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Titlebook: Comprehensive Treatise of Electrochemistry; Electrochemical Proc J. O’M. Bockris,Brian E. Conway,Ralph E. White Book 1981 Springer Science+

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书目名称Comprehensive Treatise of Electrochemistry
副标题Electrochemical Proc
编辑J. O’M. Bockris,Brian E. Conway,Ralph E. White
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丛书名称Comprehensive Treatise of Electrochemistry
图书封面Titlebook: Comprehensive Treatise of Electrochemistry; Electrochemical Proc J. O’M. Bockris,Brian E. Conway,Ralph E. White Book 1981 Springer Science+
描述It is now time for a comprehensive treatise to look at the whole field of electrochemistry. The present treatise was conceived in 1974, and the earliest invitations to authors for contributions were made in 1975. The completion of the early volumes has been delayed by various factors. There has been no attempt to make each article emphasize the most recent situation at the expense of an overall statement of the modern view. This treatise is not a collection of articles from Recent Advances in Electrochemistry or Modern Aspects of Electrochemistry. It is an attempt at making a mature statement about the present position in the vast area of what is best looked at as a new interdisciplinary field. Texas A & M University J. O‘M. Bockris University of Ottawa B. E. Conway Case Western Reserve University Ernest Yeager & M University Texas A Ralph E. White Preface to Volume 2 This volume brings together some dozen processes well known to the electro­ chemist and treats them according to their various degrees of importance. The production of hydrogen is one of the more important processes, particularly with respect to the prospects of a hydrogen economy. No one would doubt, however, that th
出版日期Book 1981
关键词Atom; Ion; Sorption; adsorption; chemical reaction; depolarizer; electrochemical engineering; electrochemis
版次1
doihttps://doi.org/10.1007/978-1-4684-3785-0
isbn_softcover978-1-4684-3787-4
isbn_ebook978-1-4684-3785-0
copyrightSpringer Science+Business Media New York 1981
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Theory of the Structure of lonomeric Membranes,es, and by electron microscopy.. The polar clusters of Nafion have also been investigated by infrared. and NMR. spectroscopies. Figure 2 shows a transmission electron micrograph of Nafion stained with silver ions. The clusters appear as dark dots.
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https://doi.org/10.1007/978-3-8350-9037-8ool materials to machine these “super alloys” (particularly in the aerospace industries) became practically impossible. Consequently, other methods of metal removal have been sought in more recent times.
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Anforderungsermittlung und Methodenwahl,ch the walls of the tank are usually used (cf. Figure 1), current flow through the system causes electrochemical reactions at the phase boundary substrate-bath, leading to electrocoagulation of the paint.
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https://doi.org/10.1007/978-3-8350-9037-8 components, pulping the ore particles with water, and then selectively rendering hydrophobic the surface of the mineral of interest. A stream of air bubbles is then passed through the pulp; the bubbles attach to and levitate the hydrophobic particles, which collect in a froth layer which flows over the weir of the flotation cell.
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Electrochemical Machining,ool materials to machine these “super alloys” (particularly in the aerospace industries) became practically impossible. Consequently, other methods of metal removal have been sought in more recent times.
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Mineral Flotation, components, pulping the ore particles with water, and then selectively rendering hydrophobic the surface of the mineral of interest. A stream of air bubbles is then passed through the pulp; the bubbles attach to and levitate the hydrophobic particles, which collect in a froth layer which flows over the weir of the flotation cell.
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https://doi.org/10.1007/978-3-8350-9037-8l of the world’s copper production (~8,000,000 metric tons/year) is electrorefined, constituting by far the largest electrolytic refining industry. Much smaller, but also important, are the electrolytic refining industries producing lead, nickel, silver, and other minor metals.
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