Recent Advances in High Temperature PEM Fuel Cells

Hydrogen and Fuel Cells Primers is a series focused on Energy applications. Its concise volumes present those coming into this broad and multidisciplinary field with the most recent advances in each of its particular topics. They bring together information that has thus far been scattered in many different sources under one single title, which makes them a useful reference for industry professionals, researchers and graduate students, especially those starting in a new topic of research. This volume, Recent Advances in High Temperature PEM Fuel Cells, provides an up-to-date progress of High Temperature Polymer Electrolyte Membrane Fuel Cells (HTPEMFCs), including three critical subjects for this type of fuel cells: Membrane Electrode Assembly (MEA) development, stack development and systems development. The MEA and stack development sections cover the recent advances in this area and highlight the areas in most need of improvement. The systems development section focuses on stationary systems, mainly Combined Heat and Power (CHP), based on HTPEMFCs. Finally the conclusions summarize the recent advances of HTPEMFCs in all these areas and provide some insights for future developments. Prof. Bruno G. Pollet, Series Editor Presents the most current knowledge in membrane electrode assembly, stack, and systems development for HTPEMFCs Highlights the areas that need improvement in electrode assembly and stack development Examines stationary high temperature PEMFC systems, including CHP

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  • Author : Sivakumar Pasupathi
  • Publisher : Academic Press
  • Pages : 86 pages
  • ISBN : 0128103868
  • Rating : 4/5 from 21 reviews
CLICK HERE TO GET THIS BOOKRecent Advances in High Temperature PEM Fuel Cells

Recent Advances in High-Temperature PEM Fuel Cells

Recent Advances in High-Temperature PEM Fuel Cells
  • Author : Sivakumar Pasupathi,Juan Carlos Calderon Gomez,Huaneng Su,Harikishan Reddy,Piotr Bujlo,Cordellia Sita
  • Publisher : Academic Press
  • Release : 13 September 2016
GET THIS BOOKRecent Advances in High-Temperature PEM Fuel Cells

Hydrogen and Fuel Cells Primers is a series focused on Energy applications. Its concise volumes present those coming into this broad and multidisciplinary field with the most recent advances in each of its particular topics. They bring together information that has thus far been scattered in many different sources under one single title, which makes them a useful reference for industry professionals, researchers and graduate students, especially those starting in a new topic of research. This volume, Recent Advances in

Fuel Cells

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  • Author : Klaus-Dieter Kreuer
  • Publisher : Springer Science & Business Media
  • Release : 14 December 2012
GET THIS BOOKFuel Cells

The expected end of the “oil age” will lead to increasing focus and reliance on alternative energy conversion devices, among which fuel cells have the potential to play an important role. Not only can phosphoric acid and solid oxide fuel cells already efficiently convert today’s fossil fuels, including methane, into electricity, but other types of fuel cells, such as polymer electrolyte membrane fuel cells, have the potential to become the cornerstones of a possible future hydrogen economy. Featuring 21 peer-reviewed

PEM Fuel Cell Testing and Diagnosis

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  • Author : Jiujun Zhang,Jifeng Wu,Huamin Zhang
  • Publisher : Newnes
  • Release : 22 January 2013
GET THIS BOOKPEM Fuel Cell Testing and Diagnosis

PEM Fuel Cell Testing and Diagnosis covers the recent advances in PEM (proton exchange membrane) fuel cell systems, focusing on instruments and techniques for testing and diagnosis, and the application of diagnostic techniques in practical tests and operation. This book is a unique source of electrochemical techniques for researchers, scientists and engineers working in the area of fuel cells. Proton exchange membrane fuel cells are currently considered the most promising clean energy-converting devices for stationary, transportation, and micro-power applications due

High Temperature Polymer Electrolyte Membrane Fuel Cells

High Temperature Polymer Electrolyte Membrane Fuel Cells
  • Author : Qingfeng Li,David Aili,Hans Aage Hjuler,Jens Oluf Jensen
  • Publisher : Springer
  • Release : 15 October 2015
GET THIS BOOKHigh Temperature Polymer Electrolyte Membrane Fuel Cells

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

Advances In Hydrogen Generation Technologies

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  • Author : Murat Eyvaz
  • Publisher : BoD – Books on Demand
  • Release : 22 August 2018
GET THIS BOOKAdvances In Hydrogen Generation Technologies

