通过简便方法制备用于高效油水分离、快速原油回收及主动除冰的、由MXene和木质素颗粒修饰的光热超疏水三聚氰胺海绵。

Facile Preparation of Photothermal Superhydrophobic Melamine Sponge Decorated with MXene and Lignin Particles for Efficient Oil/Water Separation, Fast Crude Oil Recovery, and Active Deicing.

作者信息

Wang Mingkun, Qiao Lei, Ma Shiyu, He Zhiwei

机构信息

Anti-Icing Materials (AIM) Laboratory, College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

Langmuir. 2024 Mar 19;40(11):5978-5991. doi: 10.1021/acs.langmuir.3c04006. Epub 2024 Mar 5.

Abstract

Frequent oil spills and the discharge of oily wastewaters have caused a serious threat to the environment, ecosystems, and human beings. Herein, a photothermal and superhydrophobic melamine sponge (MS) decorated with MXene and lignin particles has been prepared for the separation of oil/water mixtures, the recovery of crude oils, and active deicing. The obtained superhydrophobic melamine sponge shows a water contact angle (WCA) of 152.3° and an oil contact angle of ∼0° and possesses good chemical stability, thermal stability, and mechanical durability in terms of being immersed in various liquids (i.e., corrosive solutions, organic solvents, and boiling water) and being abrased by sandpapers. This superhydrophobic MS displays a high oil adsorption capacity of CCl, up to 91.6 times its own weight and a high separation efficiency of 99.4%. Furthermore, the maximum surface temperature of the superhydrophobic MS reaches 57.5 °C under sunlight irradiation (1.0 kW/m) due to the excellent photothermal heating conversion performance of MXene and lignin particles. When exposed to sunlight, the superhydrophobic MS can quickly absorb viscous crude oils up to 72 times its own weight. Also, the WCA of the superhydrophobic MS remains above 146° after 50 icing/deicing cycles, showing excellent photothermal anti-icing properties. Thus, this study presents an easy and low-cost method for designing photothermal superhydrophobic melamine sponges and opens a new avenue to the applications of efficient oil/water separation, fast crude oil recovery, and active deicing.

摘要

频繁的石油泄漏和含油废水排放对环境、生态系统和人类造成了严重威胁。在此,制备了一种用MXene和木质素颗粒修饰的光热超疏水三聚氰胺海绵(MS),用于油水混合物的分离、原油回收和主动除冰。所制备的超疏水三聚氰胺海绵的水接触角(WCA)为152.3°,油接触角约为0°,并且在浸入各种液体(即腐蚀性溶液、有机溶剂和沸水)以及被砂纸磨损时,具有良好的化学稳定性、热稳定性和机械耐久性。这种超疏水MS对CCl的吸油能力很高,可达其自身重量的91.6倍,分离效率高达99.4%。此外,由于MXene和木质素颗粒具有优异的光热加热转换性能,在阳光照射(1.0 kW/m)下,超疏水MS的最高表面温度达到57.5°C。在阳光照射下,超疏水MS能迅速吸收高达其自身重量72倍的粘性原油。而且,经过50次结冰/除冰循环后,超疏水MS的WCA仍保持在146°以上,显示出优异的光热防冰性能。因此,本研究提出了一种简便且低成本的方法来设计光热超疏水三聚氰胺海绵,并为高效油水分离、快速原油回收和主动除冰的应用开辟了一条新途径。

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