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溶解性对纳滤膜去除痕量有机物的影响:以消毒副产物为例。

The role of solubility on the rejection of trace organics by nanofiltration membrane: exemplified with disinfection by-products.

机构信息

State Key Laboratory of Heavy Oil Processing, Beijing Key Laboratory of Oil & Gas Pollution Control, China University of Petroleum, Beijing, 102249, China.

State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, 100084, China.

出版信息

Environ Sci Pollut Res Int. 2017 Aug;24(22):18400-18409. doi: 10.1007/s11356-017-9282-0. Epub 2017 Jun 22.

Abstract

Interactions of trace organic compounds (TOrCs) with polymeric nanofiltration (NF) membrane can affect their rejection. It is desirable to investigate whether solubility which depends on the free energy of interaction between these solutes and water correlates with rejection/adsorption and the potential to be incorporated in the partitioning terms of current NF model. A total of ten neutral disinfection by-products (DBPs) were selected as the model compounds for TOrCs to comprehensively investigate the role of solubility on rejection and adsorption. Pearson correlation analysis indicated that the correlation between MW and rejection ratio was highly significant (r = 0.778, p = 0.008) and that between solubility and rejection ratio was moderately significant (r = -0.636, p = 0.48) in a cross-flow system. By fitting Freundlich equation from adsorption isotherm experiment, the adsorption affinity (K ) of DBPs was roughly correlated with their solubility with regard to the comparison of n value with 1. α was then introduced as a parameter of solute-membrane interaction from the perspective of partitioning term in the hydrodynamic model. Exponential relationship can be observed between the solubility and α, demonstrating the possibility of incorporating solubility into the partitioning terms in NF model to accurately predict the rejection of DBPs.

摘要

痕量有机化合物 (TOrCs) 与聚合纳滤 (NF) 膜的相互作用会影响其截留率。研究这些溶质与水之间的相互作用自由能所决定的溶解度与截留/吸附之间的关系以及是否有可能被纳入当前 NF 模型的分配项是很有必要的。本文选择了十种中性消毒副产物 (DBPs) 作为 TOrCs 的模型化合物,以全面研究溶解度对截留和吸附的作用。皮尔逊相关分析表明,在错流系统中,MW 与截留率之间的相关性高度显著(r=0.778,p=0.008),溶解度与截留率之间的相关性中度显著(r=-0.636,p=0.48)。通过从吸附等温线实验拟合弗雷德里希方程,DBPs 的吸附亲和力(K)与溶解度大致相关,n 值与 1 的比较表明这一点。然后,从水动力模型的分配项的角度出发,将α引入作为溶质-膜相互作用的参数。可以观察到溶解度与α之间存在指数关系,表明将溶解度纳入 NF 模型的分配项以准确预测 DBPs 的截留率是有可能的。

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