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Kinetics of Reaction between Dimethyl Sulfide and Hydrogen in Black Liquor Gasification Gas with ZnO Catalyst

机译:ZnO催化黑液气化气中二甲硫与氢反应的动力学

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摘要

Black liquor gasification gas contains a small amount of dimethyl sulfide, which needs to be removed before the gasification gas combusting in the gas turbine in black liquor integrated gasification combined cycle (BLIGCC). A desulphurization method has been carried experimentaly in the conditions of high temperature and ZnO catalyst, where dimethyl sulfide and hydrogen reacted to produce methane and hydrogen sulfide, then the hydrogen sulfide was absorbed with alkali solution. The current investigation was carried out to find the kinetics of reaction between dimethyl sulfide and hydrogen in black liquor gasification gas with ZnO catalyst. The reaction was studied in a pipe reactor at various temperatures and concentrations of dimethyl sulfide and hydrogen. The reaction rate was evaluated by analyzing the consumption of dimethyl sulfide and then the rate law was established. The reaction has been found 0.963 and 1.098 order with respect to dimethyl sulfide and hydrogen, respectively and the activation energy was 31737.19 J mol with frequency factor 16747.32.
机译:黑液气化气包含少量的二甲基硫醚,需要在黑液集成气化联合循环(BLIGCC)中将气化气在燃气轮机中燃烧之前除去。在高温和ZnO催化剂的条件下,已经进行了脱硫方法的实验,在该条件下,二甲基硫醚与氢气反应生成甲烷和硫化氢,然后用碱溶液吸收硫化氢。进行了当前的研究,以发现在二氧化硫与二氧化硫之间的反应动力学的黑液气化气中的ZnO催化剂。在管式反应器中在各种温度和二甲基硫醚和氢气浓度下研究了该反应。通过分析二甲基硫的消耗量评估反应速率,然后建立速率规律。发现该反应相对于二甲基硫和氢分别为0.963和1.098级,并且活化能为31737.19J mol,频率因子为16747.32。

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