DU Jinlong, ZHANG Fengxia, HU Jianhang, CAI Zhengda. Characteristics of CO/CO2 methanation hydromethanation reaction system at high temperature[J]. Journal of China Coal Society, 2021, 46(S1): 432-440. DOI: 10.13225/j.cnki.jccs.2020.0985
Citation: DU Jinlong, ZHANG Fengxia, HU Jianhang, CAI Zhengda. Characteristics of CO/CO2 methanation hydromethanation reaction system at high temperature[J]. Journal of China Coal Society, 2021, 46(S1): 432-440. DOI: 10.13225/j.cnki.jccs.2020.0985

Characteristics of CO/CO2 methanation hydromethanation reaction system at high temperature

  • The effects of reaction temperature and pressure on the equilibrium of CO2 and CO methanation reaction systems were studied during the methanation process of high-temperature coal gasification, and the reactant conversion rate, CH4 yield, and reaction were obtained.The equilibrium constant and the dynamics of the dynamic equation.Studies have shown that: within 900-1 200 ℃,the conversion rate of CO and CO2 and the yield of CH4 during their methanation alone decrease with increasing temperature and increase with increasing pressure.When the reaction conditions was that the pressure is 0.1 MPa and temperature is 900 ℃,the theoretical conversion rates of CO and CO2 in separate methanation reactions were 5.107% and 7.738%,the yield of CH4 were 9.741% and 7.099%,respectively.When the volume ratio of H2,CO and CO2 is 7∶1∶1,the theoretical conversion of CO2 and CO in CO and CO2 mixed methanation reactions.The rates were 81.062% and-80.620%,respectively, the yield of CH4 were 5.432%.When the reaction temperature rises to 1 200 ℃ and the pressure is 0.1 MPa, the theoretical conversion rates of methanized CO and CO2 alone were 0.449% and 0.390%,the yield of CH4 were 0.170% and 0.597%,respectively.The theoretical conversions of CO2 and CO were 88.791% and-88.791%,respectively, and the yield of CH4 were 0.205%.Finally, the kinetic equation expression of CO2 and CO methanation in the temperature range of 900-1 200 ℃ was obtained through calculated.The rationality of the kinetic equation was analyzed and verified by Aspen Plus.
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