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用于CO分离的聚(醚嵌段酰胺)共聚物膜的增强策略:综述

Enhancement strategies of poly(ether-block-amide) copolymer membranes for CO separation: A review.

作者信息

Kamal Setiawan Wahyu, Chiang Kung-Yuh

机构信息

Department of Agroindustrial Technology, Universitas Internasional Semen Indonesia, SIG Buiding Complex, Veteran Street, Gresik, East Java, 61122, Indonesia; Graduate Institute of Environmental Engineering, National Central University, No. 300, Chung-Da Road., Chung-Li District, Tao-Yuan City, 32001, Taiwan.

Graduate Institute of Environmental Engineering, National Central University, No. 300, Chung-Da Road., Chung-Li District, Tao-Yuan City, 32001, Taiwan.

出版信息

Chemosphere. 2023 Oct;338:139478. doi: 10.1016/j.chemosphere.2023.139478. Epub 2023 Jul 12.

Abstract

Poly(ether-block-amide) (Pebax) membranes have become the preferred CO separation membrane because of their excellent CO affinity and robust mechanical resistance. Nevertheless, their development must be considered to overcome the typical obstacles in polymeric membranes, including the perm-selectivity trade-off, plasticization, and physical aging. This article discusses the recent enhancement strategies as a guideline for designing and developing Pebax membranes. Five strategies were developed in the past few years to improve Pebax gas transport properties, including crosslinking, mobile carrier attachment, polymer blending, filler incorporation, and the hybrid technique. Among them, filler incorporation and the hybrid technique were most favorable for boosting CO/N and CO/CH separation performance with a trade-off-free profile. On the other hand, modified Pebax membranes must deal with two latent issues, mechanical strength loss, and perm-selectivity off-balance. Therefore, exploring novel materials with unique structures and surface properties will be promising for further research. In addition, seeking eco-friendly additives has become worthwhile for establishing Pebax membrane sustainable development for gas separation.

摘要

聚(醚嵌段酰胺)(Pebax)膜因其出色的一氧化碳亲和力和强大的机械抗性,已成为首选的一氧化碳分离膜。然而,其发展必须考虑克服聚合物膜中的典型障碍,包括渗透选择性权衡、增塑和物理老化。本文讨论了近期的增强策略,作为设计和开发Pebax膜的指导方针。在过去几年中开发了五种策略来改善Pebax气体传输性能,包括交联、移动载体附着、聚合物共混、填料掺入和混合技术。其中,填料掺入和混合技术最有利于在无权衡的情况下提高一氧化碳/氮气和一氧化碳/甲烷的分离性能。另一方面,改性Pebax膜必须处理两个潜在问题,即机械强度损失和渗透选择性失衡。因此,探索具有独特结构和表面性质的新型材料将为进一步研究带来希望。此外,寻找环保型添加剂对于建立Pebax膜用于气体分离的可持续发展已变得很有价值。

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