Liu Xianfeng, Liu Zhong, Wang Xueyan, Gao Yuan, Zhang Jun, Fan Tingting, Ning Xin, Ramakrishna Seeram, Long Yun-Ze
Collaborative Innovation Center for Nanomaterials & Devices, College of Physics, Qingdao University, Qingdao 266071, China.
Collaborative Innovation Center for Nanomaterials & Devices, College of Physics, Qingdao University, Qingdao 266071, China; Industrial Research Institute of Nonwovens & Technical Textiles, College of Textiles & Clothing, Qingdao University, Shandong Center for Engineered Nonvovens, Qingdao 2266071, China.
J Hazard Mater. 2022 Oct 15;440:129790. doi: 10.1016/j.jhazmat.2022.129790. Epub 2022 Aug 17.
Oil leakage has posed serious threat to the environment, but still remain a great challenge to be solved especially for harsh environmental conditions. Herein, robust superhydrophobic nickel hydroxide grown by hydrothermal method and stearic acid modification on a blow-spun polyacrylonitrile (PAN)/AlO nanofibrous sponge was proposed, so that the nickel hydroxide-modified polyacrylonitrile sponge (NPAS) was successfully obtained for efficient oil-water separation. The porous NPAS with a distinctive hierarchically layered structure, which exhibited excellent separation efficiency and mechanical elasticity. Due to its superhydrophobic and high porosity, the absorption capacity of NPAS could reach as high as 45 g g. It could not only separate a series of oil-water mixture with a high steady flux of 12,413 L m h (dichloromethane-water), but also separate stabilized emulsions with a superior flux 2032 L m h (water-in-dichloromethane) under gravity, all of that with above 99.92% separation efficiencies, which was higher than that of the most reported sponges. Most importantly, its strong acid/alkali resistance enable it is suitable for hazardous materials treatment applications in harsh environmental conditions. This novel NPAS via facile large-scale blow-spinning provide an efficient strategy for oil-containing wastewater treatment and environmental protection.
漏油已对环境构成严重威胁,但仍是一个亟待解决的重大挑战,尤其是在恶劣环境条件下。在此,提出了一种通过水热法生长并经硬脂酸改性的坚固超疏水氢氧化镍,其生长在吹纺聚丙烯腈(PAN)/AlO纳米纤维海绵上,从而成功制备出用于高效油水分离的氢氧化镍改性聚丙烯腈海绵(NPAS)。具有独特分层结构的多孔NPAS表现出优异的分离效率和机械弹性。由于其超疏水性和高孔隙率,NPAS的吸附容量可达45 g/g。它不仅能以12413 L·m⁻²·h⁻¹的高稳定通量分离一系列油水混合物(二氯甲烷-水),还能在重力作用下以2032 L·m⁻²·h⁻¹的优异通量分离稳定乳液(水包二氯甲烷),所有这些分离效率均高于99.92%,高于大多数已报道的海绵。最重要的是,其强大的耐酸碱性能使其适用于恶劣环境条件下的有害物质处理应用。这种通过简便的大规模吹纺制备的新型NPAS为含油废水处理和环境保护提供了一种有效的策略。