Feng Na, Yong Jiale
School of Chemistry and Chemical Engineering, Southwest University, Chongqing, China.
School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an, China.
Front Chem. 2020 Sep 25;8:585723. doi: 10.3389/fchem.2020.585723. eCollection 2020.
Frequent oil-leakage accidents and large quantities of oil-bearing wastewater discharge cause severe environmental pollution and huge economic losses. Recently, superwetting porous materials are successfully utilized to separate oil/water mixture (OWM) based on the different interfacial behavior of water and oil. Here, we summarize the recent development of efficient oil/water separation (OWS) based on the femtosecond laser-induced superwetting materials. The typical wettability-based separation manners (including "oil-removing" and "water-removing") and the characteristic of the femtosecond laser are introduced as background. Various laser-structured porous sheets with either superhydrophobicity or underwater superoleophobicity are successfully used to separate different OWMs. The laser processing methods, surface wettability, separation process, and separation mechanism of these laser-structured separation materials are reviewed. Finally, the current challenges and prospects in achieving OWS by femtosecond laser microfabrication are discussed.
频繁的漏油事故以及大量含油废水排放造成了严重的环境污染和巨大的经济损失。近年来,基于水和油不同的界面行为,超润湿性多孔材料成功地用于分离油/水混合物(OWM)。在此,我们总结了基于飞秒激光诱导超润湿性材料的高效油/水分离(OWS)的最新进展。介绍了典型的基于润湿性的分离方式(包括“除油”和“除水”)以及飞秒激光的特性作为背景。各种具有超疏水性或水下超疏油性的激光结构化多孔片材成功用于分离不同的油/水混合物。综述了这些激光结构化分离材料的激光加工方法、表面润湿性、分离过程和分离机理。最后,讨论了飞秒激光微加工实现油/水分离目前面临的挑战和前景。