Surface Modification of Reverse Osmosis Desalination Membranes with Zwitterionic Silane Compounds for Enhanced Organic Fouling Resistance

接触角 化学 磺酸盐 生物污染 化学工程 结垢 硅烷 聚砜 反渗透 聚酰胺 表面改性 色谱法 高分子化学 有机化学 生物化学 物理化学 工程类
作者
Selda Erkoc-Ilter,Farzin Saffarimiandoab,Serkan Güçlü,Derya Y. Köseoğlu-İmer,Bahadır Tunaboylu,Yusuf́ Z. Menceloǵlu,İsmail Koyuncu,Serkan Ünal
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:60 (14): 5133-5144 被引量:21
标识
DOI:10.1021/acs.iecr.1c00025
摘要

Three different zwitterionic functional trimethoxysilane compounds, 4-(diethyl(3-(trimethoxysilyl)propyl)ammonia)butane-1-sulfonate (EPBS), 4-(dimethyl(3-(trimethoxysilyl)propyl)ammonia)butane-1-sulfonate (MPBS), and 3-(dimethyl(3-(trimethoxysilyl)propyl)ammonia)propane-1-sulfonate (MPPS), were synthesized and used for the surface modification of commercial polyamide thin-film composite reverse osmosis membranes to enhance their salt rejection and antifouling performance. Commercial membrane surfaces were spray-coated using three different aqueous solution concentrations (1.0, 1.5, and 2.0%) of each zwitterionic silane compound. Surface characterization of coated membranes performed via X-ray photoelectron spectroscopy and water contact angle measurements confirmed the successful, permanent attachment of zwitterionic groups to membrane surfaces. Organic fouling studies accomplished through dead-end stirred cell filtration experiments using xanthan gum and bovine serum albumin revealed that all coated membranes had higher flux recovery rates upon cleaning with water and NaOH, demonstrating the easier cleanability provided by zwitterionic groups on the membrane surface. For example, in the case of xanthan gum fouling experiments, membranes coated with 2.0 wt % MPPS solution regained 100% of its initial flux after cleaning with deionized water, whereas the control membrane had 69% flux recovery.
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