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PMID: 33166125 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Macropatterning of Microcrumpled Nanofiltration Membranes by Spacer Imprinting for Low-Scaling Desalination.

Environmental science & technology ·Vol. 54 ·No. 23 ·2020-00-01 ·Pages 15527-15533

Shang C, Wang L, Xia J, Zhang S

Abstract

Surface patterns provide a chemical-free approach to reduce fouling by mimicking nature and are yet limited by their complicated fabrication procedures. Here, we report readily scalable methods to create sub-micrometer- and millimeter-scale patterns on membrane surfaces for low-scaling desalination, with a focus on the antiscaling mechanism. Specifically, a robust polyethylene (PE) lithium battery separator prepared from melt casting and stretching has been used as the support for nanofiltration (NF), giving micrometer-scale crumples on the surface. Then, the PENF membrane is imprinted by a permeate spacer during tests, leading to millimeter-scale patterns. Two types of experiments are designed to give insights into the impact of surface structure on scaling in NF processes, including (1) comparisons of smooth surfaces and surfaces with nanometer-, micrometer-, and millimeter-scale features and (2) no-stirring dead-end tests and crossflow tests. It has been found that micrometer-scale patterns are resistant to scaling through both spatial and hydrodynamic effects, and millimeter-scale patterns are also effective in reducing scaling solely due to hydrodynamic effects. Computational fluid dynamics (CFD) simulation gives further explanations. In addition, organic and microbial fouling has been studied to give implications for future membrane engineering.

MeSH Terms
Filtration Hydrodynamics Membranes, Artificial Water Purification
Chemicals
Membranes, Artificial
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Shang Chuning
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore 117585.
Wang Li
Beijing OriginWater Technology Co., Ltd., Beijing 101407, China.
Xia Jianzhong ORCID
Beijing OriginWater Technology Co., Ltd., Beijing 101407, China. | Institute for Advanced Study, Shenzhen University, Shenzhen 518060, China.
Zhang Sui ORCID
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore 117585.
Article Info
Journal
Environmental science & technology
Abbr.
Environ Sci Technol
ISSN
1520-5851
Published
2020-00-01
Epub
2020-00-09
Pages
15527-15533
Language
English
Region
United States
NLM ID
0213155
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