水处理用水通道蛋白仿生膜的制备及其过滤性能

Angelo Beratto-Ramos, Jorge Dagnino-Leone, J. Martínez-Oyanedel, Mario Aranda, R. Bórquez
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引用次数: 11

摘要

海水淡化被认为是应对全球水资源短缺的最有力的替代方案之一。由于传统的反渗透是一个能源密集型的过程,水通道蛋白仿生膜(ABM)成为提高生产力和降低能耗的有效替代方案。尽管水通道蛋白(Aqps)在理论上具有很高的透水性和选择性,但在实践中,ABM并没有达到预期的性能。这篇综述的重点是每个步骤的反弹道导弹制造过程,以找到关键点,努力为未来的研究。制造过程包括Aqp的生产,重构成囊泡,在多孔基质中固定和过滤性能。主要的挑战是需要实现监控和优化技术。此外,蛋白质生产、稳定、重组和支持亲和力的新策略可能为开发ABMs作为可行的新兴技术提供重大突破。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication and Filtration Performance of Aquaporin Biomimetic Membranes for Water Treatment
ABSTRACT Desalination is considered one of the strongest alternatives to face global water scarcity. Since conventional reverse osmosis is an energy-intensive process, Aquaporin biomimetic membranes (ABM) emerge as an effective alternative to increase productivity and reduce energy consumption. Despite the highly theoretical water permeability and selectivity of aquaporins (Aqps), in practice, ABM did not achieve the expected performance. This review is focused on each step of the ABM fabrication process in order to find critical points where efforts should be made for future studies. Fabrication procedures include Aqp production, reconstitution into vesicles, immobilization in porous substrates and filtration performance. The principal identified challenge is the need for implementing monitoring and optimization techniques. Also, new strategies for protein production, stabilization, reconstitution, and support affinity could offer significant breakthroughs for developing ABMs as a viable emerging technology.
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