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用于水脱盐和盐水浓缩的优质正向渗透纤维素膜。

Superior forward osmosis cellulosic membrane for water desalination and brine concentration.

作者信息

Sabry Rania, Ali Hanaa M, Ali Sahar S, Gadallah Hanaa

机构信息

Chemical Engineering Department, Engineering and Renewable Energy Research Institute, National Research Centre, 33 El-Bohouth St. (Former El-Tahrir St.), Dokki, PO Box 12622, Giza, Egypt.

出版信息

Sci Rep. 2025 May 14;15(1):16829. doi: 10.1038/s41598-025-00141-z.

Abstract

Brine is an inevitable product of desalination plants and various industrial sectors. The appropriate disposal of brines and their highly concentrated salts and other diverse contaminants is a critical environmental challenge to most plants. Recently, the FO process is gaining attention as a viable alternative to conventional brine concentration methods, primarily due to its reduced energy consumption. This study aimed to fabricate a high-performance nonwoven FO membrane from cellulose acetate (CA) blended with polysulfone (PS) via the phase inversion technique. The prepared membrane was investigated in both saline water desalination and brine concentration. The FO membrane performance was tested for saline water desalination at different NaCl concentrations and applied in brine concentration using two kinds of draw solutions: ammonium bicarbonate (NHHCO) and a mixture of ammonium hydroxide/ammonium bicarbonate (NH OH)/(NHHCO) at different concentrations. It was observed that a high flux of 150 LMH was attained by using 2 M NaCl as a draw solution against distillate water as a feed solution. For brine concentration, by application of (NH OH)/(NHHCO) draw solution mixture at a 1:1 ratio, the modified cellulosic FO membrane exhibited the highest water flux of 113 LMH.

摘要

盐水是海水淡化厂和各个工业部门不可避免的产物。对大多数工厂来说,妥善处理盐水及其高浓度盐分和其他各种污染物是一项严峻的环境挑战。最近,由于其能耗降低,正渗透(FO)工艺作为传统盐水浓缩方法的可行替代方案而受到关注。本研究旨在通过相转化技术,用醋酸纤维素(CA)与聚砜(PS)共混制备一种高性能的非织造正渗透膜。对制备的膜进行了盐水淡化和盐水浓缩方面的研究。测试了该正渗透膜在不同氯化钠浓度下用于盐水淡化的性能,并使用两种不同浓度的汲取液:碳酸氢铵(NH₄HCO₃)以及氢氧化铵/碳酸氢铵混合物(NH₄OH)/(NH₄HCO₃)进行盐水浓缩应用。结果发现,以2M氯化钠作为汲取液、蒸馏水作为进料液时,通量高达150 LMH。对于盐水浓缩,通过应用1:1比例的(NH₄OH)/(NH₄HCO₃)汲取液混合物,改性纤维素正渗透膜表现出最高的水通量,为113 LMH。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14d4/12078703/d8dac15183ea/41598_2025_141_Fig1_HTML.jpg

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