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In situ characterisation techniques for low temperature fuel cells /

Polymer electrolyte membrane fuel cells (PEMFCs) and direct methanol fuel cells (DMFCs) technology are promising forms of low-temperature electrochemical power conversion technologies that operate on hydrogen and methanol respectively. Featuring high electrical efficiency and low operational emissio...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Hartnig, Christoph, Roth, Christina
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cambridge : Woodhead Pub., �2012.
Colección:Woodhead Publishing in energy ; no. 31.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a In situ characterisation techniques for low temperature fuel cells /  |c edited by Christoph Hartnig and Christina Roth. 
260 |a Cambridge :  |b Woodhead Pub.,  |c �2012. 
300 |a 1 online resource (xx, 496 pages, 4 unnumbered leaves of plates) :  |b illustrations. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
490 1 |a Woodhead Publishing series in energy,  |x 2044-9364 ;  |v no. 31 
490 0 |a Polymer electrolyte membrane and direct methanol fuel cell technology ;  |v v. 2 
504 |a Includes bibliographical references and index. 
505 0 |a pt. 1. Advanced characterization techniques for polymer electrolyte membrance and direct methanol fuel cells -- pt. 2. Characterization of water and fuel management in polymer electrolyte membrance and direct methanol fuel cells -- pt. 3. Locally resolved methods for polymer electrolyte membrane and direct methanol fuel cells characterization. 
520 |a Polymer electrolyte membrane fuel cells (PEMFCs) and direct methanol fuel cells (DMFCs) technology are promising forms of low-temperature electrochemical power conversion technologies that operate on hydrogen and methanol respectively. Featuring high electrical efficiency and low operational emissions, they have attracted intense worldwide commercialization research and development efforts. These R & D efforts include a major drive towards improving materials performance, fuel cell operation and durability. In situ characterization is essential to improving performance and extending operational lifetime through providing information necessary to understand how fuel cell materials perform under operational loads. This two volume set reviews the fundamentals, performance, and in situ characterization of PEMFCs and DMFCs. Volume 2 details in situ characterization, including experimental and innovative techniques, used to understand fuel cell operational issues and materials performance. Part I reviews enhanced techniques for characterization of catalyst activities and processes, such as X-ray absorption and scattering, advanced microscopy and electrochemical mass spectrometry. Part II reviews characterization techniques for water and fuel management, including neutron radiography and tomography, magnetic resonance imaging and Raman spectroscopy. Finally, Part III focuses on locally resolved characterization methods, from transient techniques and electrochemical microscopy, to laser-optical methods and synchrotron radiography. With its international team of expert contributors, Polymer electrolyte membrane and direct methanol fuel cell technology Volumes 1 & 2 will be an invaluable reference for low temperature fuel cell designers and manufacturers, as well as materials science and electrochemistry researchers and academics. Polymer electrolyte membrane and direct methanol fuel cell technology Volumes 1 & 2 is an invaluable reference for low temperature fuel cell designers and manufacturers, as well as materials science and electrochemistry researchers and academics. Details in situ characterisation of polymer electrolyte membrane fuel cells (PEMFCs) and direct methanol fuel cells (DMFCs), including the experimental and innovative techniques used to understand fuel cell operational issues and materials performanceExamines enhanced techniques for characterisation of catalyst activities and processes, such as X-ray absorption and scattering, advanced microscopy and electrochemical mass spectrometryReviews characterisation techniques for water and fuel management, including neutron radiography and tomography, and comprehensively covers locally resolved characterisation methods, from transient techniques to laser-optical methods. 
650 0 |a Proton exchange membrane fuel cells. 
650 0 |a Fuel cells. 
650 0 |a Methanol as fuel. 
650 6 |a Piles �a combustible �a membrane �echangeuse de protons.  |0 (CaQQLa)000259557 
650 6 |a M�ethanol (Combustible)  |0 (CaQQLa)201-0117189 
650 7 |a TECHNOLOGY & ENGINEERING  |x Mechanical.  |2 bisacsh 
650 7 |a Fuel cells  |2 fast  |0 (OCoLC)fst00935856 
650 7 |a Methanol as fuel  |2 fast  |0 (OCoLC)fst01018601 
650 7 |a Proton exchange membrane fuel cells  |2 fast  |0 (OCoLC)fst01743352 
700 1 |a Hartnig, Christoph. 
700 1 |a Roth, Christina. 
776 0 8 |i Print version:  |t In situ characterisation techniques for low temperature fuel cells.  |d Cambridge : Woodhead Pub., �2012  |w (DLC) 2011945946 
830 0 |a Woodhead Publishing in energy ;  |v no. 31. 
856 4 0 |u https://sciencedirect.uam.elogim.com/science/book/9781845697747  |z Texto completo