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Quantification of solute-solute interactions in steroidal hormone removal by ultrafiltration membranes

机译:定量超滤膜去除甾体激素中的溶质-溶质相互作用

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Micropollutant removal by membrane filtration is variable and can be influenced by the presence of organic matter. When considering removal mechanisms, many studies have focused on membrane adsorption and solute-foulant interactions; however, little is known regarding the influence of solute-solute interactions as these are typically difficult to quantify. In this study experimental organic matter-water partition coefficients (/Com) were applied to quantify and elucidate the influence of solute-solute interactions for steroidal hormone removal by ultrafiltration. The results indicated that the removal of all hormones increased in the presence of organic matter and this was related to hormone-organic matter interactions. Organic matter did not increase membrane adsorption or cause significant fouling for most molecular weight cut-off (MWCO) membranes, thus solute-solute interactions were the dominant mechanism for hormone removal as expected from previous quantification of such interactions using a specifically developed solid-phase microextraction (SPME) technique. While quantification was only partially successful at low organic carbon concentrations, clear evidence of the importance of solute-solute interactions was demonstrated in concentration studies. Experimental removal and estimated removal due to solute-solute interactions for estrone was comparable at high organic matter concentrations of 25-50 mgC/L for both 10 (48-52%) and 100 kDa (33-38%) membranes, suggesting that organic matter concentration was an important factor in solute-solute interactions. This study represents the first time that experimental organic matter-water partition coefficients have been applied to assess solute-solute interactions in membrane filtration, specifically ultrafiltration.
机译:通过膜过滤去除微污染物是可变的,并且会受到有机物的影响。在考虑去除机理时,许多研究都集中在膜吸附和溶质-污垢的相互作用上。然而,关于溶质-溶质相互作用的影响知之甚少,因为它们通常难以量化。在这项研究中,实验性有机物-水分配系数(/ Com)用于量化和阐明溶质-溶质相互作用对超滤去除甾体激素的影响。结果表明,在有机物存在下,所有激素的去除均增加,这与激素-有机物的相互作用有关。对于大多数分子量截留(MWCO)膜,有机物不会增加膜的吸附或引起明显的结垢,因此,如先前使用专门开发的固相对这种相互作用的定量所期望的那样,溶质-溶质相互作用是激素去除的主要机理微萃取(SPME)技术。虽然在低有机碳浓度下定量分析仅部分成功,但浓度研究证明了溶质-溶质相互作用的重要性的明确证据。在10-50(48-52%)和100 kDa(33-38%)膜的高有机物浓度为25-50 mgC / L的情况下,实验去除和由于雌酮的溶质-溶质相互作用而导致的估计去除率是可比的,表明有机膜物质浓度是溶质-溶质相互作用的重要因素。这项研究代表首次将实验性有机物-水分配系数用于评估膜过滤(特别是超滤)中的溶质-溶质相互作用。

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