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Rejection of small solutes by reverse osmosis membranes for water reuse applications: a pilot-scale study

机译:用于水回用的反渗透膜对小溶质的排斥:中试研究

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摘要

N-nitrosamines and boron are small solutes of particular concern during water recycling applications. Here, we evaluated the rejection of seven N-nitrosamines and boron under a range of operating conditions and feed solution characteristics. The evaluationwas conducted using a pilot-scale reverse osmosis (RO) system to appropriately simulate hydrodynamic conditions of full-scale RO installations. The rejection of seven N-nitrosamines by the pilot RO system varied significantly in the range from 31 to 94%, and rejection increased in the increasing order of their molecular weight. Rejection values obtained from this pilot-scale study were lower than those previously reported in laboratory-scale studies. These discrepancieswere attributed to a difference in RO system operating condition (i.e. recovery) between the pilot-scale study (25%) and laboratory-scale study (b0.1%). Nevertheless, rejection data reported here validate the recent findings fromlaboratory-scale studies with respect to the impact of permeate flux, feed temperature and feed pH on separation efficiencies of N-nitrosamines. Data obtained from this pilot-scale study also validate the strong correlation between boron and NDMA rejection at or below pH 8 regardless of operating conditions and feed solution characteristics. The results suggest that boron rejection can be used as a surrogate for NDMA rejection in full-scale RO installations.
机译:N-亚硝胺和硼是在水循环利用过程中特别关注的小溶质。在这里,我们评估了在一系列操作条件和进料溶液特性下七种N-亚硝胺和硼的截留率。使用中试规模的反渗透(RO)系统进行了评估,以适当模拟全尺寸RO设备的流体动力学条件。中试反渗透系统对7种N-亚硝胺的截留率在31%至94%的范围内变化很大,并且截留率按分子量的增加顺序增加。从该中试规模研究中获得的排斥值低于实验室规模研究中先前报告的那些。这些差异归因于中试规模研究(25%)和实验室规模研究(b0.1%)之间的反渗透系统操作条件(即恢复)差异。尽管如此,这里报道的剔除数据证实了实验室规模研究关于渗透通量,进料温度和进料pH对N-亚硝胺分离效率的影响的最新发现。从该中试规模研究获得的数据还证明,无论操作条件和进料溶液特性如何,在pH等于或低于8时硼和NDMA截留率之间都具有很强的相关性。结果表明,在全面规模的反渗透装置中,硼排斥可以用作NDMA排斥的替代物。

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