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Methylcyclohexane dehydrogenation for hydrogen production via a bimodal catalytic membrane reactor

机译:甲基环己烷脱氢通过双峰催化膜反应器制氢

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The dehydrogenation of methylcyclohexane (MCH) to toluene (TOL) for hydrogen production was theoretically and experimentally investigated in a bimodal catalytic membrane reactor (CMR), that combined Pt/Al2O3 catalysts with a hydrogen-selective organosilica membrane prepared via sol-gel processing using bis(triethoxysilyl) ethane (BTESE). Effects of operating conditions on the membrane reactor performance were systematically investigated, and the experimental results were in good agreement with those calculated by a simulation model with a fitted catalyst loading. With H-2 extraction from the reaction stream to the permeate stream, MCH conversion at 250 degrees C was significantly increased beyond the equilibrium conversion of 0.44-0.86. Because of the high H-2 selectivity and permeance of BTESE-derived membranes, a H-2 flow with purity higher than 99.8% was obtained in the permeate stream, and the H-2 recovery ratio reached 0.99 in a pressurized reactor. A system that combined the CMR with a fixed-bed prereactor was proposed for MCH dehydrogenation. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 1628-1638, 2015
机译:在双峰催化膜反应器(CMR)中理论和实验研究了甲基环己烷(MCH)脱氢成甲苯(TOL)的过程,该反应器将Pt / Al2O3催化剂与通过溶胶-凝胶法制备的氢选择性有机硅膜结合使用双(三乙氧基甲硅烷基)乙烷(BTESE)。系统地研究了操作条件对膜反应器性能的影响,并且实验结果与通过拟合催化剂负载的模拟模型计算得出的结果吻合良好。通过从反应物流向渗透物流萃取H-2,MCH在250摄氏度的转化率大大提高,超过了0.44-0.86的平衡转化率。由于BTESE衍生的膜具有很高的H-2选择性和渗透性,因此在渗透物流中可获得纯度高于99.8%的H-2流,并且在加压反应器中H-2的回收率达到0.99。提出了将CMR与固定床预反应器相结合的系统用于MCH脱氢的方法。 (c)2015年美国化学工程师学会AIChE J,61:1628-1638,2015

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