乙醇
乙醇燃料
化学
选择性
天然气
合成气
化学工程
废物管理
有机化学
催化作用
工程类
作者
Yiming He,Weijie Fu,Zhenchen Tang,Shuilian Liu,Jian Chen,Qitong Zhong,Xing Tan,Ruiyan Sun,Chalachew Mebrahtu,Feng Zeng
标识
DOI:10.1080/00986445.2023.2240709
摘要
AbstractSynthesis of ethanol by CO2 hydrogenation presents an efficient way to convert CO2 into value-added fuels and chemicals. For practical applications, recycling unreacted tail gas as well as CO co-feeding plays a key role to enhance CO2 conversion to ethanol. Thus, it is of great significance to study the effects of recycling unreacted tail gas and CO co-feeding on the chemical equilibrium. Herein, we perform a thermodynamic study to analyze the hydrogenation of CO2 to ethanol using Aspen Plus. The effects of recycling tail gas and CO co-feeding on CO2 conversion and ethanol selectivity at different temperatures and pressures are investigated. Both the optimal recycle ratio and CO/(CO + CO2) ratio in the feed are found to enhance ethanol synthesis from CO2 hydrogenation.Keywords: CO co-feedingCO2 hydrogenationethanol synthesissimulationtail gas recycling Additional informationFundingThis work was supported by the National Natural Science Foundation of China under Grant 22208143; Nanjing Tech University under Grant 39801170; and the State Key Laboratory of Materials-Oriented Chemical Engineering under Grant 38901218.
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