Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia E-mail:
School of Mechanical Engineering, Sichuan University, Chengdu 610065, China.
Water Sci Technol. 2023 Nov;88(10):2581-2593. doi: 10.2166/wst.2023.343.
Separation of oil and water has become a daunting task at a global scale due to the frequent presence of industrial oily wastewater. This study describes the synthesis of a Bio-Ag nanoparticle and its utilization in fabricating superhydrophobic (SH) films on textile fibers for separating oil-water mixture. The Bio-Ag nanoparticles were prepared from grape seed extract. The study examined various aspects of the synthesized SH textile fiber, including its morphology, wettability, surface composition, chemical stability, mechanical stability, oil absorption capacity, oil-water separation performance, and flux rate. The results indicate that the developed Bio-Ag-based SH textile filter has excellent SH properties, with a low water sliding angle of 1° and a high water contact angles of 159°. The SH textile filter exhibited good separation efficiency, oil absorption capacity, and flux rate toward silicone oil, toluene, and petroleum ether. The SH textile filter also demonstrated satisfactory chemical and mechanical stability. The developed Bio-Ag-based SH textile filter has the potential to be an efficient material for oil-water separation applications.
由于工业含油废水的频繁出现,油水分离在全球范围内已成为一项艰巨的任务。本研究描述了一种生物银纳米粒子的合成及其在纺织纤维上制备超疏水(SH)薄膜以分离油水混合物中的应用。生物银纳米粒子是由葡萄籽提取物制备的。本研究考察了所合成的 SH 纺织纤维的各个方面,包括其形态、润湿性、表面成分、化学稳定性、机械稳定性、吸油能力、油水分离性能和通量。结果表明,所开发的基于生物银的 SH 纺织过滤器具有优异的 SH 性能,水滑动角低至 1°,水接触角高达 159°。SH 纺织过滤器对硅油、甲苯和石油醚表现出良好的分离效率、吸油能力和通量。SH 纺织过滤器还表现出良好的化学和机械稳定性。所开发的基于生物银的 SH 纺织过滤器有可能成为油水分离应用的高效材料。