College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.
College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.
J Hazard Mater. 2022 Jan 5;421:126824. doi: 10.1016/j.jhazmat.2021.126824. Epub 2021 Aug 5.
Hydrophobic and oleophilic materials are attractive candidates for efficient oil collection due to their excellent oil-water separation. However, the most of currently reported oil adsorption materials are limited resources or require complicated preparation steps, which causes high energy consumption and not be practical for large-scale application. Herein, we report a facile strategy to modify the wettability of Enteromorpha from hydrophilic to hydrophobic, which not only greatly reduces energy consumption but also shows the outstanding capacity for oil-water separation with the maximum adsorption capacities is 11.4 g/g and the contact angle reaches 137°. The successful modification of the Enteromorpha is achieved by grafting n-octyltriethoxysilane on the surface of the pristine Enteromorpha. The hydrophobic and superoleophilic Enteromorpha guarantee adequate voids in the fibrous bundles only for oil adsorption and the oil floating on the seawater is removed by the formation of hydrogen bonding between oil and modified Enteromorpha. By optimizing test, the optimal adsorption conditions are adsorption time of 60 min, oil-water ratio of 1:10 and pH of 7. Our reported hydrophobic organosilane modified Enteromorpha will open a new avenue to control marine oil pollution and suppress the damage of Enteromorpha to the marine ecology system.
疏水亲油材料由于其优异的油水分离性能,是高效吸油的理想选择。然而,目前报道的大多数吸油吸附材料都是有限的资源,或者需要复杂的制备步骤,这导致了高能耗,并且不适用于大规模应用。在此,我们报告了一种简便的策略,可将浒苔的润湿性从亲水变为疏水,这不仅大大降低了能耗,而且还表现出了出色的油水分离能力,最大吸附容量为 11.4 g/g,接触角达到 137°。通过在原始浒苔表面接枝正辛基三乙氧基硅烷,成功地对浒苔进行了修饰。疏水超亲油的浒苔保证了纤维束中有足够的空隙,仅用于吸油,并且通过油和改性浒苔之间形成氢键,将浮在海水中的油除去。通过优化实验,确定了最佳吸附条件为吸附时间 60 min、油水比 1:10 和 pH 值 7。我们报道的疏水有机硅烷改性浒苔将为控制海洋石油污染和抑制浒苔对海洋生态系统的破坏开辟新途径。