首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Facile preparation of superwetting surfaces by dip-coating of silane for efficient separation of different types of oils from water
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Facile preparation of superwetting surfaces by dip-coating of silane for efficient separation of different types of oils from water

机译:硅烷浸涂层涂层涂层涂层的舒适制备,以便在水中有效分离不同类型的油

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The application of membranes for environmental applications is becoming increasingly popular with researchers and scientists. This work reports the surface modification of membranes by a facile technique and its subsequent use for efficient separation of different types of oils from water. Stainless steel membranes were dip-coated with different concentrations of a low surface energy silane, perfluorooctyltrichlorosilane. The bonding between the silane film and substrate were confirmed by the use of spectroscopic techniques such as X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy. Scanning electron microscopic images showed the coatings to be continuous and uniform, an observation that was corroborated by the presence of almost spherical water droplets on different regions of the coated membrane. Contact angle measurements with representative oils and water revealed the superoleophilic (CA similar to 0 degrees) and superhydrophobic (CA similar to 150.5 degrees) character of the modified membrane after seven immersion cycles in the silane. The coated membrane was able to separate different types of oils from water with a high efficiency (>95 %) that was maintained after repeated passage. The separation mechanism was explained by a theoretical model that takes into account interfacial tension and pressure-driven forces. The usefulness of the coated membrane for large-scale applications was demonstrated by the high values of oil fluxes and the large intrusion pressures determined experimentally. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:膜对环境应用的应用变得越来越受研究人员和科学家越来越受欢迎。这项工作通过容易技术报告了膜的表面改性及其随后用于从水中有效分离不同类型的油。用不同浓度的低表面能硅烷,全氟辛基三氯硅烷浸涂不锈钢膜。通过使用诸如X射线光电子谱和傅里叶变换红外光谱的光谱技术来确认硅烷膜和衬底之间的键合。扫描电子显微镜图像显示涂层是连续且均匀的观察,该观察通过在涂覆膜的不同区域上存在几乎球形水滴而被证实。具有代表性油和水的接触角测量显示硅烷中七个浸入循环后改性膜的超疏水性(Ca类似于0度的Ca)和超疏水(Ca类似于150.5度)的特性。涂覆的膜能够将不同类型的油分离在水中的高效率(> 95%),其在重复通过后保持。通过考虑界面张力和压力驱动力的理论模型解释了分离机制。通过电量的高值证明了涂覆膜对大规模应用的有用性,并且通过实验确定的大型入侵压力。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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