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首页> 外文期刊>Adsorption >Highlights of non-equilibrium, non-isobaric, non-isothermal desorption of nitrogen from a LiX zeolite column by rapid pressure reduction and rapid purge by oxygen
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Highlights of non-equilibrium, non-isobaric, non-isothermal desorption of nitrogen from a LiX zeolite column by rapid pressure reduction and rapid purge by oxygen

机译:快速减压和氧气吹扫使LiX沸石塔中氮的非平衡,非等压,非等温解吸的亮点

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摘要

The effects of adsorption kinetics, column pressure drop, gas phase mass and heat dispersions, gas-solid heat transfer resistance, and adsorber adiabaticity on desorption of N2 from a LiX zeolite column by O2 purge as well as pressurization-depressurization of the column using pure N2 were recently studied using a numerical model of these processes [Chai et al. in Ind Eng Chem Res 50:8703, 2011, Chai et al. in Adsorption 18:87, 2012, Chai et al. in AIChE J 59:365 2013; Rama Rao et al. in Adsorption 2013]. The role of adsorbent particle size and column length to diameter ratio in determining the durations and efficiency of these processes were also investigated. These studies revealed several important limiting and optimum conditions for optimum operation of these processes which can be useful in design of a practical rapid pressure swing adsorption (RPSA) process for medical oxygen concentrator (MOC) application. The purpose of this short review article is to consolidate and re-emphasize these important results in a single article to be used as a guideline for design of a RPSA-MOC unit.
机译:吸附动力学,柱压降,气相质量和热分散,气固传热阻力以及吸附剂绝热性对通过O2吹扫从LiX沸石柱上解吸N2以及使用纯净柱进行加压-减压的影响最近使用这些过程的数值模型研究了N2 [Chai等。 Chai等人在Ind Eng Chem Res 50:8703,2011中发表。 Chai et al。在Adsorption 18:87,2012中。在AIChE J 59:365 2013中;拉玛饶等。在吸附2013]。还研究了吸附剂粒径和柱长/直径比在确定这些过程的持续时间和效率中的作用。这些研究揭示了这些方法的最佳操作的几个重要的限制条件和最佳条件,这些条件对于设计用于医用氧气浓缩器(MOC)的实用的快速变压吸附(RPSA)工艺非常有用。这篇简短评论文章的目的是在一篇文章中巩固和重新强调这些重要结果,以用作RPSA-MOC装置设计的指南。

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