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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Regeneration of a deactivated USY alkylation catalyst using supercritical isobutane
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Regeneration of a deactivated USY alkylation catalyst using supercritical isobutane

机译:使用超临界异丁烷再生失活的USY烷基化催化剂

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摘要

Off-line, in situ alkylation activity recovery from a completely deactivated solid acid catalyst was examined in a continuous-flow reaction system employing supercritical isobutane. A USY zeolite catalyst was initially deactivated during the liquid phase alkylation of butene with isobutane in a single-pass reactor and then varying amounts of alkylation activity were recovered by passing supercritical isobutane over the catalyst bed at variable reactivation conditions. Temperature, pressure and regeneration time were found to play important roles in the supercritical isobutane regeneration process when applied to a completely deactivated USY zeolite alkylation catalyst. Manipulation of the variables that influence solute solubility, diffusivity, surface desorption, hydride transfer rates, and coke aging, strongly influences regeneration effectiveness. (C) 2004 Elsevier B.V. All fights reserved.
机译:在采用超临界异丁烷的连续流反应系统中,研究了从完全失活的固体酸催化剂中脱机进行的原位烷基化活性的回收。 USY沸石催化剂最初是在单程反应器中用异丁烷进行丁烯液相烷基化的过程中失活的,然后通过在可变的再活化条件下使超临界异丁烷流经催化剂床层来回收不同数量的烷基化活性。发现温度,压力和再生时间在应用于完全失活的USY沸石烷基化催化剂时,在超临界异丁烷再生过程中起着重要作用。操纵影响溶质溶解度,扩散率,表面解吸,氢化物转移速率和焦炭老化的变量,会严重影响再生效率。 (C)2004 Elsevier B.V.版权所有。

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