NIMTE OpenIR  > 2018专题
Biodegradable PLA Nonwoven Fabric with Controllable Wettability for Efficient Water Purification and Photocatalysis Degradation
Shi, Jiangwei; Zhang, Lei; Xiao, Peng; Huang, Youju; Chen, Peng; Wang, Xuefen; Gu, Jincui; Zhang, Jiawei; Chen, Tao
2018
发表期刊ACS SUSTAINABLE CHEMISTRY & ENGINEERING
卷号6期号:2页码:2445-2452
摘要Although many bioinspired superwetting materials with excellent capability for oil/water separation have been constructed, functional surfaces combining effective separation property, biodegradability, and easy-controllability are still highly desired. In this work, a facile strategy to realize the controllable wettability on the polylactic acid (PLA) nonwoven fabric has been developed; the resulting superwetting PLA non-woven fabrics exhibit high absorption capacity and high selectivity in oil/water separation. Moreover, the superhydrophilic PLA nonwoven fabric possesses excellent simultaneous photo-catalysis degradation of water-miscible toxic organic pollutants. With the versatility and biodegradability, these advanced PLA non-woven fabrics may provide effective solutions to oily water treatment.
关键词Nanotube Hybrid Membranes Oil/water Separation Carbon Nanotube Oil-absorption Superhydrophobic Material Nanofibrous Membranes Robust Functionalization Emulsions Graphene
学科领域Physics
语种英语
文献类型期刊论文
条目标识符http://ir.nimte.ac.cn/handle/174433/16829
专题2018专题
推荐引用方式
GB/T 7714
Shi, Jiangwei,Zhang, Lei,Xiao, Peng,et al. Biodegradable PLA Nonwoven Fabric with Controllable Wettability for Efficient Water Purification and Photocatalysis Degradation[J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2018,6(2):2445-2452.
APA Shi, Jiangwei.,Zhang, Lei.,Xiao, Peng.,Huang, Youju.,Chen, Peng.,...&Chen, Tao.(2018).Biodegradable PLA Nonwoven Fabric with Controllable Wettability for Efficient Water Purification and Photocatalysis Degradation.ACS SUSTAINABLE CHEMISTRY & ENGINEERING,6(2),2445-2452.
MLA Shi, Jiangwei,et al."Biodegradable PLA Nonwoven Fabric with Controllable Wettability for Efficient Water Purification and Photocatalysis Degradation".ACS SUSTAINABLE CHEMISTRY & ENGINEERING 6.2(2018):2445-2452.
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