不同用途的薄膜复合聚酰胺膜的渗透性和选择性评价

IF 24.1
Li Long, Chenyue Wu, Senlin Shao, Zhe Yang, Pulak Sarkar, Chuyang Y. Tang
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引用次数: 0

摘要

薄膜复合聚酰胺膜呈现出多种基于水的应用,例如去除有害污染物和从水和废水中分离宝贵资源。然而,它们的分离性能通常受到渗透-选择性权衡的限制。尽管与海水淡化相关的权衡已经很好地建立起来,但其他重要的基于膜的应用尚未得到充分的研究。在这里,我们根据渗透-水/溶质选择性和渗透-溶质/溶质选择性建立了各种性能图,这些图与去除或分馏有关,用于不同的分离应用。这将有助于弥合材料级膜性能和潜在应用系统级需求之间的差距。我们还建立了一个方便的框架来评估和基准测试各个领域的高性能膜,并提出了优化膜性能和/或系统性能的潜在策略,以提高膜应用的分离效率。这篇综述为从事膜技术的研究人员和工程师提供了有见地的知识和信息。本文建立了薄膜复合膜对不同溶质的去除和分离的一整套渗透-选择性关系,并为通过材料级和系统级优化来提高膜系统的性能提供了有价值的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of permeance and selectivity of thin-film composite polyamide membranes for diverse applications

Assessment of permeance and selectivity of thin-film composite polyamide membranes for diverse applications
Thin-film composite polyamide membranes present a diverse range of aqueous-based applications such as the removal of harmful contaminants and the fractionation of precious resources from water and wastewater. However, their separation performance is typically limited by the permeance–selectivity trade-off. Although the trade-offs related to desalination have been well established, other important membrane-based applications have not been adequately studied. Here we establish various performance plots in terms of permeance–water/solute selectivity and permeance–solute/solute selectivity with respect to the removal or fractionation for diverse separation applications. This will help to bridge the gap between material-level membrane performance and system-level demands for potential applications. We also establish a convenient framework for assessing and benchmarking high-performance membranes in various fields and suggest potential strategies for optimizing membrane properties and/or system performance, which could increase the separation efficiency for membrane applications. This Review provides insightful knowledge and information for researchers and engineers involved in membrane technology. This Review establishes a comprehensive set of permeance–selectivity relationships for thin-film composite membranes on the removal and fractionation of different solutes and provides valuable strategies for enhancing the performance of membrane systems through both material-level and system-level optimizations.
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