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The mechanism of the catalytic oxidation of hydrogen sulfide: II. Kinetics and mechanism of hydrogen sulfide oxidation catalyzed by sulfur

机译:硫化氢的催化氧化机理:II。硫催化硫化氢氧化的动力学及机理

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摘要

The kinetics of the catalytic oxidation of hydrogen sulfide by molecular oxygen have been studied in the temperature range 20–250 °C. The primary reaction product is sulfur which may undergo further oxidation to SO2 at temperatures above 200 °C. From the kinetics of this autocatalytic reaction we derived an oxidation-reduction mechanism. The two rate influencing steps are the chemisorption of oxygen and the reaction between dissociatively chemisorbed H2S and chemisorbed oxygen. The high activation energy for the formation of SO2 (120 kJ mol−1) explains the high selectivity towards sulfur, although SO2 is thermodynamically the most favored product. At temperatures above 300 °C, where the formation of SO2 occurs readily, the SO2 may be an intermediate in the reaction of H2S with O2 leading to S and H2O.
机译:在20–250°C的温度范围内,已经研究了分子氧催化硫化氢的动力学。主要反应产物是硫,在高于200°C的温度下,硫可能进一步氧化成SO2。从这种自催化反应的动力学,我们得出了氧化还原机理。影响速率的两个步骤是氧气的化学吸附以及解离的化学吸附的H2S和化学吸附的氧气之间的反应。尽管SO2在热力学上是最受青睐的产物,但形成SO2的高活化能(120 kJ mol-1)解释了对硫的高选择性。在高于300°C的温度下,易于形成SO2,SO2可能是H2S与O2反应生成S和H2O的中间体。

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