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首页> 外文期刊>Chromatographia >Conversions of Carbon Monoxide Oxidation Over Pt-Rh Alloy Catalysts Calculated by a New Gas Chromatographic Technique
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Conversions of Carbon Monoxide Oxidation Over Pt-Rh Alloy Catalysts Calculated by a New Gas Chromatographic Technique

机译:一种新型气相色谱技术计算的Pt-Rh合金催化剂上一氧化碳的氧化转化率

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Catalytic fractional conversions of carbon monoxide to carbon dioxide over Pt-Rh alloy catalysts in the presence of excess oxygen, under steady-state or non steady-state conditions, as well as corresponding rate constants for the CO oxidation reaction were measured by using the reversed-flow gas chromatographic technique. From the variation of the conversions with temperature, maximum values of conversions were found, which depend on the catalyst nature (Pt content), while from the variation of the rate constants with temperature, activation energies for the CO oxidation reaction were determined, which also depend on the catalyst Pt content. The results suggest a synergism between Pt and Rh in the Pt-Rh bimetallic catalysts in accordance with previous works, showing that reversed-flow gas chromatography can be used with simplicity and accuracy for the kinetic study of the CO oxidation reaction, which is of technological importance for the control of air pollution.
机译:在Pt-Rh合金催化剂上,在过量氧的存在下,在稳态或非稳态条件下,一氧化碳到二氧化碳的催化分馏转化率以及相应的CO氧化反应速率常数均通过使用反向测定气相色谱技术。从转化率随温度的变化,发现转化率的最大值,其取决于催化剂的性质(铂含量),而从速率常数随温度的变化,确定CO氧化反应的活化能,这也可以确定取决于催化剂的Pt含量。结果表明,Pt-Rh双金属催化剂中Pt和Rh之间具有协同作用,表明逆流气相色谱可以简单,准确地用于CO氧化反应的动力学研究,这是技术性的。对于控制空气污染的重要性。

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