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碳分子筛嵌入聚醚砜混合基质膜的合成、表征及去除溶解离子性能分析。

Synthesis, characterization, and performance analysis of carbon molecular sieve-embedded polyethersulfone mixed-matrix membranes for the removal of dissolved ions.

机构信息

School of Chemical Engineering, The University of Faisalabad, Faisalabad, Pakistan.

Department of Chemical Engineering, Universiti Teknologi PETRONAS, Seri Iskandar, Perak, Malaysia.

出版信息

Water Environ Res. 2020 Sep;92(9):1306-1324. doi: 10.1002/wer.1326. Epub 2020 Apr 5.

Abstract

The asymmetric polyethersulfone (PES-15 wt.%) mixed-matrix membranes were prepared by incorporation of carbon molecular sieve (CMS) with varying concentrations (1, 3, and 5 wt.%). Physicochemical characterization of synthesized membranes was carried out using field emission scanning electron microscope, atomic force microscopy, contact angle, thermogravimetric analysis, zeta potential analyzer, porosity, and mean pore sizes. Performance analysis of synthesized mixed-matrix membranes was carried out by varying the operating parameters such as pressure (2-10 bar), feed concentration (100-1,000 mg/L), and cations type (Na , Ca , Mg , and Sn ). Effect of operating parameters and CMS concentration was investigated on pure water flux (PWF), permeate flux, and rejection of membranes. It was found that mixed-matrix membrane containing 15 wt.% PES with 1 wt.% CMS displayed the superior physicochemical characteristics in terms of hydrophilicity (37.9°), surface charge (-13.8 mV), mean pore diameter (6.04 nm), and thermal properties (T  = 218.5°C), and overall performance. E5C1 membrane showed 1.5 times higher PWF (75.5 L m  hr ) and incremented in rejection for all salts than the nascent membrane. PRACTITIONER POINTS: Carbon molecular sieve-embedded mixed-matrix membranes were synthesized by phase inversion method. The resultant membranes experienced improved hydrophilicity, roughness, surface charge, porosity, and mean pore diameter with 1 wt.% CMS loading. The pure water flux was improved from 55.77 to 75.05 L m  hr when 1 wt.% CMS was added in pure PES. The observed rejection of a mixed-matrix membrane with 1 wt.% CMS was the maximum for all salts.

摘要

不对称聚醚砜(PES-15wt.%)混合基质膜通过掺入不同浓度(1、3 和 5wt.%)的碳分子筛(CMS)制备而成。通过场发射扫描电子显微镜、原子力显微镜、接触角、热重分析、Zeta 电位分析仪、孔隙率和平均孔径对合成膜进行了理化特性表征。通过改变操作参数,如压力(2-10bar)、进料浓度(100-1000mg/L)和阳离子类型(Na+、Ca2+、Mg2+和 Sn2+),对合成混合基质膜进行了性能分析。考察了操作参数和 CMS 浓度对纯水通量(PWF)、渗透通量和膜截留率的影响。结果表明,含有 15wt.%PES 和 1wt.%CMS 的混合基质膜在亲水性(37.9°)、表面电荷(-13.8mV)、平均孔径(6.04nm)和热性能(T=218.5°C)方面表现出优异的物理化学特性,综合性能最佳。E5C1 膜的纯水通量(75.5Lm-2hr-1)提高了 1.5 倍,对所有盐的截留率也高于初生膜。

实践要点

通过相转化法合成了碳分子筛嵌入的混合基质膜。在 1wt.%CMS 负载下,所得膜的亲水性、粗糙度、表面电荷、孔隙率和平均孔径均得到提高。当在纯 PES 中添加 1wt.%CMS 时,纯水通量从 55.77Lm-2hr-1提高到 75.05Lm-2hr-1。当添加 1wt.%CMS 时,混合基质膜对所有盐的截留率最大。

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