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用于氪氙分离的离子交换 SAPO-34 膜:渗透性的控制和中空纤维膜的制备。

Ion-Exchanged SAPO-34 Membranes for Krypton-Xenon Separation: Control of Permeation Properties and Fabrication of Hollow Fiber Membranes.

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0100, United States.

Materials Science & Technology Division, Oak Ridge National Laboratory , Oak Ridge, Tennessee 37831, United States.

出版信息

ACS Appl Mater Interfaces. 2018 Feb 21;10(7):6361-6368. doi: 10.1021/acsami.7b18244. Epub 2018 Feb 12.

Abstract

Separation of radioisotope Kr from Xe is of importance in used nuclear fuel reprocessing. Membrane separation based on zeolite molecular sieves such as chabazite SAPO-34 is an attractive alternative to energy-intensive cryogenic distillation. We report the synthesis of SAPO-34 membranes with considerably enhanced performance via thickness reduction based upon control of a steam-assisted vapor-solid conversion technique followed by ion exchange with alkali metal cations. The reduction of membrane thickness leads to a large increase in Kr permeance from 7.5 to 26.3 gas permeation units (GPU) with ideal Kr/Xe selectivities >20 at 298 K. Cation-exchanged membranes show large (>50%) increases in selectivity at ambient or slight subambient conditions. The adsorption, diffusion, and permeation characteristics of ion-exchanged SAPO-34 materials and membranes are investigated in detail, with potassium-exchanged SAPO-34 membranes showing particularly attractive performance. We then demonstrate the fabrication of selective SAPO-34 membranes on α-alumina hollow fibers.

摘要

从乏核燃料后处理中分离放射性同位素氪和氙具有重要意义。基于沸石分子筛(如 SAPO-34)的膜分离是一种替代高能耗低温蒸馏的有吸引力的方法。我们通过控制蒸汽辅助汽-固转化技术并随后进行碱金属阳离子的离子交换,合成了具有显著增强性能的 SAPO-34 膜,实现了厚度的降低。膜厚度的降低导致 Kr 渗透率从 7.5 增加到 26.3 气体渗透单位(GPU),在 298 K 时理想的 Kr/Xe 选择性>20。在环境或稍低于环境的条件下,离子交换膜的选择性增加了 50%以上。详细研究了离子交换 SAPO-34 材料和膜的吸附、扩散和渗透特性,钾离子交换 SAPO-34 膜表现出特别有吸引力的性能。然后,我们在α-氧化铝中空纤维上演示了选择性 SAPO-34 膜的制备。

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