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Microwave assisted catalytic reduction of sulfur dioxide with methane over MoS2 catalysts

机译:微波辅助催化还原二氧化硫与甲烷在mos2催化剂上

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摘要

The catalytic reduction of sulfur dioxide with methane to form carbon dioxide and sulfur has been studied over MoS2/Al2O3 catalysts. The reaction has been found to occur with microwave (2.45 GHz) heating at recorded temperatures as much as 200°C lower than those required when conventional heating was used. An activation energy of 117 kJ mol?1 has been calculated for the conventionally heated reaction, but an Arrhenius analysis of the data obtained with microwave heating was not possible, probably because of temperature variations in the catalyst bed. The existence of hot spots in the catalysts heated by microwave radiation has been verified by the detection of ?-alumina at a recorded temperature some 200°C lower than the temperature at which the ?- to ?-alumina phase transition is normally observed. Among four catalysts prepared in different ways, a mechanically mixed catalyst showed the highest conversion of SO2 and CH4 for microwave heating at a given temperature. Supported catalysts, sulfided either by conventional heating or under microwave conditions, showed little difference in the extent of SO2 and CH4 conversions. The highest conversions to carbon dioxide and sulfur, combined with low production of undesirable side products, was obtained when the molar ratio of SO2 to CH4 was equal to two, the stoichiometric ratio.
机译:已经研究了在MoS2 / Al2O3催化剂上用甲烷催化还原二氧化硫形成二氧化碳和硫的方法。已经发现该反应是在记录温度下以微波(2.45 GHz)加热发生的,该温度比使用常规加热时所需的温度低200°C。对于常规加热的反应,已经计算出了117kJ mol·1的活化能,但是可能由于催化剂床中的温度变化,不可能对通过微波加热获得的数据进行Arrhenius分析。通过在比通常观察到的α-到α-氧化铝相转变的温度低约200℃的记录温度下检测α-氧化铝,已经证实了通过微波辐射加热的催化剂中热点的存在。在以不同方式制备的四种催化剂中,机械混合催化剂在给定温度下的微波加热下显示出最高的SO2和CH4转化率。通过常规加热或在微波条件下硫化的负载型催化剂在SO2和CH4转化程度上几乎没有差异。当SO 2与CH 4的摩尔比等于二(化学计量比)时,可获得最高的向二氧化碳和硫的转化率,以及较低的不良副产物生成量。

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