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Construction of superhydrophobic copper film on stainless steel mesh by a simple liquid phase chemical reduction for efficient oil/water separation

机译:用简单的液相化学降低对不锈钢滤网构建超疏水铜膜,以便高效油/水分离

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摘要

Herein, we present a simple, easily operated, and inexpensive approach to fabricate superhydrophobic and superoleophilic stainless steel mesh via in-situ growth of copper (Cu) nanoparticles and the hydrophobic modification. The obtained meshes exhibit favorable resistance to mechanical abrasion, corrosive aqueous solutions, and hot water (90 degrees C). More importantly, the fabricated meshes can be used to separate a series of oil/water mixtures under harsh (hot or corrosive water) conditions with a separation efficiency of over 98%. Besides, the mesh can be designed into an oil collector via loading unmodified polyurethane (PU) sponge in the folded mesh box, which can quickly and selectively remove oil pollutants floating on water surface. Therefore, it can be expected that the as-prepared mesh with good superhydrophobicity and easy operated fabrication process may provide a candidate not only for gravity driven oil/water separation but also for designing many other oil collector.
机译:在此,我们介绍了一种简单,易于操作和廉价的方法,以通过原位生长和疏水改性的原位生长制备超疏水和超级抑制不锈钢网。所获得的网格对机械磨损,腐蚀性水溶液和热水(90℃)表现出良好的抗性。更重要的是,制造的网格可用于将一系列油/水混合物分离在苛刻(热或腐蚀水)条件下,其分离效率为超过98%。此外,网格可以通过在折叠网盒中加载未改性的聚氨酯(PU)海绵来设计成石油收集器,这可以快速和选择性地除去漂浮在水面上的油污染物。因此,可以预期具有良好的超疏水性和易于操作的制造工艺的AS制备的网格可以提供不仅用于重力驱动的油/水分离的候选者,而且还可以为设计许多其他石油集电器提供候选者。

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