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Adsorption of gas mixtures in TSA adsorbers under various heat removal conditions

机译:在各种排热条件下,TSA吸附器中气体混合物的吸附

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The aim of this article is to highlight the behavior differences between an indirectly cooled temperature: swing adsorption (TSA) adsorber and other adsorbers classically studied in TSA systems (adiabatic, near-adiabatic and isothermal) during adsorption of a mixture of gases. For this purpose, a numerical model is presented and validated from experimental results.By means of this model, the temperature, gas molar fractions and adsorbed concentration profiles are drawn at different times. The various zones of the adsorption patterns are identified and compared. The influence of the feed and initial bed temperatures is discussed too. From these results, the advantages of indirectly cooled adsorbers are pointed out. A new criterion for the possibility of omitting the cooling step in TSA cycles, based on the bed cooling efficiency, is then proposed for the indirectly cooled adsorbers. (C) 2004 Elsevier Ltd. All rights reserved.
机译:本文的目的是强调间接冷却温度之间的行为差​​异:摇摆混合吸附(TSA)吸附器和在气体混合物吸附过程中在TSA系统(绝热,近绝热和等温)中经典研究的其他吸附器。为此,提出了一个数值模型并通过实验结果进行了验证。通过该模型,可以在不同时间绘制温度,气体摩尔分数和吸附浓度曲线。识别并比较吸附模式的各个区域。还讨论了进料和初始床温的影响。从这些结果,指出了间接冷却的吸附器的优点。然后,针对床层冷却效率,提出了一种新的标准,用于基于床冷却效率而省略TSA循环中冷却步骤的可能性。 (C)2004 Elsevier Ltd.保留所有权利。

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