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用松香酸和二氧化硅改性棉织物,制备用于油水分离的无氟耐用超疏水涂层。

Rosin acid and SiO modified cotton fabric to prepare fluorine-free durable superhydrophobic coating for oil-water separation.

作者信息

Chen Chaoqi, Li Zhaoshuang, Hu Yinchun, Huang Qin, Li Xiangzhou, Qing Yan, Wu Yiqiang

机构信息

College of Materials Science and Engineering, Central South University of Forestry & Technology, Hunan Province Key Laboratory of Materials Surface/Interface Science & Technology, Changsha 410004, China.

College of Materials Science and Engineering, Central South University of Forestry & Technology, Hunan Province Key Laboratory of Materials Surface/Interface Science & Technology, Changsha 410004, China.

出版信息

J Hazard Mater. 2022 Oct 15;440:129797. doi: 10.1016/j.jhazmat.2022.129797. Epub 2022 Aug 19.

Abstract

Currently, fluorides and long-chain aliphatic compounds are the most frequent low surface energy chemicals utilized in the preparation of superhydrophobic coatings, but associated environmental risks and instability restrict their potential application in oil-water separation. This research described a superhydrophobic coating based on rosin acid and SiO modified cotton fabric to overcome this challenge. By means of spray impregnation and UV-assisted click reaction, sulfhydryl modified rosin acid (RA), Octavinyl-POSS, and SiO were grafted onto the surface of cotton fabric to obtain RA-SiO superhydrophobic coating with rough surfaces such as lotus leaf and low surface energy. The RA-SiO superhydrophobic coating had favorable self-cleaning ability, and also adsorbed various light and heavy oils to achieve efficient separation of oil-water mixtures. The separation efficiency was 96.3% and the permeate flux was 6110.84 (L⋅m⋅h) after 10 repetitions. The RA-SiO superhydrophobic coating was found to be effective in separating oil-in-water and oil-in-water emulsions, and the separation mechanism was elaborated. In addition, it could effectively separate emulsions even after mechanical abrasion and chemical immersion, and had excellent stability. The fluorine-free and environmentally friendly low-cost superhydrophobic coating based on rosin acid is expected to play a significant potential in oil-water separation applications due to its excellent separation performance.

摘要

目前,氟化物和长链脂肪族化合物是制备超疏水涂层时最常用的低表面能化学品,但相关的环境风险和不稳定性限制了它们在油水分离中的潜在应用。本研究描述了一种基于松香酸和SiO改性棉织物的超疏水涂层,以克服这一挑战。通过喷雾浸渍和紫外光辅助点击反应,将巯基改性松香酸(RA)、八乙烯基-POSS和SiO接枝到棉织物表面,得到具有荷叶等粗糙表面和低表面能的RA-SiO超疏水涂层。RA-SiO超疏水涂层具有良好的自清洁能力,还能吸附各种轻质和重质油,实现油水混合物的高效分离。重复10次后,分离效率为96.3%,渗透通量为6110.84(L⋅m⋅h)。发现RA-SiO超疏水涂层在分离水包油和油包水乳液方面有效,并阐述了分离机理。此外,即使经过机械磨损和化学浸泡,它仍能有效分离乳液,具有优异的稳定性。基于松香酸的无氟、环保、低成本超疏水涂层因其优异的分离性能,有望在油水分离应用中发挥巨大潜力。

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