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用于高效油水乳液分离的坚固超疏水聚二甲基硅氧烷@二氧化硅@UiO-66-OSiR海绵

Robust Superhydrophobic PDMS@SiO@UiO66-OSiR Sponge for Efficient Water-in-Oil Emulsion Separation.

作者信息

Zhai Guanzhong, Wu Junwei, Yuan Zhuorui, Li Hongmei, Sun Daohua

机构信息

Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, P. R. China.

出版信息

Inorg Chem. 2023 Apr 10;62(14):5447-5457. doi: 10.1021/acs.inorgchem.2c03887. Epub 2023 Mar 24.

Abstract

A major challenge in oil/water separation is the processing of surfactant-stabilized emulsions from the water medium. One of the feasible schemes of emulsion separation is the porous melamine sponge coupled with functional particles. Here, we proposed a novel superhydrophobic metal-organic framework (MOF)-based sponge for water-in-oil emulsion separation. The porous melamine sponge was combined with poly(dimethylsiloxane) (PDMS)-coated hydrophobic SiO and UiO66-OSiR particles were prepared for demulsification via the one-step dipping method for the first time. The PDMS@SiO@UiO66-OSiR sponge revealed excellent superhydrophobicity at a water contact angle of 160.7° and superlipophilicity at an oil contact angle of 0°. Compared with the pristine melamine sponge, the size-controllable PDMS@SiO@UiO66-OSiR sponge could separate stabilized water-in-oil emulsions with ultrahigh separation efficiency (>98.64%) and high flux (e.g., 970 L·m·h). Meanwhile, the PDMS@SiO@UiO66-OSiR sponge exhibited superior durability and mechanical reusability. Under harsh conditions such as strong acid and alkali, organic solvent corrosion, etc., all water contact angles of the PDMS@SiO@UiO66-OSiR sponge were over 152°. Furthermore, the stress decreased by 5% when the sponge was subjected to 10 loading/unloading compression cycles at a constant strain of 60%. These results demonstrate that the PDMS@SiO@UiO66-OSiR sponge can efficiently separate water-in-oil emulsions through its adjustable porous structure coupled with demulsification and hydrophobic particles. This study provides a step forward in developing a feasible strategy for the MOF-based sponge for emulsion separation.

摘要

油水分离中的一个主要挑战是处理来自水介质的表面活性剂稳定乳液。乳液分离的可行方案之一是多孔三聚氰胺海绵与功能颗粒相结合。在此,我们提出了一种基于超疏水金属有机框架(MOF)的新型海绵用于油包水乳液分离。首次通过一步浸渍法将多孔三聚氰胺海绵与聚二甲基硅氧烷(PDMS)包覆的疏水SiO相结合,并制备了UiO66-OSiR颗粒用于破乳。PDMS@SiO@UiO66-OSiR海绵在水接触角为160.7°时表现出优异的超疏水性,在油接触角为0°时表现出超亲油性。与原始三聚氰胺海绵相比,尺寸可控的PDMS@SiO@UiO66-OSiR海绵能够以超高的分离效率(>98.64%)和高通量(例如970 L·m·h)分离稳定的油包水乳液。同时,PDMS@SiO@UiO66-OSiR海绵表现出优异的耐久性和机械可重复使用性。在强酸强碱、有机溶剂腐蚀等苛刻条件下,PDMS@SiO@UiO66-OSiR海绵的所有水接触角均超过152°。此外,当海绵在60%的恒定应变下经受10次加载/卸载压缩循环时,应力降低了5%。这些结果表明,PDMS@SiO@UiO66-OSiR海绵可以通过其可调的多孔结构结合破乳和疏水颗粒有效地分离油包水乳液。这项研究为开发基于MOF的乳液分离海绵的可行策略向前迈进了一步。

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