4.7 Review

Recent advances on cellulose-based nanofiltration membranes and their applications in drinking water purification: A review

期刊

JOURNAL OF CLEANER PRODUCTION
卷 333, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2021.130171

关键词

Nanofiltration membrane; Cellulose materials; Drinking water purification; Water treatment

资金

  1. International Science and Technology Cooperation Project in Guangdong Province, China [2020A0505100005]
  2. Science and Technology Program of Guangz-hou City, China [201802010018]
  3. National Natural Sci-ence Foundation of China, China [31971612]

向作者/读者索取更多资源

Nanofiltration membranes play a crucial role in advanced water treatment. Developing cellulose-based membranes offers the potential to replace traditional petrochemical-based materials. This comprehensive review focuses on the design approaches and applications of cellulose nanofiltration membranes, as well as discusses current limitations and future directions.
Nanofiltration membranes play a crucial role in advanced water treatment, however, a number of challenges remain in their application, such as difficulties in controlling membrane fouling and membrane pore size, as well as membrane material biodegradability. An emerging trend currently underway is to develop a natural/biode-gradable polymer-based membrane that is sustainable while achieving high flux and separation efficiency. Cellulose-based membrane materials are green, low-cost, and energy-saving, which offer the potential to replace traditional petrochemical-based membrane materials. This review article provides a comprehensive and critical review of the design approach in composite nanofiltration membranes, green membrane materials, and the major features and advantages in the preparation of cellulose-based composite nanofiltration membranes. The focus is on the recent developments (especially after 2015) in cellulose nanofiltration membranes based on molecular-level design approaches for advanced water treatment, with the aim of further insights into cellulose mem-brane pore structure-filtration performance. In addition, the applications of cellulose nanofiltration membranes in seawater desalination, drinking water softening, and oil-water separation are presented. Furthermore, a brief investigation of the industrial development and applications of cellulose nanofiltration membranes is given, as well as the current limitations and the future directions are discussed.

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