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分子水平上揭示 EDTMPA 对由透明胞外聚合物颗粒(TEP)引起的膜污染的影响。

Molecular insights into impacts of EDTMPA on membrane fouling caused by transparent exopolymer particles (TEP).

机构信息

College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, China.

College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Sci Total Environ. 2022 Dec 20;853:158650. doi: 10.1016/j.scitotenv.2022.158650. Epub 2022 Sep 9.

Abstract

While ethylenediamine tetramethylenephosphonic acid (EDTMPA) has been emerged as a stronger chelating agent than ethylene diamine tetraacetic acid (EDTA) for fouling mitigation, and transparent exopolymer particles (TEP) is a major foulant in membrane-based water treatment process, effects of EDTMPA on TEP fouling and the underlying mechanism have been not yet studied. In this study, Flory-Huggins lattice theory was combined with density functional theory (DFT) technology to explore this subject at molecular level. Filtration experiments showed a unimodal pattern of specific filtration resistance (SFR) of TEP sample with Ca concentration in range of 0-3 mM. For the TEP sample with the peak SFR value at 1.5 mM Ca, continuous addition of EDTMPA (from 0 to 100 mg·L) resulted in a sustained decrease in SFR. Energy dispersive spectroscopy (EDS) mapping characterization showed the continuing decline of calcium content in the TEP layer with increase of EDTMPA addition, indicating that EDTMPA successfully captured Ca from alginate‑calcium ligation (TEP), and then disintegrated the TEP structure. DFT simulation showed that Ca preferentially coordinated with the terminal carboxyl groups of alginate chains to form a coordination configuration that is conducive to stretch the three-dimensional polymer network. Such a network corresponded to an extremely high SFR according to Flory-Huggins theory. EDTMPA addition caused disintegration of the coordination configuration of Ca binding to terminal carboxyl groups, which further resulted in collapse and flocculation of TEP gel network structure, thus leading to a continuous SFR decrease. This work provided deep thermodynamic insights into effects of EDTMPA on TEP-associated fouling at molecular level, facilitating to better understanding and mitigation of membrane fouling.

摘要

虽然乙二胺四亚甲基膦酸(EDTMPA)作为一种比乙二胺四乙酸(EDTA)更强的螯合剂,已被用于减轻结垢,但透明胞外聚合物颗粒(TEP)是膜基水处理过程中的主要污垢,EDTMPA 对 TEP 结垢的影响及其潜在机制尚未得到研究。在这项研究中,采用 Flory-Huggins 格子理论结合密度泛函理论(DFT)技术,从分子水平上探讨了这一问题。过滤实验表明,TEP 样品的比过滤阻力(SFR)随 Ca 浓度在 0-3mM 范围内呈单峰模式。对于 SFR 值在 1.5mM Ca 处出现峰值的 TEP 样品,连续添加 EDTMPA(从 0 到 100mg·L)会导致 SFR 持续下降。能谱(EDS)映射特征表明,随着 EDTMPA 加入量的增加,TEP 层中的钙含量不断下降,表明 EDTMPA 成功地从藻酸盐-钙键合(TEP)中捕获 Ca,然后破坏 TEP 结构。DFT 模拟表明,Ca 优先与藻酸盐链的末端羧基配位,形成有利于拉伸三维聚合物网络的配位构型。根据 Flory-Huggins 理论,这种网络对应于一个非常高的 SFR。EDTMPA 的加入导致与末端羧基配位的 Ca 结合的配位构型解体,进而导致 TEP 凝胶网络结构的崩溃和絮凝,从而导致 SFR 的持续下降。这项工作为 EDTMPA 对 TEP 相关结垢的影响提供了深入的热力学见解,有助于更好地理解和减轻膜污染。

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