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Entropy effects during sorption of alkanes in zeolites

机译:沸石吸附烷烃过程中的熵效应

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摘要

Recent developments in Configurational-Bias Monte Carlo (CBMC) techniques allow the accurate calculation of the sorption isotherms for alkanes, and their mixtures, in various zeolites. The CBMC simulations give new insights into subtle entropy effects affecting mixture adsorption. Three types of entropy effects can be distinguished. (1) Size entropy effects favour the component with the smaller number of C atoms because the smaller molecule finds it easier to fill in the 'gaps' within the zeolite matrix at high molecular loadings. (2) Configurational entropy effects come into play for mixtures of alkanes that differ in the degree of branching. For a mixture of linear and branched alkanes with the same number of C atoms, configurational entropy effects favour the linear isomer because such molecules 'pack' more efficiently within, say, the intersecting channel topology of MFI zeolite. (3) Length entropy effects comes into force for sorption of linear and branched alkanes within the cylindrical channels of say AFI and MOR zeolites; here the double branched alkane has the shortest length and can be packed more efficiently within the channels. We demonstrate that CBMC simulations allow the efficient screening of zeolite structures for a given separation duty and aid the development of novel separation processes exploiting entropy effects.
机译:Configuration-Bias Monte Carlo(CBMC)技术的最新发展使得可以准确计算各种沸石中烷烃及其混合物的吸附等温线。 CBMC模拟为影响混合物吸附的细微熵效应提供了新见解。可以区分三种熵效应。 (1)尺寸熵效应有利于C原子数较少的组分,因为较小的分子发现在高分子负载下更容易填充沸石基质内的“空隙”。 (2)组态熵效应对于支化程度不同的烷烃混合物起作用。对于具有相同C原子数的直链和支链烷烃的混合物,构型熵效应有利于直链异构体,因为此类分子在MFI沸石的相交通道拓扑内更有效地“堆积”。 (3)长度熵效应开始作用,例如在AFI和MOR沸石的圆柱形通道内吸附线性和支链烷烃;此处,双支链烷烃的长度最短,可以在通道内更有效地堆积。我们证明了CBMC模拟可以为给定的分离任务有效地筛选沸石结构,并帮助开发利用熵效应的新型分离方法。

著录项

  • 来源
    《Chemical Society Reviews》 |2002年第3期|p.185-194|共10页
  • 作者单位

    Department of Chemical Engineering, University of Amsterdam, Nieuwe Achtergracht 166, 1018 WV Amsterdam, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 00:19:52

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