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Random sequential adsorption of human adenovirus 2 onto polyvinylidene fluoride surface influenced by extracellular polymeric substances

机译:受细胞外聚合物影响,人腺病毒2在聚偏二氟乙烯表面上随机顺序吸附

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摘要

Virus removal by membrane bioreactors depends on virus-membrane and virus-foulant interactions. The adsorption of human adenovirus 2 (HAdV-2) on polyvinylidene fluoride (PVDF) membrane and a major membrane foulant, extracellular polymeric substances (EPS), were measured in a quartz crystal microbalance. In 3-100 mM CaCl2 solutions, irreversible adsorption of HAdV-2 was observed on both pristine and EPS-fouled PVDF surfaces. The HAdV-2 adsorption kinetics was successfully fitted with the random sequential adsorption (RSA) model. The applicability of the RSA model for HAdV-2 adsorption is confirmed by comparing the two fitting parameters, adsorption rate constant k(a) and area occupied by each adsorbed HAdV-2 particle a, with experimentally measured parameters. A linear correlation between the fitting parameter k(a) and the measured attachment efficiency was found, suggesting that the RSA model correctly describes the interaction forces dominating the HAdV-2 adsorption. By comparing the fitting parameter d(ads) with the hydrodynamic diameter of HAdV-2, we conclude that virus-virus and virus-surface interactions determine the area occupied by each adsorbed HAdV-2 particle, and thus influence the adsorption capacity. These results provide insights into virus retention and will benefit improving virus removal in membrane filtration. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过膜生物反应器去除病毒取决于病毒-膜和病毒-污垢的相互作用。在石英晶体微量天平中测量了人腺病毒2(HAdV-2)在聚偏二氟乙烯(PVDF)膜和主要膜污垢,细胞外聚合物(EPS)上的吸附。在3-100 mM CaCl2溶液中,在纯净和EPS污染的PVDF表面均观察到HAdV-2的不可逆吸附。 HAdV-2吸附动力学已成功与随机顺序吸附(RSA)模型拟合。通过比较两个拟合参数,吸附速率常数k(a)和每个被吸附的HAdV-2颗粒a所占的面积,以及实验测得的参数,可以确定RSA模型对HAdV-2吸附的适用性。发现拟合参数k(a)与测得的附着效率之间存在线性关系,这表明RSA模型正确描述了控制HAdV-2吸附的相互作用力。通过将拟合参数d(ads)与HAdV-2的流体动力学直径进行比较,我们得出结论,病毒-病毒和病毒-表面相互作用决定了每个被吸附的HAdV-2颗粒所占据的面积,从而影响了吸附能力。这些结果提供了对病毒保留的见解,并将有助于改善膜过滤中的病毒去除。 (C)2015 Elsevier Inc.保留所有权利。

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