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首页> 外文期刊>Journal of industrial and engineering chemistry >Application of water vapor-permselective alumina-silica composite membrane in methanol synthesis process to enhance CO2 hydrogenation and catalyst life time
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Application of water vapor-permselective alumina-silica composite membrane in methanol synthesis process to enhance CO2 hydrogenation and catalyst life time

机译:水蒸气选择性渗透硅铝复合膜在甲醇合成过程中的应用以提高CO2加氢和催化剂寿命

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摘要

In this work a water vapor-permselective alumina-silica composite membrane reactor is proposed to overcome the thermodynamic equilibrium limitations and increasing catalyst activity. A steady state heterogeneous model is developed to simulate the proposed configuration. To verify accuracy of the considered model, simulation results of a methanol reactor is compared with the industrial plant data. The membrane reactor benefits are: higher carbon dioxide conversion, higher quality of outlet product, higher catalyst activity. Genetic algorithm is employed to optimize the process performance considering methanol production as the objective function. This configuration has enhanced the methanol yield about 7% compared with conventional reactor.
机译:在这项工作中,提出了水蒸气-选择性渗透的氧化铝-二氧化硅复合膜反应器,以克服热力学平衡限制和增加催化剂活性。开发了稳态异构模型来模拟所提出的配置。为了验证所考虑模型的准确性,将甲醇反应器的仿真结果与工厂数据进行了比较。膜反应器的优点是:更高的二氧化碳转化率,更高的出口产品质量,更高的催化剂活性。以甲醇生产为目标函数,采用遗传算法优化工艺性能。与常规反应器相比,该构造将甲醇产率提高了约7%。

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