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Effects of peracetic acid on aromatic polyamide nanofiltration membranes: a comparative study with chlorine

机译:过乙酸对芳族聚酰胺纳滤膜的影响:氯的比较研究

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Peracetic acid (PAA) is being considered as a disinfectant in membrane-based wastewater reuse systems, but its compatibility with polyamide membranes has not been thoroughly investigated. In this work, we showed that PAA induced much less change in the performance and material characteristics of NF90 membranes than the traditional disinfectant free chlorine (NaOCl). The change in membrane water flux and the rejection of salt and neutral organic compounds after PAA exposure (1-180 g h L-1) is significantly less than that resulting from NaOCl exposure at levels as low as 1 g h L-1. The presence of two wastewater constituents, chloride or Fe(ii), did not significantly impact membrane performance upon exposure to PAA. Surface characterization showed that oxygen was incorporated into polyamide by PAA, some of which was attributed to the formation of carboxylic acid groups. Experiments using a model aromatic amide, benzanilide, indicated an unexpected role of PAA in protecting the membrane from radicals formed by Fe(ii) and the H2O2 present in commercial PAA formulations. Furthermore, product identification suggests that both amide bond breakage and ring oxidation are possible reaction mechanisms for PAA. Our findings support that PAA is a viable disinfectant candidate for wastewater reuse and warrants further evaluation.
机译:过乙酸(PAA)被认为是膜的废水再利用系统中的消毒剂,但其与聚酰胺膜的相容性尚未彻底研究。在这项工作中,我们表明,PAA诱导了NF90膜的性能和材料特性的变化远低于传统的消毒剂游离氯(NaoCl)。 PAA暴露(1-180g H L-1)之后膜水通量的变化和盐和中性有机化合物的排斥明显小于低至1g H L-1的水平下的NaoCl暴露。在暴露于Paa时,存在两种废水成分,氯化物或Fe(II)的存在并未显着影响膜性能。表面表征显示,通过Paa掺入聚酰胺中的氧气,其中一些归因于羧酸基团的形成。使用模型芳族酰胺,苯硅酰胺的实验表明PAA在保护膜免受由Fe(II)形成的基团和商业PAA制剂中存在的H 2 O 2中的意外作用。此外,产品鉴定表明,酰胺粘结断裂和环氧化是PAA可能的反应机制。我们的调查结果支持,PAA是废水再利用的可行消毒候选人,并保证进一步评估。

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    SUNY Buffalo Dept Civil Struct & Environm Engn Univ Buffalo Buffalo NY 14260 USA;

    SUNY Buffalo Dept Civil Struct & Environm Engn Univ Buffalo Buffalo NY 14260 USA;

    SUNY Buffalo Dept Civil Struct & Environm Engn Univ Buffalo Buffalo NY 14260 USA;

    SUNY Buffalo Dept Chem & Biol Engn Univ Buffalo Buffalo NY 14260 USA;

    MIT Dept Civil & Environm Engn Cambridge MA 02130 USA;

    MIT Dept Civil & Environm Engn Cambridge MA 02130 USA|Univ Minnesota Dept Civil Environm & Geoengn 500 Pillsbury Dr SE Minneapolis MN 55455 USA;

    SUNY Buffalo Dept Civil Struct & Environm Engn Univ Buffalo Buffalo NY 14260 USA;

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  • 入库时间 2022-08-19 01:21:35
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