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聚合物增强二氧化硅气凝胶微球的简便合成,用作从水中去除油污的坚固、疏水且可回收的吸附剂。

Facile Synthesis of Polymer-Reinforced Silica Aerogel Microspheres as Robust, Hydrophobic and Recyclable Sorbents for Oil Removal from Water.

作者信息

Zhao Zhiyang, Ren Jian, Liu Wei, Yan Wenqian, Zhu Kunmeng, Kong Yong, Jiang Xing, Shen Xiaodong

机构信息

College of Materials Science and Engineering, Nanjing Tech University, Nanjing 210009, China.

Jiangsu Collaborative Innovation Center for Advanced Inorganic Function Composites, Nanjing 210009, China.

出版信息

Polymers (Basel). 2023 Aug 24;15(17):3526. doi: 10.3390/polym15173526.

Abstract

With the rapid development of industry and the acceleration of urbanization, oil pollution has caused serious damage to water, and its treatment has always been a research hotspot. Compared with traditional adsorption materials, aerogel has the advantages of light weight, large adsorption capacity and high selective adsorption, features that render it ideal as a high-performance sorbent for water treatment. The objective of this research was to develop novel hydrophobic polymer-reinforced silica aerogel microspheres (RSAMs) with water glass as the precursor, aminopropyltriethoxysilane as the modifier, and styrene as the crosslinker for oil removal from water. The effects of drying method and polymerization time on the structure and oil adsorption capacity were investigated. The drying method influenced the microstructure and pore structure in a noteworthy manner, and it also significantly depended on the polymerization time. More crosslinking time led to more volume shrinkage, thus resulting in a larger apparent density, lower pore volume, narrower pore size distribution and more compact network. Notably, the hydrophobicity increased with the increase in crosslinking time. After polymerization for 24 h, the RSAMs possessed the highest water contact angle of 126°. Owing to their excellent hydrophobicity, the RSAMs via supercritical CO drying exhibited significant oil and organic liquid adsorption capabilities ranging from 6.3 to 18.6 g/g, higher than their state-of-the-art counterparts. Moreover, their robust mechanical properties ensured excellent reusability and recyclability, allowing for multiple adsorption-desorption cycles without significant degradation in performance. The novel sorbent preparation method is facile and inspiring, and the resulting RSAMs are exceptional in capacity, efficiency, stability and regenerability.

摘要

随着工业的快速发展和城市化进程的加速,石油污染对水体造成了严重破坏,其治理一直是研究热点。与传统吸附材料相比,气凝胶具有重量轻、吸附容量大、选择性吸附高的优点,使其成为理想的高性能水处理吸附剂。本研究的目的是以水玻璃为前驱体、氨丙基三乙氧基硅烷为改性剂、苯乙烯为交联剂,开发新型疏水性聚合物增强二氧化硅气凝胶微球(RSAMs)用于水体除油。研究了干燥方法和聚合时间对其结构和吸油能力的影响。干燥方法对微观结构和孔隙结构有显著影响,且在很大程度上还取决于聚合时间。交联时间越长,体积收缩越大,从而导致表观密度越大、孔体积越小、孔径分布越窄、网络结构越致密。值得注意的是,疏水性随交联时间的增加而增强。聚合24小时后,RSAMs的水接触角最高可达126°。由于其优异的疏水性,通过超临界CO2干燥制备的RSAMs对油和有机液体具有显著的吸附能力,吸附量在6.3至18.6 g/g之间,高于同类先进产品。此外,其强大的机械性能确保了优异的可重复使用性和可回收性,可进行多次吸附-解吸循环而性能无明显下降。这种新型吸附剂的制备方法简便且具有启发性,所得的RSAMs在容量、效率、稳定性和可再生性方面表现出色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/046c/10489638/ccf550bec20d/polymers-15-03526-g001.jpg

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