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Removal of Natural Hormones by Nanofiltration Membranes: Measurement Modeling, and Mechanisms

机译:纳滤膜去除天然激素的方法:测量模型和机理

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The removal mechanisms of four natural steroid hormones-estradiol, estrone, testosterone, and progesterone-by nanofiltration (NF) membranes were investigated. Two nanofiltration membranes with quite different permeabilities and salt retention characteristics were utilized. To better understand hormone removal mechanisms, the membrane average pore size was determined from retention data of inert organic solutes of various molecular weights and a pore transport model that incorporates steric (size) exclusion and hindered convection and diffusion. Results indicate that, at the early stages of filtration, adsorption (or partitioning) of hormones to the membrane polymer is the dominant removal mechanism. Because the adsorptive capacity of the membrane is limited, the final retention stabilizes when the adsorption of hormones into the membrane polymer has reached equilibrium. At this later filtration stage, the overall hormone retention is lower than that expected based solely on the size exclusion mechanism. This behavior is attributed to partitioning and subsequent diffusion of hormone moleculesinthe membrane polymeric phase,which ultimately results in a lower retention. Hormone diffusion in the membrane polymeric matrix most likely depends on the size of the hormone molecule, hydrogen bonding of hormones to membrane functional groups, and hydrophobic interactions of the hormone with the membrane polymeric matrix.
机译:通过纳滤(NF)膜研究了四种天然类固醇激素(雌二醇,雌酮,睾丸激素和孕酮)的去除机理。使用了两个具有非常不同的渗透率和盐保留特性的纳滤膜。为了更好地了解激素的去除机理,根据各种分子量的惰性有机溶质的保留数据和结合了空间(尺寸)排阻和对流和扩散受阻的孔传输模型确定了膜的平均孔径。结果表明,在过滤的早期,激素对膜聚合物的吸附(或分配)是主要的去除机理。由于膜的吸附能力受到限制,因此当激素对膜聚合物的吸附达到平衡时,最终保留率将稳定下来。在随后的过滤阶段,总的激素保留低于单独的基于尺寸排阻机理的预期。这种现象归因于激素分子在膜聚合物相中的分配和随后的扩散,最终导致较低的保留。激素在膜聚合物基质中的扩散很可能取决于激素分子的大小,激素与膜官能团的氢键以及激素与膜聚合物基质的疏水相互作用。

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