Technical Innovation Center for Utilization of Marine Biological Resources, Third Institute of Oceanography Ministry of Natural Resources, Xiamen, 361005, PR China.
Technical Innovation Center for Utilization of Marine Biological Resources, Third Institute of Oceanography Ministry of Natural Resources, Xiamen, 361005, PR China; Fujian Provincial Key Laboratory of Island Conservation and Development, Island Research Center, Ministry of Natural Resources, Pingtan, 350400, PR China.
Chemosphere. 2022 Nov;307(Pt 4):135990. doi: 10.1016/j.chemosphere.2022.135990. Epub 2022 Aug 14.
Development of durable and eco-friendly adsorbents for oil remediation is in great demands. However, most of adsorbents were designed to pursue large capabilities while ignored their strength after adsorbing oil, which might cause secondary oil spilling during complex salvage process. Herein, an eco-friendly and superhydrophobic SiO-modified polyvinyl alcohol composite (H-SiO-G-PVA) sponge with extraordinary rigid structure after oil adsorption is designed for durable oil remediation. Through a two-step hydrolysis-condensation process including deposition of silica microparticles and introduction of hexadecyltrimethoxysilane (HDTMS), a superhydrophobic H-SiO-G-PVA sponge has been successfully constructed. The sponge presents stable superhydrophobicity in various complex environments,therefore it efficiently adsorbs oil from water (up to 6 g g) and separate surfactant-stabilized water/oil emulsion with high efficiency (>99%). Noticeably, the H-SiO-G-PVA sponge maintains tough strength (3.5 MPa) after oil adsorption, which ideally overcomes secondary oil spilling problem and endows the sponge with excellent recycling performances (>20 cycles). Meanwhile, the excellent biocompatibility of the sponge (high cell viability of 91.85%) ensures the potential for practical applications. This rigid, eco-friendly oil-adsorbing sponge that achieves stable superhydrophobicity and recyclability, fulfills the application needs for durable oil remediation.
开发耐用且环保的吸油材料用于油污修复的需求很大。然而,大多数吸油材料的设计都追求高吸油能力,而忽略了它们吸油后的强度,这可能会在复杂的回收过程中导致二次溢油。本文设计了一种环保且超疏水的 SiO 改性聚乙烯醇复合(H-SiO-G-PVA)海绵,其在吸附油后具有非凡的刚性结构,可用于持久的油污修复。通过包括沉积二氧化硅微颗粒和引入十六烷基三甲氧基硅烷(HDTMS)的两步水解缩合过程,成功构建了超疏水 H-SiO-G-PVA 海绵。该海绵在各种复杂环境中均表现出稳定的超疏水性,因此能够高效地从水中(高达 6 g g)吸附油,并高效分离表面活性剂稳定的水/油乳液(>99%)。值得注意的是,H-SiO-G-PVA 海绵在吸附油后仍保持坚韧的强度(3.5 MPa),理想地解决了二次溢油问题,并赋予海绵出色的可回收性能(>20 次循环)。同时,该海绵具有优异的生物相容性(细胞存活率为 91.85%),确保了其在实际应用中的潜力。这种刚性、环保的吸油海绵实现了稳定的超疏水性和可回收性,满足了持久油污修复的应用需求。