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纳滤膜死端污染相关影响因素的相互依存关系

Interdependence of Contributing Factors Governing Dead-End Fouling of Nanofiltration Membranes.

作者信息

Mahlangu Oranso Themba, Mamba Bhekie Brilliance

机构信息

Florida Science Campus, Institute for Nanotechnology and Water Sustainability, College of Engineering, Science and Technology, University of South Africa, 1709 Roodepoort, South Africa.

出版信息

Membranes (Basel). 2021 Jan 12;11(1):47. doi: 10.3390/membranes11010047.

Abstract

Cake-enhanced concentration polarization (CECP) has been ascribed as the main cause of flux decline in dead-end filtration. An unfamiliar approach was used to investigate the role of CECP effects in the fouling of a nanofiltration membrane (NF-270) that poorly reject salts. Membrane-foulant affinity interaction energies were calculated from measured contact angles of foulants and membrane coupons based on the van der Waals/acid-base approach, and linked to resistance due to adsorption (). In addition, other fouling mechanisms and resistance parameters were investigated using model organic and colloidal foulants. After selection, the foulants and membranes were characterized for various properties, and fouling experiments were conducted under controlled conditions. The fouled membranes were further characterized to gain more understanding of the fouling layer properties and flux decline mechanisms. Sodium alginate and latex greatly reduced membrane permeate flux as the flux declined by 86% and 59%, respectively, while there was minor flux decline when aluminum oxide was used as model foulant (<15% flux decline). More flux decline was noted when fouling was conducted with a combination of organic and colloidal foulants. Contrary to other studies, the addition of calcium did not seem to influence individual and combined fouling trends. Foulants adsorbed more on the membrane surface as the membrane-foulant affinity interactions became more attractive and pore blocking by the foulants was not important for these experiments. Hydraulic resistance due to cake formation () had a higher contributing effect on flux decline, while CECP effects were not substantial.

摘要

滤饼增强浓差极化(CECP)被认为是死端过滤中通量下降的主要原因。采用了一种不常见的方法来研究CECP效应在对盐分截留效果不佳的纳滤膜(NF - 270)污染过程中的作用。基于范德华力/酸碱方法,根据污垢剂和膜试片的测量接触角计算膜 - 污垢剂亲和相互作用能,并将其与吸附引起的阻力联系起来。此外,使用模型有机和胶体污垢剂研究了其他污染机制和阻力参数。经过筛选后,对污垢剂和膜的各种性能进行了表征,并在受控条件下进行了污染实验。对污染后的膜进行进一步表征,以更深入了解污染层特性和通量下降机制。海藻酸钠和乳胶极大地降低了膜的渗透通量,通量分别下降了86%和59%,而以氧化铝作为模型污垢剂时通量下降较小(通量下降<15%)。当使用有机和胶体污垢剂组合进行污染时,通量下降更为明显。与其他研究相反,添加钙似乎并未影响单独和组合污染趋势。随着膜 - 污垢剂亲和相互作用变得更具吸引力,污垢剂在膜表面的吸附更多,并且在这些实验中污垢剂造成的孔堵塞并不重要。滤饼形成引起的水力阻力对通量下降的贡献更大,而CECP效应并不显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/082d/7827496/2aad27fbaa71/membranes-11-00047-g001.jpg

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