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Experimental determination of the hydrodynamic forces within nanofiltration membranes and evaluation of the current theoretical descriptions

机译:纳滤膜内水动力的实验确定和当前理论描述的评估

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In this study a series of different molecular weight PEG solutions have been characterised for particle size and the results have been used, in conjunction with several other techhiques, to determine the pore size of the Nadir UH004 membrane. The resulting information, in conjunction with experimentally determined rejection profiles for the PEG solutions, has then been used to back calculate the hindrance factors for nanofiltration rejection theory. These experimentally derived values obtained for the hindrance factors were found to be in close agreement with the widely accepted theoretical predictions derived from hydrodynamic theory for micro and ultrafiltration. To our knowledge, this is the first experimental validation of these hindrance factors for nanofiltration and suggests that the correlations found throughout the literature are accurate enough for the calculation of hindrance factors describing the hydrodynamic drag forces experienced by a solute inside a nanopore. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,已对一系列不同分子量的PEG溶液的粒径进行了表征,并将结果与​​其他几种技术一起用于确定Nadir UH004膜的孔径。然后,将所得信息与通过实验确定的PEG溶液的截留曲线一起用于反算纳滤截留理论的阻碍因素。发现从障碍因素获得的这些实验得出的值与从流体动力学理论用于微滤和超滤得到的广泛接受的理论预测非常吻合。据我们所知,这是这些阻碍因素用于纳滤的首次实验验证,表明在整个文献中发现的相关性足够精确,足以计算描述纳米孔内溶质所经历的流体动力阻力的阻碍因素。 (C)2015 Elsevier B.V.保留所有权利。

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