Among energy sources, hydrogen gas is clean and renewable and has the potential to solve the growing energy crisis in today's society because of its high-energy density and noncarbon fuel properties. It is also used for many potential applications in nonpolluting vehicles, fuel cells, home heating systems, and aircraft. In addition, using hydrogen as an energy carrier is a long-term option to reduce carbon dioxide emissions worldwide by obtaining high-value hydrocarbons through the hydrogenation of carbon dioxide. This book presents

3D Multiscale Modeling of High Temperature Pem Fuel Cell

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  • Author : Salomov Uktam
  • Publisher : LAP Lambert Academic Publishing
  • Release : 15 June 2015
GET THIS BOOK3D Multiscale Modeling of High Temperature Pem Fuel Cell

Fuel cells and hydrogen are two key components for building a competitive, secure, and sustainable clean energy economy, due to possibility to convert diverse fuels directly into electrical power without combustion and a carbon-free fuel that can be produced from renewable resources. However, to become competitive in a market, fuel cells should overcome the issues by improvements in durability and performance as well as reductions in manufacturing cost. Recent advances in fuel cell technology has been made by development of

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  • Author : Matthew M. Mench,Emin Caglan Kumbur,T. Nejat Veziroglu
  • Publisher : Academic Press
  • Release : 24 June 2021
GET THIS BOOKPolymer Electrolyte Fuel Cell Degradation

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

Sliding-Mode Control of PEM Fuel Cells

Sliding-Mode Control of PEM Fuel Cells
  • Author : Cristian Kunusch,Paul Puleston,Miguel Mayosky
  • Publisher : Springer Science & Business Media
  • Release : 15 January 2012
GET THIS BOOKSliding-Mode Control of PEM Fuel Cells

Sliding-mode Control of PEM Fuel Cells demonstrates the application of higher-order sliding-mode control to PEMFC dynamics showing the advantages of sliding modes. The book introduces the theory of fuel cells and sliding-mode control. It contextualises PEMFCs both in terms of their development and within the hydrogen economy and today’s energy production situation as a whole. It then discusses fuel-cell operation principles, the mathematical background of high-order sliding-mode control and to a feasibility study for the use of sliding modes

Perovskite Materials

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  • Author : Likun Pan,Guang Zhu
  • Publisher : BoD – Books on Demand
  • Release : 03 February 2016
GET THIS BOOKPerovskite Materials

The book summarizes the current state of the know-how in the field of perovskite materials: synthesis, characterization, properties, and applications. Most chapters include a review on the actual knowledge and cutting-edge research results. Thus, this book is an essential source of reference for scientists with research fields in energy, physics, chemistry and materials. It is also a suitable reading material for graduate students.

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  • Release : 29 October 2018
GET THIS BOOKFuel Cells and Hydrogen Production

The expected end of the “oil age” will lead to increasing focus and reliance on alternative energy conversion devices, among which fuel cells have the potential to play an important role. Not only can phosphoric acid and solid oxide fuel cells already efficiently convert today’s fossil fuels, including methane, into electricity, but other types of fuel cells, such as polymer electrolyte membrane fuel cells, have the potential to become the cornerstones of a possible future hydrogen economy. This handbook

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  • Author : Frano Barbir
  • Publisher : Academic Press
  • Release : 24 June 2021
GET THIS BOOKPem Fuel Cells

This new edition of Dr. Barbir's groundbreaking book still lays the groundwork for engineers, technicians and students better than any other resource, covering fundamentals of design, electrochemistry, heat and mass transport, as well as providing the context of system design and applications. Yet it now also provides invaluable information on the latest advances in modeling, diagnostics, materials, and components, along with an updated chapter on the evolving applications areas wherein PEM cells are being deployed."--pub. desc.

Advanced Electrocatalysts for Low-Temperature Fuel Cells

Advanced Electrocatalysts for Low-Temperature Fuel Cells
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  • Publisher : Springer
  • Release : 09 October 2018
GET THIS BOOKAdvanced Electrocatalysts for Low-Temperature Fuel Cells

This book introduces the reader to the state of the art in nanostructured anode and cathode electrocatalysts for low-temperature acid and alkaline fuel cells. It explores the electrocatalysis of anode (oxidation of organic molecules) and cathode (oxygen reduction) reactions. It also offers insights into metal-carbon interactions, correlating them with the catalytic activity of the electrochemical reactions. The book explores the electrocatalytic behaviour of materials based on noble metals and their alloys, as well as metal-metal oxides and metal-free nanostructures. It