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Binding of estrone to hollow fibre membranes in microfiltration of solutions containing trace estrone

机译:含微量雌酮的微滤液中雌酮与中空纤维膜的结合

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摘要

Increased concern is being paid to the health and environmental risk caused by trace natural and synthetic hormones discharged from sewage treatment plants. This study, which is part of a larger project on the investigation of hybrid membrane processes for trace hormones removal in water recycling, focuses on binding of hormones to microfiltration membranes in filtration of solutions containing trace hormones. The adsorption capacity of the membrane, kinetics of adsorption and desorption of to/from microfiltration hollow fibre membranes, and the factors affecting adsorption to the membranes have been studied using estrone as model solute. The experiments showed that the adsorption of estrone to the microfiltration membranes could result in high retention of estrone molecules. However, since the mechanism of retention is adsorption rather than sieving, the retention decreases with increase in the amount of estrone accumulated on the membrane, and breakthrough occurs when the accumulated estrone on the membrane reaches an equilibrium concentration corresponding to the feed concentration. For long-term operation, although membranes could be saturated by hormone molecules, the membrane processes could still have a function of buffer for instantaneous high hormone concentration because the saturation surface concentration increases with the increase in the feed concentration. In addition, the experiments also indicated that the adsorption capacity of the membranes for hormones could be affected by membrane types, pH, affinity of hormones to water, as well as the presence of other organics. These results are of relevance to the potential release of trace hormones from water treatment systems where microfiltration membranes are used as a process barrier
机译:人们越来越关注污水处理厂排放的微量天然和合成激素对健康和环境的危害。这项研究是研究水循环中微量激素去除的混合膜工艺研究的一个较大项目的一部分,该研究的重点是在过滤含有微量激素的溶液中激素与微滤膜的结合。以雌酮为模型溶质,研究了膜的吸附能力,微滤中空纤维膜的吸附和解吸动力学以及影响膜吸附的因素。实验表明,雌酮在微滤膜上的吸附可能导致雌酮分子的高度保留。然而,由于保留的机理是吸附而不是筛分,所以保留随着膜上积累的雌酮量的增加而降低,并且当膜上积累的雌酮达到对应于进料浓度的平衡浓度时,发生突破。对于长期操作,尽管膜可能会被激素分子饱和,但膜过程仍可具有用于瞬时高激素浓度的缓冲功能,因为饱和表面浓度会随着进料浓度的增加而增加。此外,实验还表明,膜对激素的吸附能力可能会受到膜类型,pH,激素对水的亲和力以及其他有机物的存在的影响。这些结果与水处理系统中微量激素的潜在释放有关,在水处理系统中,微滤膜被用作工艺屏障

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