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Polybenzoxazine-Functionalized Melamine Sponges with Enhanced Selective Capillarity for Efficient Oil Spill Cleanup

机译:聚苯细胞杂志 - 官能化三聚氰胺海绵,具有增强的选择性毛细血管,用于有效的漏油清理

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摘要

Severe environmental and ecological issues arising from frequent oil spill accidents have been great worldwide concerns. Considering the abruptness, complex condition, and long-term perniciousness of the spilled oil, the development of economic and versatile materials to quickly remove oil contaminants, especially for oil with high viscosity from a large water body, is of significant importance but remains a big challenge. Herein, we demonstrated a facile strategy to fabricate a versatile hierarchical structured sponge with superhydrophobicity and powerful oil capillarity via the in situ polymerization of a novel phenolic resin (polybenzoxazine) composite open-cell sponges. The tunable hierarchical structures of the as-prepared sponge significantly improved its water repellence and oil capillarity; meanwhile, a plausible mechanism is also proposed. With the merits of high porosity, excellent water repellence, enhanced oil capillarity, and robust mechanical stability, the obtained sponge exhibited an intriguing oil spill cleanup performance with fast oil absorption speed, good recyclability, and high absorption capacity. Besides that, the modified sponge could also be utilized for the separation of oil/water mixture with individual phase and the surfactant-stabilized emulsion solely under the drive of gravity. The robust oil/water separation performance, low cost, and facile synthesis strategy make the resultant sponges a competitive material for the large-scale oil spill emergency remediation.
机译:频繁的油泄漏事故产生的严重环境和生态问题在全球范围内令人担忧。考虑到溢出的油突然,复杂的条件和长期的知情,经济和多功能材料的发展,以迅速去除油污染物,特别是对于来自大型水体的高粘度的油,具有重要意义,但仍然是一个大的挑战。在此,我们证明了一种容易策略,用于通过新型酚醛树脂(聚苯细胞)复合型开孔海绵的原位聚合,制造具有超疏水性和强大的油毛细血管的通用层状结构海绵。由制备的海绵的可调谐等级结构显着改善了其防水和油毛细血管;同时,还提出了一种合理的机制。通过高孔隙率,优异的防水性,增强的油毛细管度和鲁棒的机械稳定性,所获得的海绵具有较快的油溢出速度,可容易吸油速度,良好的可再循环性和高吸收能力。此外,改性海绵还可用于将油/水混合物与单独相和表面活性剂稳定的乳液分离在重力的驱动下。强大的油/水分离性能,低成本和容易合成策略使所得海绵成为大型漏油应急修复的竞争材料。

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