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从核电站废气中回收氙:通过DD3R沸石膜进行气体渗透的分子模拟

Xe Recovery from Nuclear Power Plants Off-Gas Streams: Molecular Simulations of Gas Permeation through DD3R Zeolite Membrane.

作者信息

Bashmmakh Bandar J, Wang Xiaoyu, Jameson Cynthia J, Murad Sohail

机构信息

Department of Chemical and Biological Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.

Separation Science Group, Argonne National Laboratory, Lemont, IL 60439, USA.

出版信息

Membranes (Basel). 2023 Aug 30;13(9):768. doi: 10.3390/membranes13090768.

Abstract

Recent experimental work has shown zeolite membrane-based separation as a promising potential technology for Kr/Xe gas mixtures due to its much lower energy requirements in comparison to cryogenic distillation, the conventional separation method for such mixtures. Such a separation is also economically rewarding because Xe is in high demand, as a valuable product for many applications/processes. In this work, we have used Molecular Dynamics (MD) simulations to study the effects of different conditions, i.e., temperature, pressure, and gas feed composition, on Kr/Xe separation performance via DD3R zeolite membranes. We provide a comprehensive study of the permeation of the different gas species, density profiles, and diffusion coefficients. Molecular simulations show that if the feed is changed from pure Kr/Xe to an equimolar mixture, the Kr/Xe separation factor increases, which agrees with experiments. In addition, when Ar is introduced as a sweep gas, the adsorption of both Kr and Xe increases, while the permeation of pure Kr increases. A similar behavior is observed with equimolar mixtures of Kr/Xe with Ar as the sweep gas. High-separation Kr/Xe selectivity is observed at 50 atm and 425 K but with low total permeation rates. Changing pressure and temperature are found to have profound effects on optimizing the separation selectivity and the permeation throughput.

摘要

近期的实验工作表明,基于沸石膜的分离技术是一种很有潜力的用于氪/氙混合气体分离的技术,因为与传统的低温蒸馏分离方法相比,它所需的能量要低得多。这种分离在经济上也很可观,因为氙的需求量很大,是许多应用/过程中的宝贵产品。在这项工作中,我们使用分子动力学(MD)模拟来研究不同条件,即温度、压力和气体进料组成,对通过DD3R沸石膜进行氪/氙分离性能的影响。我们对不同气体物种的渗透、密度分布和扩散系数进行了全面研究。分子模拟表明,如果进料从纯氪/氙变为等摩尔混合物,氪/氙分离因子会增加,这与实验结果一致。此外,当引入氩气作为吹扫气时,氪和氙的吸附都会增加,而纯氪的渗透会增加。在以氩气作为吹扫气的氪/氙等摩尔混合物中也观察到类似的行为。在50个大气压和425K的条件下观察到了高分离的氪/氙选择性,但总渗透率较低。发现改变压力和温度对优化分离选择性和渗透通量有深远影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1196/10537119/880b8611094d/membranes-13-00768-g001.jpg

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