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通过膜蒸馏辅助反向电渗析实现水/能量回收以协同进行海水淡化的机遇。

An Opportunity for Synergizing Desalination by Membrane Distillation Assisted Reverse-Electrodialysis for Water/Energy Recovery.

作者信息

Mujahid Muhammad, Umar Farooq Muhammad, Wang Chao, Arkook Bassim, Harb Moussab, Ren Long-Fei, Shao Jiahui

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, 200240, Shanghai, China.

School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, 200240, Shanghai, China.

出版信息

Chem Rec. 2024 Oct;24(10):e202400098. doi: 10.1002/tcr.202400098. Epub 2024 Sep 17.

DOI:10.1002/tcr.202400098
PMID:39289830
Abstract

Industry, agriculture, and a growing population all have a major impact on the scarcity of clean-water. Desalinating or purifying contaminated water for human use is crucial. The combination of thermal membrane systems can outperform conventional desalination with the help of synergistic management of the water-energy nexus. High energy requirement for desalination is a key challenge for desalination cost and its commercial feasibility. The solution to these problems requires the intermarriage of multidisciplinary approaches such as electrochemistry, chemical, environmental, polymer, and materials science and engineering. The most feasible method for producing high-quality freshwater with a reduced carbon footprint is demanding incorporation of industrial low-grade heat with membrane distillation (MD). More precisely, by using a reverse electrodialysis (RED) setup that is integrated with MD, salinity gradient energy (SGE) may be extracted from highly salinized MD retentate. Integrating MD-RED can significantly increase energy productivity without raising costs. This review provides a comprehensive summary of the prospects, unresolved issues, and developments in this cutting-edge field. In addition, we summarize the distinct physicochemical characteristics of the membranes employed in MD and RED, together with the approaches for integrating them to facilitate effective water recovery and energy conversion from salt gradients and freshwater.

摘要

工业、农业以及不断增长的人口都对清洁水的稀缺产生重大影响。对受污染的水进行脱盐或净化以供人类使用至关重要。热膜系统的组合借助水 - 能源关系的协同管理,性能可优于传统脱盐。脱盐所需的高能量是脱盐成本及其商业可行性的关键挑战。解决这些问题需要电化学、化学、环境、聚合物以及材料科学与工程等多学科方法的结合。以减少碳足迹的方式生产高质量淡水的最可行方法是将工业低品位热能与膜蒸馏(MD)相结合。更确切地说,通过使用与膜蒸馏集成的反向电渗析(RED)装置,可以从高度盐化的膜蒸馏截留物中提取盐度梯度能(SGE)。集成膜蒸馏 - 反向电渗析可以显著提高能源生产率而不增加成本。本综述全面总结了这一前沿领域的前景、未解决的问题和进展。此外,我们总结了膜蒸馏和反向电渗析中使用的膜的独特物理化学特性,以及将它们集成以促进有效水回收和从盐梯度及淡水中进行能量转换的方法。

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