首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >PBI-BuI and PAN-PSSALi based UF membranes: Effects of solute and membrane surface interactions on rejection and flux
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PBI-BuI and PAN-PSSALi based UF membranes: Effects of solute and membrane surface interactions on rejection and flux

机译:基于PBI-BuI和PAN-PSSALi的超滤膜:溶质和膜表面相互作用对截留率和通量的影响

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摘要

Ultrafiltration membrane using tert-butylpolybenzimidazole (PBI-BuI) was prepared and characterized for flux and rejection performance using Gel Permeation Chromatography (GPC). Polyethylene glycol (PEG) and polyethylene oxide (PEO) with different molecular weights were used as the solutes. While using feed solution containing mixture of PEGs, higher rejection was observed than using individual PEG. The water flux of PBI-BuI membrane after passing individual PEG solutions showed considerable (~36%) reduction, which could be attributable to the PEG adsorption on the membrane pore surface. PEG adsorption was further substantiated by SEM, IR and TGA. The amphoteric nature of PBI-BuI could cause H-bohding between membrane surface and PEG molecules, leading to PEG adsorption on the membrane and pore surface. To ascertain this postulation, a study with PAN-PSSALi (which does not contain H-bonding) based UF membrane containing negatively charged -SO3~-group was done. It was found that PEG adsorption in this case is not as predominant as in earlier case. This membrane showed marginal reduction in water flux of 8%, vis-a-vis 36% reduction shown by PBI-BuI based membrane. This indicated that H-bonding present in PBI-BuI is mainly responsible for the PEG adsorption on its membrane and pore surface, in spite of PEG being a neutral molecule.
机译:制备了使用叔丁基聚苯并咪唑(PBI-BuI)的超滤膜,并使用凝胶渗透色谱(GPC)表征了通量和截留性能。使用具有不同分子量的聚乙二醇(PEG)和聚环氧乙烷(PEO)作为溶质。当使用含有PEG混合物的进料溶液时,观察到比单独使用PEG更高的排斥率。通过单独的PEG溶液后,PBI-BuI膜的水通量显示出可观的降低(〜36%),这可能归因于PEG在膜孔表面的吸附。通过SEM,IR和TGA进一步证实了PEG的吸附。 PBI-BuI的两性性质可能会导致膜表面与PEG分子之间的氢键结合,从而导致PEG在膜和孔表面的吸附。为了确定这一假设,对基于PAN-PSSALi(不含H键)的UF膜进行了研究,该膜含有带负电的-SO3〜-基团。已经发现,在这种情况下,PEG的吸附不如先前的情况那么重要。该膜显示出水通量的边际减少了8%,而基于PBI-BuI的膜显示出了36%的减少。这表明尽管PEG是中性分子,但PBI-BuI中存在的H键主要负责PEG在其膜和孔表面的吸附。

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