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首页> 外文期刊>Journal of natural gas science and engineering >CO2 and CH4 gas permeation study via zeolitic imidazolate framework (ZIF)-8 membrane
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CO2 and CH4 gas permeation study via zeolitic imidazolate framework (ZIF)-8 membrane

机译:通过沸石咪唑盐骨架(ZIF)-8膜研究CO2和CH4气体渗透

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In the present work, the effects of CO2 feed composition (15%-90%), pressure difference (100 kPa -700 kPa) and temperature (303 K-343 K) on the separation of CO2 from CH4 via ZIF-8 membrane were investigated. The membrane was synthesized through a simple, feasible and reproducible solvent evaporation seeding method coupled with microwave-assisted secondary solvothermal growth. Subsequently, the membrane was characterized by using scanning electron microscopy. The results showed that, for single gas permeation, CO2 permeances remained constant while CH4 permeances increased slightly with the increasing pressure differences at temperature of 303 K. Besides, CO2 permeances decreased while CH4 permeances increased slightly with the increase in temperature at pressure difference of 100 kPa. For binary gas separation, maximum CO2/CH4 separation factor of 5.07 and CO2 permeance of 6.595 x 10(-8) mol m(-2) S-1 Pa-1 were obtained at CO2 feed composition of 15%, pressure difference of 100 kPa and temperature of 303 K. Besides, CO2 fluxes approached constant value with the increasing CO2 partial pressure differences at CO2 feed composition of 15%, which was mainly attributed to the competitive adsorption between CO2 and CH4. On the other hand, CH4 fluxes increased with increasing CH4 partial pressure differences even at higher CO2 composition in the feed, owing to its adsorption capacity and gas transport pathway via membrane intercrystalline pores. (C) 2016 Elsevier B.V. All rights reserved.
机译:在目前的工作中,CO2进料组成(15%-90%),压差(100 kPa -700 kPa)和温度(303 K-343 K)对通过ZIF-8膜从CH4分离CO2的影响是调查。该膜是通过简单,可行且可重现的溶剂蒸发接种方法与微波辅助二次溶剂热生长相结合而合成的。随后,通过使用扫描电子显微镜对膜进行表征。结果表明,对于单一气体渗透,随着303 K温度差的增加,CO2渗透率保持恒​​定,而CH4渗透率则略有增加。另外,在温度差为100时,CO2渗透率下降而CH4渗透率随温度升高而略有增加。千帕对于二元气体分离,在CO2进料组成为15%,压差为100时,获得的最大CO2 / CH4分离系数为5.07,CO2渗透率为6.595 x 10(-8)mol m(-2)S-1 Pa-1 kPa和温度为303K。此外,在CO2进料组成中CO2分压差增加15%时,CO2通量接近恒定值,这主要归因于CO2和CH4之间的竞争性吸附。另一方面,即使在进料中较高的CO2组成下,CH4通量也随着CH4分压差的增加而增加,这归因于其吸附能力和通过膜间晶孔的气体传输途径。 (C)2016 Elsevier B.V.保留所有权利。

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