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Continuous, high-flux and efficient oil/water separation assisted by an integrated system with opposite wettability

机译:通过具有相反润湿性的集成系统辅助进行连续,高通量和有效的油/水分离

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To resolve the drawbacks that single-mesh involved for oil/water separation, such as batch processing mode, only one phase was purified and the quick decrease in flux et al., herein, a two-way separation T-tube device was designed by integrating a pair of meshes with opposite wettability, i.e., underwater superoleophobic and superhydrophobic/superoleophilic properties. Such integrated system can continuously separate both oil and water phase from the oil/water mixtures simultaneously through one-step procedure with high flux (above 3.675 L m(-2) s(-1)) and high separation efficiency larger than 99.8% regardless of the heavy oil or light oil involved in the mixture. Moreover, the as-prepared two meshes still maintained high separation efficiency larger than above 98.9% even after 50 cycle-usages. It worthy mentioned that this two-way separation mode essentially solves the oil liquid accumulation problem that is the single separation membrane needs to tolerate a large hydrostatic pressure caused by the accumulated liquid. We deeply believe this two-way separation system would provide a new strategy for realizing practical applications in oil spill clean-up via a continuous mode. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了解决油/水分离中涉及单网的缺点,例如分批处理模式,仅纯化了一个相,并且通量快速下降等,本文设计了一种双向分离T型管装置集成一对具有相反润湿性的网孔,即水下超疏油性和超疏水/超亲油性。这种集成系统可以通过一步程序同时从油/水混合物中连续分离出油相和水相,并且通量高(3.675 L m(-2)s(-1)以上),分离效率大于99.8%。混合物中所含的重油或轻油。而且,即使经过50次循环使用,所制备的两个筛网仍保持大于98.9%以上的高分离效率。值得一提的是,这种双向分离模式从根本上解决了油液累积的问题,即单个分离膜需要承受由累积的液体引起的大静水压力。我们深信,这种双向分离系统将为通过连续模式实现溢油清理的实际应用提供新的策略。 (C)2017 Elsevier B.V.保留所有权利。

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