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基于表面工程制备用于高效油水分离的聚合物基泡沫材料。

Preparation of polymer-based foam for efficient oil-water separation based on surface engineering.

作者信息

Guo Qingshi, Shi Dean, Yang Chenguang, Wu Guozhong

机构信息

School of Materials Science and Engineer, Hubei University, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, China.

Key Laboratory of Textile Fiber and Products, Ministry of Education, Wuhan Textile University, Wuhan, 430200, China.

出版信息

Soft Matter. 2022 Apr 13;18(15):3041-3051. doi: 10.1039/d2sm00230b.

Abstract

The leakages of a large number of organic solvents and oil spills not only cause extensive economic losses, but also destroy the ecological environment. However, there were few studies on the surface engineering of adsorption materials for efficient oil-water separation in complex environments. In this research, through surface engineering, the polymer-based foam exhibited high efficiency oil-water separation performance in different pH environments. Hydrophobic groups were introduced onto the surface of nano-sized SiO particles hydrolysis and polycondensation reactions, and then the modified SiO was loaded on the foam. After modification, the water contact angle of the modified foam increased from 116.4° to 152.5°, and the oil-water separation performance was obviously enhanced. The oil removal rate of the modified foam remained above 96%. The highest capacity of petroleum diesel was 33.4 g, which was much higher than other similar adsorption materials. In addition, the modified foam maintained good hydrophobicity and oil removal rate in a wide pH range. The efficient oleophilic and hydrophobic foam prepared by combining green physical foaming with surface engineering was expected to be widely used in large-scale organic solvent recovery and oil leakage emergency treatment.

摘要

大量有机溶剂泄漏和石油泄漏不仅造成巨大经济损失,还破坏生态环境。然而,针对复杂环境中高效油水分离吸附材料的表面工程研究较少。本研究通过表面工程,使聚合物基泡沫在不同pH环境下展现出高效的油水分离性能。通过水解和缩聚反应将疏水基团引入纳米SiO颗粒表面,然后将改性后的SiO负载到泡沫上。改性后,泡沫的水接触角从116.4°增加到152.5°,油水分离性能明显增强。改性泡沫的除油率保持在96%以上。对石油柴油的最大吸附量为33.4 g,远高于其他类似吸附材料。此外,改性泡沫在较宽的pH范围内保持良好的疏水性和除油率。通过绿色物理发泡与表面工程相结合制备的高效亲油疏水泡沫有望广泛应用于大规模有机溶剂回收和漏油应急处理。

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