Hydrophobic Modification of Cellulose Acetate and Its Application in the Field of Water Treatment: A Review

纤维素 化学 醋酸纤维素 领域(数学) 有机化学 化学工程 数学 工程类 纯数学
作者
Yaxin An,Fu Li,Youbo Di,Xiaotian Zhang,Jianjun Lu,Le Wang,Zhifeng Yan,Wei Wang,Mei Liu,Pengfei Fei
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:29 (21): 5127-5127 被引量:8
标识
DOI:10.3390/molecules29215127
摘要

With the inherent demand for hydrophobic materials in processes such as membrane distillation and unidirectional moisture conduction, the preparation and application development of profiles such as modified cellulose acetate membranes that have both hydrophobic functions and biological properties have become a research hotspot. Compared with the petrochemical polymer materials used in conventional hydrophobic membrane preparation, cellulose acetate, as the most important cellulose derivative, exhibits many advantages, such as a high natural abundance, good film forming, and easy modification and biodegradability, and it is a promising polymer raw material for environmental purification. This paper focuses on the research progress of the hydrophobic cellulose acetate preparation process and its current application in the water-treatment and resource-utilization fields. It provides a detailed introduction and comparison of the technical characteristics, existing problems, and development trends of micro- and nanostructure and chemical functional surface construction in the hydrophobic modification of cellulose acetate. Further review was conducted and elaborated on the applications of hydrophobic cellulose acetate membranes and other profiles in oil–water separation, brine desalination, water-repellent protective materials, and other separation/filtration fields. Based on the analysis of the technological and performance advantages of profile products such as hydrophobic cellulose acetate membranes, it is noted that key issues need to be addressed and urgently resolved for the further development of hydrophobic cellulose acetate membranes. This will provide a reference basis for the expansion and application of high-performance cellulose acetate membrane products in the environmental field.
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