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Fabrication of membranes of polyethersulfone and poly(N-vinyl pyrrolidone): influence of glycerol on processing and transport properties

机译:聚醚砜和聚(N-乙烯基吡咯烷酮)的膜的制备:甘油对加工及运输性能的影响

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In this study, we focus on membranes of polyethersulfone and poly(N-vinyl pyrrolidone) and elucidate the influence of composition on the rheological, diffusion and precipitation properties of solutions which are used for membrane preparation via a non-solvent-induced phase separation process. The low-molar-mass component of the solution is a mixture of the solvent N-methyl-2-pyrrolidone and the non-solvent glycerol. Cloud point, viscosity and diffusion measurements as well as precipitation experiments were performed in order to achieve a comprehensive understanding of the time dependence of the precipitation process. The addition of glycerol yields an increase of viscosity and a stronger tendency for demixing. The enhanced tendency for demixing causes a more rapid precipitation process. The average relaxation time of the solution as a function of glycerol concentration follows a similar trend to its viscosity. The increase of viscosity is associated with the increase of the monomeric friction coefficient. Two diffusive processes with clearly separated time scales appear in dynamic light scattering experiments in the presence of glycerol. This phenomenon is discussed taking into account the phase behaviour of the solution and the quality of the solvent. The addition of glycerol yields a lower pure water permeance whereas the molecular weight cut-off is not altered in the ultrafiltration range. (c) 2020 The Authors. Polymer International published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
机译:在这项研究中,我们专注于聚醚砜和聚(N-乙烯基吡咯烷酮)的膜,并阐明组合物对通过非溶剂诱导的相分离过程用于膜制备的溶液的流变液,扩散和沉淀性能的影响。溶液的低摩尔质量组分是溶剂N-甲基-2-吡咯烷酮和非溶剂甘油的混合物。浊点,粘度和扩散测量以及降水实验,以实现对降水过程的时间依赖性的全面理解。加入甘油产生粘度的增加和脱晶的较强倾向。脱樟的增强趋势导致更快的降水过程。作为甘油浓度的函数的溶液的平均弛豫时间遵循与其粘度相似的趋势。粘度的增加与单体摩擦系数的增加有关。具有明显分离的时间尺度的两个扩散过程出现在甘油在存在的动态光散射实验中。讨论了这种现象考虑了溶液的相行为和溶剂的质量。加入甘油产生较低的纯净水渗透,而在超滤范围内不会改变分子量截止。 (c)2020作者。高分子国际发表于John Wiley&Sons Ltd代表化学工业社会。

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