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Cellulose Triacetate (CTA) Hollow-Fiber (HF) Membranes for Sustainable Seawater Desalination: A Review

机译:纤维素三乙酸(CTA)中空纤维(HF)可持续海水淡化的膜:综述

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摘要

Cellulose triacetate (CTA)-based hollow fiber (HF) membrane is one of the commercially successful semipermeable membranes that has had a long progress since the time the excellent semi-permeable feature of cellulose-based polymers was found in 1957. Because of the reliable and excellent performances, especially for drinking water production from seawater, CTA-HFs have been widely used as reverse osmosis (RO) membranes, especially in arid regions. In this review, recent developments and research trends on CTA-HF membranes for seawater reverse osmosis (SWRO) plants were presented. A flux analytical model, an optimization strategy for chlorine injection without losing salt rejection performance, and a module of current high performance CTA RO membranes along with its plant operation data were updated in this paper. Furthermore, a newly developed CTA-HF membrane for brine concentration (BC) application (called BC membrane) was also addressed. Finally, RO/BC hybrid operation was introduced as an effective SWRO desalination technique that enables minimizing the volume of brine disposal from the RO plant by increasing the recovery ratio and the subsequent amount of produced freshwater, without an additional energy input.
机译:基于纤维素(CTA)的中空纤维(HF)膜是商业上成功的半透膜之一,其在1957年发现基于纤维素的聚合物的优异半渗透特征以来具有很长的进展。由于可靠尤其是从海水中饮用水,CTA-HFS的优异表现已被广泛用作反渗透(RO)膜,特别是在干旱地区。在本综述中,提出了近期对海水反渗透(SWRO)植物CTA-HF膜的发展和研究趋势。焊剂分析模型,氯注射的优化策略,无损失盐抑制性能,以及当前高性能CTA膜的模块以及其工厂运行数据的情况下进行了更新。此外,还解决了用于盐水浓度(BC)施用(称为BC膜)的新开发的CTA-HF膜。最后,引入了RO / BC混合操作作为一种有效的SWRO脱盐技术,使得通过增加回收率和后续生产的淡水量,能够通过增加额外的能量输入来最小化来自RO工厂的盐水处理的体积。

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