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Magnetically driven floating foams for the removal of oil contaminants from water

机译:磁力驱动的浮动泡沫,用于去除水中的油污

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摘要

In this study, we present a novel composite material based on commercially available polyurethane foams functionalized with colloidal superparamagnetic iron oxide nanoparticles and submicrometer polytetrafluoroethylene particles, which can efficiently separate oil from water. Untreated foam surfaces are inherently hydrophobic and oleophobic, but they can be rendered water-repellent and oil-absorbing by a solvent-free, electrostatic polytetrafluoroethylene particle deposition technique. It was found that combined functionalization of the polytetrafluoroethylene-treated foam surfaces with colloidal iron oxide nanoparticles significantly increases the speed of oil absorption. Detailed microscopic and wettability studies reveal that the combined effects of the surface morphology and of the chemistry of the functionalized foams greatly affect the oil-absorption dynamics. In particular, nanoparticle capping molecules are found to play a major role in this mechanism. In addition to the water-repellent and oil-absorbing capabilities, the functionalized foams exhibit also magnetic responsivity. Finally, due to their light weight, they float easily on water. Hence, by simply moving them around oil-polluted waters using a magnet, they can absorb the floating oil from the polluted regions, thereby purifying the water underneath. This low-cost process can easily be scaled up to clean large-area oil spills in water.
机译:在这项研究中,我们介绍了一种新型的复合材料,该材料基于可商购的聚氨酯泡沫塑料,该泡沫材料经胶体超顺磁性氧化铁纳米颗粒和亚微米级的聚四氟乙烯颗粒官能化,可以有效地将油与水分离。未经处理的泡沫表面具有固有的疏水性和疏油性,但可以通过无溶剂的静电聚四氟乙烯颗粒沉积技术使其具有疏水性和吸油性。发现聚四氟乙烯处理的泡沫表面与胶态氧化铁纳米颗粒的组合功能化显着提高了吸油速度。详细的微观和润湿性研究表明,表面形态和功能化泡沫化学性质的综合影响极大地影响了吸油动力学。特别地,发现纳米颗粒加帽分子在该机制中起主要作用。除了具有疏水和吸油功能外,功能化泡沫还表现出磁响应性。最后,由于重量轻,它们很容易在水上漂浮。因此,通过使用磁铁简单地将它们在油污染的水周围移动,它们就可以吸收来自污染区域的浮油,从而净化下方的水。这种低成本的过程可以轻松扩大规模,以清洁水中大面积溢油的情况。

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