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Titlebook: Electrochemical Processes in Fuel Cells; Manfred W. Breiter Book 1969 Springer-Verlag New York Inc. 1969 Ion.Oxidation.chemistry.electroca

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楼主: Eschew
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Kinetics of Electrode Reactions on Homogeneous Surfaces and Influence of Electrode Material,A review of the effect of the nature of the electrode on the kinetics of electrode reactions was given by . [1] recently. The different types of electrode reactions may be grouped between two limiting cases:
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Processes in Fuel Cells with Molten Carbonate Electrolytes,Fuel cells with molten carbonate electrolytes have received attention [1–10] in recent years for two reasons:
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https://doi.org/10.1007/978-4-431-54532-3s play an important role in our understanding of electrocatalysis. The techniques for their study, their properties and coverage of the surface under different conditions are discussed in this chapter. The role of adsorbed species in the oxidation of various fuels is dealt with in chapter X.
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https://doi.org/10.1007/978-3-642-54163-6ls, is the subject of this chapter. Most oxidation studies were made on these metals because the efficiency of other electrocatalysts is too low. The mechanism for the oxidation of carbon monoxide, mixtures of hydrogen and carbon monoxide, formic acid, methanol, higher alcohols, hydrocarbons, and hydrazine is discussed in separate sections.
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https://doi.org/10.1057/97802300012132], and . [3]. Since the problem of electrocatalysis is not serious [4,5] at temperatures around 1000°C, the main emphasis has been on the improvement of solid electrolytes and on the development of suitable cell designs in recent years.
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Characterization of the Surface of Platinum Metals and Platinum Metal Alloys by Hydrogen Adsorptiona simple way. Since the platinum metals and their alloys play an important role in electrocatalysis, the essential aspects of hydrogen adsorption under different experimental conditions are discussed subsequently.
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Adsorption of Carbonaceous Species on Platinum Metals,s play an important role in our understanding of electrocatalysis. The techniques for their study, their properties and coverage of the surface under different conditions are discussed in this chapter. The role of adsorbed species in the oxidation of various fuels is dealt with in chapter X.
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Anodic Oxidation of Fuels at Low Temperatures,ls, is the subject of this chapter. Most oxidation studies were made on these metals because the efficiency of other electrocatalysts is too low. The mechanism for the oxidation of carbon monoxide, mixtures of hydrogen and carbon monoxide, formic acid, methanol, higher alcohols, hydrocarbons, and hydrazine is discussed in separate sections.
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