首页> 外文期刊>Green chemistry >A facile and mild strategy to fabricate an underwater superoleophobic and underoil superhydrophobic mesh with outstanding anti-viscous oil-fouling properties for switchable high viscosity oil/water separation
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A facile and mild strategy to fabricate an underwater superoleophobic and underoil superhydrophobic mesh with outstanding anti-viscous oil-fouling properties for switchable high viscosity oil/water separation

机译:一种易于和温和的策略,用于制造水下超级高压射孔超散滤网,具有出色的抗粘性油污性能,可实现可切换的高粘度油/水分离

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摘要

Underwater superoleophobic and underoil superhydrophobic materials have distinct advantages for switchable oil-water separation. Although some strategies have been developed to fabricate these materials, harsh conditions such as high temperature and pressure, abundant harmful organic solvents and complicated devices are usually needed, limiting their practical applications. Moreover, due to the high adhesion properties of some oils such as crude oil, the anti-viscous oil-fouling performance of usual superwetting material is still unsatisfactory. Herein, based on the corrosion process and mussel-inspired surface coating, we have developed a mild and eco-friendly route to transform iron meshes into underwater superoleophobic and underoil superhydrophobic materials for switchable high viscosity oil-water separation. The corrosion process can generate microsphere-nanosheet structures (MNS) composed of microspheres and abundant nanosheet arrays on the iron mesh surface, while the subsequent mussel-inspired surface coating can form a compact layer to protect the MNS from damage, finally endowing the resultant mesh with durable underwater superoleophobicity and underoil superhydrophobicity. Significantly, the resultant mesh exhibits excellent anti-crude oil-fouling properties, and can separate various oil-water mixtures with high efficiency (all above 98%). Moreover, after immersion in acidic or basic solutions, the wetting properties of the mesh showed no apparent variation, demonstrating that the mesh possesses a desirable environmental stability. According to the dual superlyophobic properties of the as-prepared mesh in water-oil systems, a dual-channel device has been designed to realize the continuous separation of the crude oil-water mixture with high efficiency (above 93% after 30 cycles). This strategy may open a new avenue to prepare high-performance separation materials for viscosity oil-water separation.
机译:水下超级高压血管外疏水材料具有可切换油水分离的明显优势。虽然已经开发了一些策略来制造这些材料,但通常需要苛刻的条件,如高温和压力,丰富的有害有机溶剂和复杂的装置,限制了它们的实际应用。此外,由于一些油脂如原油如原油的高粘合性能,通常的过度雨量材料的抗粘性油污性能仍然不令人满意。这里,基于腐蚀过程和贻贝鼓励的表面涂层,我们开发了一种温和和生态友好的途径来将铁网转化为水下超级药物和弧冲外超疏水材料,用于可切换的高粘度油水分离。腐蚀过程可以产生由微球和铁网表面上的微球和丰富的纳米片阵列组成的微球 - 纳秒结构(MNS),而随后的贻贝鼓励的表面涂层可以形成紧凑层以保护MNS免受损坏,最终赋予所得网格耐久的水下超脂肪和肺部超水性。值得注意的是,所得网格表现出优异的抗原油污垢性能,可以将各种油水混合物分离高效率(全部以上98%)。此外,在浸入酸性或碱性溶液后,网状物的润湿性能显示出明显的变化,表明网眼具有所需的环境稳定性。根据水 - 油系统中的制备网格的双层高层性质,设计了双通道装置,以实现原油 - 水混合物在高效率的连续分离(在30次循环后93%以上)。该策略可以开辟新途径,为粘度油水分离制备高性能分离材料。

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