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Détail de l'auteur
Auteur Mostafa Ghasemi
Documents disponibles écrits par cet auteur
Affiner la recherche Interroger des sources externesApplication of Carbon Nanostructure Materials in Microbial Fuel Cell / Mostafa Ghasemi
Titre : Application of Carbon Nanostructure Materials in Microbial Fuel Cell : carbon nano structure electrode and Carbon nanocomposite PEM as proper alternatives of Pt and Nafion 117 in MFCs Type de document : texte imprimé Auteurs : Mostafa Ghasemi, Auteur Editeur : Saarbücken , Deutschland/Germany : Lap Lambert Academic Publishing Année de publication : 2014 Importance : 177 p. Présentation : couv. ill. en coul., ill. Format : 22,8 cm. ISBN/ISSN/EAN : 978-3-659-61576-4 Langues : Anglais (eng) Index. décimale : 21-03 Le pétrole Résumé : In this book application of carbon nanostructure materials as the cathode electrode and good nanocomposite proton exchange membrane in microbial fuel cell was discussed. As the main obstacle of commercialization of microbial fuel cell is high price of Pt as the most common cathode catalyst which covers about 50% of the whole capital cost of the system beside proton exchange membrane which is mostly Nafion 117 that near 40 % of the capital cost of the microbial fuel cell. This book is offering some new cathode catalyst (Activated carbon nanofiber) and also Nafion/Activated carbon nanofiber as the novel proton exchange membrane to be proper alternatives for Pt and Nafion 117 and also a big stepping stone for operating more commercial microbial fuel cell process. In this book also performance of this new found cathode catalyst and proton exchange membrane was compared with traditional system which is working with Pt and Nafion 117. The last part of the book also is new suggestions for continuing this work for reaching to a more commercial microbial fuel cell which have high potential for using in real scales. Note de contenu : Contents
Chapter 1 Introduction
Chapter 2 Literature review
Chapter 3 Methodology
Chapter 4 Nanocomposite electrode analysis
Chapter 5 Carbon nanocomposite proton exchange menbrane
Chapter 6 Optimization of the performance of MFC by carbon nanostructure electrode and carbon nanocomposites PEM
Chapter 7 Conclusions and future work recommendations
Reference
AppendixApplication of Carbon Nanostructure Materials in Microbial Fuel Cell : carbon nano structure electrode and Carbon nanocomposite PEM as proper alternatives of Pt and Nafion 117 in MFCs [texte imprimé] / Mostafa Ghasemi, Auteur . - Saarbücken , Deutschland/Germany : Lap Lambert Academic Publishing, 2014 . - 177 p. : couv. ill. en coul., ill. ; 22,8 cm.
ISBN : 978-3-659-61576-4
Langues : Anglais (eng)
Index. décimale : 21-03 Le pétrole Résumé : In this book application of carbon nanostructure materials as the cathode electrode and good nanocomposite proton exchange membrane in microbial fuel cell was discussed. As the main obstacle of commercialization of microbial fuel cell is high price of Pt as the most common cathode catalyst which covers about 50% of the whole capital cost of the system beside proton exchange membrane which is mostly Nafion 117 that near 40 % of the capital cost of the microbial fuel cell. This book is offering some new cathode catalyst (Activated carbon nanofiber) and also Nafion/Activated carbon nanofiber as the novel proton exchange membrane to be proper alternatives for Pt and Nafion 117 and also a big stepping stone for operating more commercial microbial fuel cell process. In this book also performance of this new found cathode catalyst and proton exchange membrane was compared with traditional system which is working with Pt and Nafion 117. The last part of the book also is new suggestions for continuing this work for reaching to a more commercial microbial fuel cell which have high potential for using in real scales. Note de contenu : Contents
Chapter 1 Introduction
Chapter 2 Literature review
Chapter 3 Methodology
Chapter 4 Nanocomposite electrode analysis
Chapter 5 Carbon nanocomposite proton exchange menbrane
Chapter 6 Optimization of the performance of MFC by carbon nanostructure electrode and carbon nanocomposites PEM
Chapter 7 Conclusions and future work recommendations
Reference
AppendixExemplaires
Code-barres Cote Support Localisation Section Disponibilité N.Inventaire 3604 21-03-05 Livre Bibliothèque de Génie Electrique- USTO Documentaires Exclu du prêt 3604



