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Nanofiltration separation of polyvalent and monovalent anions in desalination brines

机译:脱盐盐水中多价和单价阴离子的纳滤分离

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摘要

This work, as part of a global membrane process for the recovery of alkali and acids from reverse osmosis (RO) desalination brines, focuses on the nanofiltration (NF) separation of polyvalent and monovalent anions, more specifically sulfate and chloride. This pretreatment stage plays a key role in the whole recovery process. Working with model brines simulating the concentration of RO concentrates, 0.2–1.2 M chloride concentration and 0.1 M sulfate concentration, the experimental performance and modeling of the NF separation is reported. The study has been carried out with the NF270 (Dow Filmtec) membrane. The effect of operating pressure (500–2000 kPa), ionic strength (0.4–1.3 M) and chloride initial concentration (0.2–1.2 M) on the membrane separation capacity has been investigated. Finally, the Donnan Steric Pore Model (DSPM) together with experimentally determined parameters, effective pore radius (rp), thickness of the membrane effective layer (d) and effective membrane charge density (Xd), was proved accurate enough to satisfactorily describe the experimental results. In this work we provide for the first time the analysis of partitioning effects and transport mechanism in the NF separation of sulfate and chloride anions in concentrations that simulate those found in RO desalination brines.
机译:这项工作是从反渗透(RO)脱盐盐水中回收碱和酸的全球膜工艺的一部分,着重于对多价和一价阴离子(更具体地说是硫酸根和氯离子)进行纳滤(NF)分离。此预处理阶段在整个恢复过程中起着关键作用。使用模拟盐水模拟RO精矿的浓度,0.2–1.2 M的氯化物浓度和0.1 M的硫酸盐浓度,报道了NF分离的实验性能和建模。该研究已使用NF270(Dow Filmtec)膜进行。研究了工作压力(500–2000 kPa),离子强度(0.4–1.3 M)和氯离子初始浓度(0.2–1.2 M)对膜分离能力的影响。最后,Donnan Steric孔模型(DSPM)与实验确定的参数,有效孔半径(rp),膜有效层厚度(d)和有效膜电荷密度(Xd)一起被证明足够准确,可以令人满意地描述实验结果。在这项工作中,我们首次提供了模拟模拟反渗透淡化盐水中浓度的硫酸根和氯根阴离子在NF分离中的分配效应和转运机理的分析。

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