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Catalytic cracking of propane over impregnated mesoporous ZSM-5: A strategy to change product distribution by sequential modification

机译:浸渍介孔ZSM-5上丙烷催化裂化:通过顺序修饰改变产品分布的策略

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摘要

ZSM-5 was subjected to two different modifications, namely mesopore creation with 0.2 M NaOH and metal impregnation with 10 wt% of La or Cu, with particular emphasis on the sequence of these modifications. Alkali treatment of ZSM-5 led to extraction of silica and alumina, resulted in loss of strong acid sites, and enhanced accessibility. Furthermore, acidity could be regulated by impregnation with metals. High olefin selectivity (68%), optimal propylene to ethylene ratio (P/E = 1.20), and reasonable stability were obtained over a catalyst produced by a Desilication-Impregnation Sequence (DIS) (AT-10La-ZSM-5). Modification of ZSM-5 by reverse Impregnation-Desilication Sequence (IDS) decreased selectivity, considerably. The modification sequence thus appears to be a key factor in determining the product distribution, and we propose that it may provide a facile new method to control the reaction path. (C) 2017 Elsevier Inc. All rights reserved.
机译:ZSM-5经受两种不同的修饰,即含有0.2M NaOH的中孔凋亡和金属浸渍,具有10wt%的La或Cu,特别强调这些修饰的顺序。 ZSM-5的碱处理导致二氧化硅和氧化铝的提取,导致强酸位点丧失,并增强可接近性。 此外,可以通过用金属浸渍来调节酸度。 高烯烃选择性(68%),最佳丙烯与乙烯比(P / E = 1.20),并在通过脱气浸渍序列(DIS)产生的催化剂上获得合理的稳定性(AT-10LA-ZSM-5)。 通过反浸浸渍序列(IDS)改性ZSM-5(IDS)可显着降低选择性。 因此,修改序列似乎是确定产品分布的关键因素,并且我们提出它可以提供控制反应路径的容易的新方法。 (c)2017年Elsevier Inc.保留所有权利。

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