EFFECT OF REACTION AND PERMEATION RATES ON THE PERFORMANCE OF A CATALYTIC MEMBRANE REACTOR FOR METHYLCYCLOHEXANE DEHYDROGENATION

被引:8
作者
ALI, JK
RIPPIN, DWT
机构
[1] CHEMICAL ENGINEERING DEPARTMENT, SWISS FEDERAL INSTITUTE OF TECHNOLOGY UNIVERSITÄTSTR. 6
关键词
PD-AG MEMBRANE; HYDROGEN PERMEATION; METHYLCYCLOHEXANE; PT-RE/ALUMINA;
D O I
10.1080/01496399408002204
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The effect of the relative rates of reaction and H-2 permeation through palladium-silver (Pd-Ag) membranes upon the performance of a catalytic membrane reactor (CMR) for methylcyclohexane dehydrogenation has been investigated. Mathematical models have been used to identify the conditions at which a membrane reactor gives yields of toluene (TOL) and H-2 significantly in excess of equilibrium values at throughputs of industrial interest. The simulation shows that a catalyst with no product TOL inhibition performs exceptionally well in a CMR, giving conversions considerably above the equilibrium values at favorable operating conditions. Using a membrane unit between two conventional packed-bed reactors to separate the H-2 ex-situ gives significant improvement in performance over the shell-and-tube type CMR, resulting in conversions substantially higher than equilibrium at 633 K, 1.5 MPa, and liquid hourly space velocities of 3-10 volume feed/h/catalyst volume.
引用
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页码:2475 / 2492
页数:18
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