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An investigation of the reaction dynamics of the catalytic oxidation of carbon monoxide and methanol on platinum.

机译:铂上一氧化碳和甲醇催化氧化反应动力学的研究。

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An investigation of the catalytic oxidation of carbon monoxide and methanol in a gaseous flow on a polycrystalline platinum surface was conducted utilizing infrared diode laser absorption spectroscopy to measure the internal energy of the nascent carbon dioxide and mass spectrometry to monitor the stoichiometry. The results indicate that carbon dioxide generated from the catalytic oxidation of carbon monoxide can arise from two different reaction pathways and the carbon dioxide generated from the catalytic oxidation of methanol can arise from three, two of which are identical to the pathways found in carbon monoxide oxidation. Which of these carbon dioxide producing pathways is favored during the catalytic oxidation is independent of the total reactant flow but dependent on the temperature of the platinum surface and on oxygen to fuel ratio of the introduced reactants.
机译:利用红外二极管激光吸收光谱法测量新生二氧化碳的内能,并用质谱法监测化学计量,研究了多晶铂表面上气流中一氧化碳和甲醇的催化氧化作用。结果表明,一氧化碳催化氧化产生的二氧化碳可能来自两个不同的反应路径,甲醇催化氧化产生的二氧化碳可能来自三个不同的反应路径,其中两个与一氧化碳氧化中发现的路径相同。在催化氧化过程中,哪种二氧化碳产生途径是有利的,它与总反应物流量无关,但取决于铂表面的温度以及所引入反应物的氧/燃料比。

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