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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Enhanced removal and recovery of binary mixture of n-butyl acetate and p-xylene by temperature swing-Vacuum pressure swing hybrid adsorption process
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Enhanced removal and recovery of binary mixture of n-butyl acetate and p-xylene by temperature swing-Vacuum pressure swing hybrid adsorption process

机译:通过温度摆动真空向上摆动杂交吸附过程增强了正丁酯和对二甲苯的二元混合物的去除和回收

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摘要

The adsorption and desorption behaviors of two polar-nonpolar typical VOCs (n-butyl acetate and p-xylene) on activated carbon have been investigated by a temperature swing-vacuum pressure swing adsorption (TS-VSA) hybrid process. This hybrid process allows the maximal concentration enrichment (desorbed concentration to feed concentration ratio) of n-butyl acetate (BAC) and p-xylene (PX) to increase from 9.6 to 22.7 and 9.0 to 18.6, respectively. This enrichment could not only significantly improve the desorption efficiency of the total adsorbed VOC mixture (over 30 %) compared with those of single TSA (Temperature swing adsorption) or VSA (vacuum pressure swing adsorption), but also reduce the desorption time and energy consumption. Based on the thermodynamic adsorption properties of n-butyl acetate and p-xylene, the optimized desorption conditions are determined to be at 65 degrees C, 7.0 kPa and 0.85 L/min of stripping gas. The recycling tests further show that the activated carbon could stably run for the removal and recovery of VOCs using this hybrid process with over 85 % of adsorption capacity being kept. This test suggests that the TS-VSA hybrid process would be promising process for the engineering removal and recovery of VOCs (single component or mixtures) using activated carbons or other adsorbents. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过温度摆动 - 真空压力回转吸附(TS-VSA)杂化方法研究了两种极性非极性典型VOC(乙酸叔丁酯和对二甲苯)的吸附和解吸行为。该杂化过程允许乙酸正丁酯(BAC)和对二甲苯(PX)的最大浓度富集(解吸浓度为进料浓度),分别从9.6〜22.7和9.0至18.6增加。与单个TSA(温度波动吸附)或VSA(真空压力波动吸附)相比,这种富集不能显着提高总吸附VOC混合物(超过30%)的解吸效率(超过30%),而且还降低了解吸时间和能量消耗。基于乙酸正丁酯和对二甲苯的热力学吸附性质,测定优化的解吸条件为65℃,7.0kPa和0.85L / min的汽提气体。再循环试验进一步表明,使用该杂合过程可以稳定地稳定地运行,用于去除和回收VOCs,其具有超过85%的吸附容量。该测试表明,使用活性炭或其他吸附剂,TS-VSA混合过程是工程去除和恢复VOC(单一组分或混合物)的有望。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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