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腐殖酸与硅在反渗透膜污染过程中的相互作用:光谱和分子动力学研究。

Interaction between humic acid and silica in reverse osmosis membrane fouling process: A spectroscopic and molecular dynamics insight.

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, International Joint Laboratory on Low Carbon Clean Energy Innovation, Ministry of Education, School of Environment, Tsinghua University, Beijing 100084, China.

Department of Construction, Civil and Environmental Engineering, Texas Tech University, Lubbock, TX 79409, United States.

出版信息

Water Res. 2021 Nov 1;206:117773. doi: 10.1016/j.watres.2021.117773. Epub 2021 Oct 15.

Abstract

Combined organic and inorganic fouling is a primary barrier constraining the performance of reverse osmosis (RO) membrane. In this work, we conducted a systematic study focusing on the synergetic fouling effects of silica and humic acid (HA) in RO process, and found the critical silica concentration where the fouling pattern changed qualitatively. When the silica concentration was lower than 6 mM at a typical HA concentration of 50 mg·L, no severe fouling was observed, while silica reaching this critical point could cause severe synergetic fouling with HA. Concentrated silica above the critical point acted as the prior foulant with marginal fouling effect caused by HA. A variety of solutions and surface-based characterizations were performed to elucidate the synergistic fouling responsibility for silica and HA. Our study suggests that the carboxylic groups from HA formed hydrogen bonds with silica hydrate, inducing silica adsorption onto HA aggregates at low silica particle concentrations. The HA network was bridged together to form large foulants due to the silica-silica interaction above the silica critical concentration. These mechanisms were further confirmed by molecular dynamics simulations. This study provides an in-depth insight into the combined organic-inorganic fouling and can serve as a guideline to optimize feed conditions in order to mitigate fouling of RO in wastewater reusing industry.

摘要

有机-无机复合污染是制约反渗透(RO)膜性能的主要障碍。在这项工作中,我们系统地研究了 RO 过程中硅和腐殖酸(HA)的协同污染效应,发现了污染模式发生定性变化的关键硅浓度。当硅浓度低于典型 HA 浓度 50mg·L 时的 6mM 时,不会观察到严重的污染,而达到这一临界点的硅会与 HA 产生严重的协同污染。高于临界点的浓缩硅作为优先污染物,HA 造成的污染影响较小。进行了多种溶液和基于表面的特性分析,以阐明硅和 HA 的协同污染责任。我们的研究表明,HA 中的羧酸基团与水合硅形成氢键,在低硅颗粒浓度下诱导硅吸附到 HA 聚集体上。由于高于硅临界浓度的硅-硅相互作用,HA 网络相互桥接在一起形成大的污染物。这些机制通过分子动力学模拟得到了进一步证实。本研究深入了解了有机-无机复合污染,并为优化进料条件以减轻废水再利用行业中 RO 的污染提供了指导。

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