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Highly efficient synthesis of cumene via benzene isopropylation over nano-sized beta zeolite in a submerged ceramic membrane reactor

机译:淹没式陶瓷膜反应器中纳米级β沸石上苯异丙基化高效合成异丙基苯

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A submerged ceramic membrane reactor was developed for the cumene production via liquid-phase isopropylation of benzene with isopropanol over beta zeolite catalyst, which realized the in-situ separation and reuse of nano-sized beta zeolite catalyst. Evaluation of the introduction of ceramic membranes with different pore sizes on the catalytic performance and filtration process was investigated. No considerable influence was observed in the catalytic performance as far as the benzene conversion and cumene selectivity are concerned, but the filtration rate was significantly affected by the membrane pore size. The reaction and filtration performance depended strongly on the operation conditions. Semi-continuous benzene isopropylation to cumene showed that the beta zeolite catalyst could maintain a benzene conversion at 2.8% and a cumene selectivity above 98.1%, and the ceramic membrane exhibited better filtration performance and excellent stability during the entire isopropylation process. The study provides new insights for the benzene isopropylation reaction. (C) 2016 Elsevier B.V. All rights reserved.
机译:开发了一种浸没式陶瓷膜反应器,用于通过异丙醇在β沸石催化剂上苯与异丙醇的液相异丙基化生产异丙苯,从而实现了纳米级β沸石催化剂的原位分离和再利用。研究了引入不同孔径的陶瓷膜对催化性能和过滤过程的评价。就苯的转化率和枯烯的选择性而言,在催化性能上没有观察到显着的影响,但过滤速度受膜孔径的影响很大。反应和过滤性能在很大程度上取决于操作条件。半连续苯异丙基化为异丙基苯表明,β沸石催化剂可将苯转化率维持在2.8%,枯烯选择性保持在98.1%以上,并且陶瓷膜在整个异丙基化过程中表现出更好的过滤性能和出色的稳定性。该研究为苯异丙基化反应提供了新的见解。 (C)2016 Elsevier B.V.保留所有权利。

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