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The mechanism of the catalytic oxidation of hydrogen sulfide *1: III. An electron spin resonance study of the sulfur catalyzed oxidation of hydrogen sulfide

机译:催化氧化硫化氢的机理* 1:III。硫催化氧化硫化氢的电子自旋共振研究

摘要

ESR experiments on the oxidation of hydrogen sulfide were performed in the temperature range 20–150 °C. Alumina, active carbon and molecular sieve zeolite 13X were investigated as catalysts. For zeolite 13X it was demonstrated that the reaction is autocatalytic and that sulfur radicals are the active sites for oxygen chemisorption. The intensity of the sulfur radical ESR signal, which is related to the degree of conversion of these radicals, by oxygen, fits in with an oxidation-reduction mechanism.ududThe sulfur-oxygen radical species, which appear when oxygen is admitted to sulfur radicals, are assigned to sulfur chains containing one or two oxygen atoms at the end of the chain. It is very likely that these sulfur-oxygen radicals are intermediates in the proposed mechanism. The formation of the byproduct SO2 from SxO2 · − at temperatures above 175 °C is also visible in the ESR spectrum.ududOn the basis of the experiments it is concluded that in the mechanism of H2S oxidation on active carbons, carbon radicals do not play an important role.
机译:在20–150°C的温度范围内进行了硫化氢氧化的ESR实验。研究了氧化铝,活性炭和分子筛沸石13X。对于13X沸石,已证明该反应是自催化的,硫自由基是氧化学吸附的活性位点。硫自由基的ESR信号强度与这些自由基通过氧气的转化程度有关,符合氧化还原机理。 ud ud硫氧自由基种类,当氧进入其中时会出现硫自由基被分配给在链末端含有一个或两个氧原子的硫链。这些硫-氧自由基很可能是所提出机理中的中间体。在ESR光谱中也可以看到在高于175°C的温度下由SxO2·−形成的副产物SO2。 ud ud根据实验得出的结论是,在活性炭上H2S氧化的机理中,碳自由基没有发挥重要作用。

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