IV

Proton Conducting Membrane Fuel Cells IV
Author:
Publisher: The Electrochemical Society
Total Pages: 800
Release: 2006
Genre: Fuel cells
ISBN: 9781566774345

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Proton Conducting Membrane Fuel Cells II

Proton Conducting Membrane Fuel Cells II
Author: Shimshon Gottesfeld
Publisher: The Electrochemical Society
Total Pages: 524
Release: 1999
Genre: Science
ISBN: 9781566772211

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Proton Conducting Membrane Fuel Cells II

Proton Conducting Membrane Fuel Cells II
Author: Shimshon Gottesfeld
Publisher: The Electrochemical Society
Total Pages: 524
Release: 1999
Genre: Science
ISBN: 9781566772211

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Proton Conductors

Proton Conductors
Author: Philippe Colomban
Publisher: Cambridge University Press
Total Pages: 618
Release: 1992-09-25
Genre: Science
ISBN: 9780521383172

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This book gives a comprehensive review of proton conductors, including theory, techniques, the materials themselves and applications.


Proton Exchange Membrane Fuel Cells 6

Proton Exchange Membrane Fuel Cells 6
Author: Thomas Francis Fuller
Publisher: The Electrochemical Society
Total Pages: 1385
Release: 2006
Genre: Ion-permeable membranes
ISBN: 1566775019

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The symposium was devoted to all aspects of research development and engineering of proton exchange membrane fuel cells. Three subareas were covered: materials and electrode processes, fuel cell systems, and durability.


Polymer Membranes for Fuel Cells

Polymer Membranes for Fuel Cells
Author: Javaid Zaidi
Publisher: Springer Science & Business Media
Total Pages: 439
Release: 2010-07-15
Genre: Science
ISBN: 0387735321

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From the late-1960’s, perfluorosulfonic acid (PFSAs) ionomers have dominated the PEM fuel cell industry as the membrane material of choice. The “gold standard’ amongst the many variations that exist today has been, and to a great extent still is, DuPont’s Nafion® family of materials. However, there is significant concern in the industry that these materials will not meet the cost, performance, and durability requirementsnecessary to drive commercialization in key market segments – es- cially automotive. Indeed, Honda has already put fuel cell vehicles in the hands of real end users that have home-grown fuel cell stack technology incorporating hydrocarbon-based ionomers. “Polymer Membranes in Fuel Cells” takes an in-depth look at the new chem- tries and membrane technologies that have been developed over the years to address the concerns associated with the materials currently in use. Unlike the PFSAs, which were originally developed for the chlor-alkali industry, the more recent hydrocarbon and composite materials have been developed to meet the specific requirements of PEM Fuel Cells. Having said this, most of the work has been based on derivatives of known polymers, such as poly(ether-ether ketones), to ensure that the critical requirement of low cost is met. More aggressive operational requi- ments have also spurred the development on new materials; for example, the need for operation at higher temperature under low relative humidity has spawned the creation of a plethora of new polymers with potential application in PEM Fuel Cells.


Fuel Cells I

Fuel Cells I
Author: Günther G. Scherer
Publisher: Springer
Total Pages: 270
Release: 2010-11-13
Genre: Technology & Engineering
ISBN: 9783642089145

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The concept to utilize an ion-conducting polymer membrane as a solid po- mer electrolyte offers several advantages regarding the design and operation of an electrochemical cell, as outlined in Volume 215, Chapter 1 (L. Gubler, G.G. Scherer). Essentially, the solvent and/or transport medium, e.g., H O, 2 + for the mobile ionic species, e.g., H for a cation exchange membrane, is taken up by and con?ned into the nano-dimensional morphology of the i- containingdomainsofthepolymer.Asaconsequence, aphaseseparationinto a hydrophilic ion-containing solvent phase and a hydrophobic polymer ba- bone phase establishes. Because of the narrow solid electrolyte gap in these cells, low ohmic losses reducing the overall cell voltage can be achieved, even at highcurrent densities. This concept was applied to fuel cell technology at a very early stage; h- ever, performance and reliability of the cells were low due to the dissatisfying membrane properties at that time. The development of per?uoro sulfonate and carboxylate-type membranes, in particular for the chlor-alkali process, directly fostered the further development of proton-conducting membranes and, as a consequence, also the progress in this type of fuel cell technology (polymer electrolyte fuel cell, PEFC).


High Temperature Polymer Electrolyte Membrane Fuel Cells

High Temperature Polymer Electrolyte Membrane Fuel Cells
Author: Qingfeng Li
Publisher: Springer
Total Pages: 561
Release: 2015-10-15
Genre: Technology & Engineering
ISBN: 3319170821

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This book is a comprehensive review of high-temperature polymer electrolyte membrane fuel cells (PEMFCs). PEMFCs are the preferred fuel cells for a variety of applications such as automobiles, cogeneration of heat and power units, emergency power and portable electronics. The first 5 chapters of the book describe rationalization and illustration of approaches to high temperature PEM systems. Chapters 6 - 13 are devoted to fabrication, optimization and characterization of phosphoric acid-doped polybenzimidazole membranes, the very first electrolyte system that has demonstrated the concept of and motivated extensive research activity in the field. The last 11 chapters summarize the state-of-the-art of technological development of high temperature-PEMFCs based on acid doped PBI membranes including catalysts, electrodes, MEAs, bipolar plates, modelling, stacking, diagnostics and applications.