Microbial fuel cells (MFCs) are widely recognized as a viable technology for producing energy and removing toxic pollutants from wastewater. This reference text covers the electrochemical performance of MFCs, the basic mechanisms, operating factors, step-by-step synthesis, materials required for hig
Electrochemical Processes in Fuel Cells
β Scribed by Manfred W. Breiter (auth.)
- Publisher
- Springer-Verlag Berlin Heidelberg
- Year
- 1969
- Tongue
- English
- Leaves
- 287
- Series
- Anorganische und allgemeine Chemie in Einzeldarstellungen 9
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
The necessity for a better understanding of the basic processes that determine the operation of fuel cells became evident during the develΒ opment of practical units in the last three decades. The search for efficient electrocatalysts in low-temperature fuel cells intensified the general study of the nature and the role of the electrode material. ReΒ search on the complex mechanisms of the anodic oxidation of different fuels and of the reduction of molecular oxygen on solid electrodes was stimulated, and the strong influence of adsorbed species on the electrode reaction in question was investigated. Suitable electrolytes had to be found for the high-temperature fuel cells. The use of electrodes with large internal surface lead to the development of models of porous electrode. structures and to the mathematical analysis of the operation of these models under certain conditions. While the chapters I to III introduce the reader to the general field offuel cells, the progress made in the understanding of the basic problems in the electrochemistry of fuel cells since the end of the second world war is reviewed in chapters IV to XVI of this monograph. In contrast, the technological aspects necessary for the development of practical units are not covered here. The open literature published as books or as papers in scientific journals has been considered up to the time of the writing of the final draft of the specific chapter, at least till the end of 1967.
β¦ Table of Contents
Front Matter....Pages I-XI
Introduction....Pages 1-5
General Aspects....Pages 6-12
Mass Transport Processes....Pages 13-18
Kinetics of Electrode Reactions on Homogeneous Surfaces and Influence of Electrode Material....Pages 19-41
Electrode Reactions on Heterogeneous Surfaces....Pages 42-47
Characterization of the Surface of Platinum Metals and Platinum Metal Alloys by Hydrogen Adsorption and Comparison of the Results with other Techniques....Pages 48-77
Anodic Oxidation of Molecular Hydrogen at Low Temperatures....Pages 78-90
Oxygen Layers on Different Materials and Inhibition of Fuel Oxidations....Pages 91-111
Adsorption of Carbonaceous Species on Platinum Metals....Pages 112-146
Anodic Oxidation of Fuels at Low Temperatures....Pages 147-184
The Oxygen Electrode at Low Temperatures....Pages 185-210
Corrosion of Electrodes at Low Temperatures....Pages 211-216
Processes in Fuel Cells with Molten Carbonate Electrolytes....Pages 217-229
Processes in Fuel Cells with Solid Electrolytes....Pages 230-237
Properties of Porous Electrodes....Pages 238-253
Models of Porous Electrodes....Pages 254-270
Back Matter....Pages 271-275
β¦ Subjects
Chemistry/Food Science, general
π SIMILAR VOLUMES
Microbial fuel cells (MFCs) are widely recognized as a viable technology for producing energy and removing toxic pollutants from wastewater. This reference text covers the electrochemical performance of MFCs, the basic mechanisms, operating factors, step-by-step synthesis, materials required for hig
Microbial fuel cells (MFCs) are widely recognized as a viable technology for producing energy and removing toxic pollutants from wastewater. This reference text covers the electrochemical performance of MFCs, the basic mechanisms, operating factors, step-by-step synthesis, materials required for hig
<p><P>Fuel cells, as environmentally-friendly power generation devices, have been fully recognized by scientists, governments, and the public as a unique solution to several of the most important issues that we face today: diminishing supplies of fossil fuels, environmental pollution, and global war
<p><P>Fuel cells, as environmentally-friendly power generation devices, have been fully recognized by scientists, governments, and the public as a unique solution to several of the most important issues that we face today: diminishing supplies of fossil fuels, environmental pollution, and global war