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Effect of H2 in the synthesis of COS using liquid sulfur and CO or CO2 as reactants

机译:H 2 在液态硫和CO或CO 2 作为反应物合成COS中的作用

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The synthesis of COS from CO, CO2 and liquid sulfur in the presence and absence of hydrogen was explored. The reaction of H2 with liquid sulfur produced H2S and polysulfanes, which increase the reactivity of liquid sulfur and provide alternative complementary reaction routes for the formation of COS. The reaction from CO2 proceeds by forming CO as intermediate. Elevated pressure favors formation of COS from both carbon oxides due to the increasing residence time and the saturation of gases in the liquid. Above 350 °C, the solubility of H2S in sulfur and the hydrogenation of COS limit the conversion of CO. The approach provides a highly efficient method for the preparation of COS under mild reaction conditions, without using a catalyst or water adsorbents.
机译:探索了在有氢和无氢条件下由CO,CO 2 和液态硫合成COS的方法。 H 2 与液态硫的反应产生了H 2 S和多硫烷,这增加了液态硫的反应性,并为COS的形成提供了互补的替代反应路线。 CO 2 中的CO形成中间体为CO。由于增加的停留时间和液体中气体的饱和,升高的压力有利于由两种碳氧化物形成COS。高于350°C,H 2 S在硫中的溶解度和COS的加氢限制了CO的转化。该方法为在温和的反应条件下无需使用COS制备COS提供了一种高效的方法。催化剂或水吸附剂。

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