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Role of water chemistry on estrone removal by nanofiltration with the presence of hydrophobic acids

机译:水化学在疏水性酸存在下通过纳滤去除雌酮的作用

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摘要

Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the rejection of steroid hormone estrone by reverse osmosis (RO) and nanofiltration (NF) membranes. In this study, the effects of solution chemistry (solution pH and ionic strength) on the estrone rejection by NF membrane with the presence of HpoA were systematically investigated. Crossflow nanofiltration experiments show that the presence of HpoA significantly improved estrone rejection at all pH and ionic strength levels investigated. It is consistently shown that the "enhancement effect" of HpoA on estrone rejection at neutral and alkaline pH is attributed to the binding of estrone by HpoA macromolecules via hydrogen bonding between phenolic functional groups in feed solutions, which leads to an increase in molecular weight and appearance of negative charge. The membrane exhibited the best performance in terms of estrone rejection at pH 10.4 (compared to pH 4 and pH 7) as a result of strengthening the electrostatic repulsion between estrone and membrane with the presence of HpoA. At neutral pH level, the ability of HpoA macromolecules to promote estrone rejection became stronger with increasing ionic strength due to their more extended conformation, which created more chances for the association between estrone and HpoA. The important conclusion of this study is that increasing solution pH and salinity can greatly intensify the "enhancement effect" of HpoA. These results can be important for NF application in direct/indirect potable water reuse.
机译:已知从处理过的废水中提取的疏水性有机物(HpoA)可以改善反渗透(RO)和纳滤(NF)膜对甾体激素雌酮的抑制作用。在这项研究中,系统地研究了溶液化学性质(溶液的pH和离子强度)对HpoA存在下NF膜对雌酮排斥的影响。错流纳滤实验表明,在所研究的所有pH和离子强度水平下,HpoA的存在均显着提高了雌酮的抑制率。一致地表明,HpoA在中性和碱性pH下对雌酮排斥的“增强作用”归因于HpoA大分子通过饲料溶液中酚官能团之间的氢键结合雌酮,从而导致分子量和分子量的增加。出现负电荷。由于在HpoA存在下增强了雌酮与膜之间的静电排斥力,因此膜在pH 10.4(相对于pH 4和pH 7)的雌酮排斥方面表现出最佳性能。在中性pH值下,由于其更大的构象,随着离子强度的增加,HpoA大分子促进雌酮排斥的能力变得更强,这为雌酮与HpoA之间的缔合创造了更多机会。这项研究的重要结论是,增加溶液的pH和盐度可以大大增强HpoA的“增强作用”。这些结果对于NF在直接/间接饮用水回用中的应用很重要。

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