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Adsorptive interactions between membranes and trace contaminants

机译:膜与微量污染物之间的吸附相互作用

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Widespread occurrences of endocrine-disrupting chemicals (EDCs) in waterways have attracted a great attention of the scientific community. While scientific evidence associated with human health is restricted due to the long-term effects, impacts of EDCs on trout at the common concentration encountered in sewage effluent have been confirmed by both in vitro and in vivo studies. The impacts of steroid estrogens such as estrone, estradiol (natural hormones) and ethinylestradiol (a synthetic hormone) are often more serious than other synthetic EDCs as they have far higher endocrine-disrupting potency, despite of their low concentration. This paper investigates retention and adsorptive behavior of the natural hormones estrone by two commercial reverse osmosis membranes TFC-S and X-20, using dead end stirred cell systems. While an adsorptive process that reaches a breakthrough governs the retention of estrone by the TFC-S membrane; a sieving mechanism is responsible for the high removal of estrone using the X-20 membrane.
机译:水道内分泌干扰化学物质(EDCs)的广泛发生引起了科学界的极大关注。尽管与人类健康相关的科学证据由于长期影响而受到限制,但体外和体内研究均已证实,EDC对污水中遇到的普通浓度鳟鱼的影响。雌酮,雌二醇(天然激素)和炔雌醇(合成激素)等甾体雌激素的影响通常比其他合成EDC更为严重,因为尽管它们的浓度很低,但它们具有更高的内分泌干扰力。本文利用死角搅拌细胞系统研究了两种商业反渗透膜TFC-S和X-20对天然激素雌酮的保留和吸附行为。 TFC-S膜对雌酮的保留决定了突破性的吸附过程。筛分机制是使用X-20膜高去除雌酮的原因。

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