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Kinetic study of decomposition of H2S and CH4 for H2 production using detailed mechanism

机译:使用详细机制对H2生产分解H2S和CH4的动力学研究

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Hydrogen energy has been the subject of increased interest for its high energy density and clean combustion characteristics. Hydrogen sulfide, or its mixture with methane, is considered to be hydrogen-rich fuel and H2 production can be expected from the thermal decomposition process. This paper presented a detailed kinetic mechanism for describing the chemical process during decomposition of H2S-CH4 mixture under dilution condition, with purpose of predicting the H2 production and conversion of II2S and CH4 accurately. Effects of temperature and initial H2S/CH4 ratio on H2 production were experimentally studied using tubular furnace reactor and kinetically analyzed by CHEMKIN software. Conversion rates of H2S and CH4 are promoted by increased temperature, leading to higher production of H2, CS2 but reduced S2 formation. Compared to H2S, CH4 maintains stable at temperature lower than 1000 °C. At temperature higher than 1050 °C, CH4 can react with H2S and S2 to form H2 and CS2 with observable rate. Adjusting the initial H2S-CH4 ratio to be 2 and possibly high temperature are positive factors for maximizing the H2 production efficiency from H2S-CH4 mixture.
机译:氢能源一直以其高能量密度和清洁燃烧特性日益关注的话题。硫化氢,或它与甲烷的混合物,被认为是富氢燃料和H2生产可以从该热分解过程可以预期的。此,提出了一种详细的动力学机制用于稀释条件下H 2 S CH 4混合物的分解过程中描述的化学方法,用准确预测II2S和CH4的H2生产和转化的目的。使用管状炉反应器进行了实验研究对H2生产温度和初始H2S / CH4比效应和由CHEMKIN软件动力学分析。硫化氢和甲烷的转化率是通过增加温度提升,从而导致更高的生产H2,CS2,但降低S2形成。相比H2S,CH4在温度保持稳定低于1000℃。在温度超过1050℃时,CH4可与H 2 S和S2反应以形成H 2和CS2与可观察到的速率。调节初始H2S-CH4比为2和可能的高温是用于最大化从H 2 S CH 4混合物的H 2生产效率的积极因素。

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