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Factors affecting the rejection of organic solutes during NF/RO treatment―a literature review

机译:NF / RO处理过程中影响有机溶质截留的因素-文献综述

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The incomplete rejection of certain pesticides, disinfection by-products, endocrine disrupting compounds, and pharmaceutically active compounds has been reported during full- and pilot-scale high-pressure membrane applications. Since the removal of these compounds in water and wastewater treatment applications is of great importance where a high product water quality is desired, an understanding of the factors affecting the permeation of solutes in high-pressure membrane systems is needed. In this paper, findings of a comprehensive literature review are reported, targeting membrane rejection mechanisms and factors affecting rejection. The following key solute parameters were identified to primarily affect solute rejection: molecular weight (MW), molecular size (length and width), acid disassociation constant (pK_a), hydrophobicity/hydrophilicity (log K_(ow)), and diffusion coefficient (D_p). Key membrane properties affecting rejection that were identified include molecular weight cut-off, pore size, surface charge (measured as zeta potential), hydrophobicity/hydrophilicity (measured as contact angle), and surface morphology (measured as roughness). In addition, feed water composition, such as pH, ionic strength, hardness, and the presence of organic matter, was also identified as having an influence on solute rejection. From the knowledge gained during the literature review, a rejection diagram was proposed, which qualitatively allows prediction of solute rejection if certain solute and membrane properties are known.
机译:在全规模和中试规模的高压膜应用期间,已经报道了某些农药,消毒副产物,破坏内分泌的化合物和药物活性化合物的不完全排斥。由于在需要高产品水质的情况下,在水和废水处理应用中去除这些化合物非常重要,因此需要了解影响高压膜系统中溶质渗透的因素。本文报道了针对膜排斥机制和影响排斥的因素的综合文献综述的结果。已确定以下主要溶质参数主要影响溶质截留率:分子量(MW),分子大小(长度和宽度),酸解离常数(pK_a),疏水性/亲水性(log K_(ow))和扩散系数(D_p )。已确定影响滤除率的关键膜特性包括分子量截留值,孔径,表面电荷(以zeta电位测量),疏水性/亲水性(以接触角测量)和表面形态(以粗糙度测量)。另外,还确定了进料水的组成(例如pH,离子强度,硬度和有机物的存在)对溶质截留有影响。根据文献综述中获得的知识,提出了一种排斥图,如果已知某些溶质和膜性能,则可以定性地预测溶质的排斥。

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