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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface Design of Separators for Oil/Water Separation with High Separation Capacity and Mechanical Stability
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Surface Design of Separators for Oil/Water Separation with High Separation Capacity and Mechanical Stability

机译:具有高分离能力和机械稳定性的油/水分离器的表面设计

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摘要

A convection heat treatment that can replace existing chemical oxidation methods was developed for the preparation of hierarchically oxidized Cu meshes with various surface morphologies, representing a very simple and green route that does not involve toxic chemicals. Three types of Cu meshes [bumpy-like (BL) and short and long needle-like (NL) structures] exhibited similar separation efficiencies of 95-99% over 20 separation cycles, as indicated by their similar water contact angles (WCAs; 147-150 degrees). However, these Cu meshes exhibited different flux behaviors. Excessively rough and excessively smooth surfaces of the Cu mesh resulted in increased resistance to flow and to a decrease of the penetration of oil. A surface with intermediate smoothness, such as the BL-Cu mesh, was necessary for high flux over a broad range of oil viscosities. Furthermore, a less rough surface was more suitable for the separation of highly-viscous oil. Computational fluid dynamics (CFD) simulations were carried out to support our experimental results. The BL-Cu meshes also showed outstanding mechanical stability because of their low resistance to the flow of fluids.
机译:可以替代现有化学氧化方法的对流热处理用于制备具有各种表面形态的分层氧化Cu网格,代表不涉及有毒化学品的非常简单和绿色的途径。三种类型的Cu啮合[凸起(B1)和短的和长针状(NL)结构表现出95-99%超过20个分离循环的相似分离效率,如其类似的水接触角度所示(WCA; 147 -150度)。然而,这些Cu网格表现出不同的助焊行为。 Cu网格的过粗粗糙且过光表面导致耐流的抗性增加,并降低了油的渗透。具有中间光滑度的表面,例如BL-Cu网,在广泛的油粘度上是高通量所必需的。此外,较少的粗糙表面更适合于分离高粘度的油。进行计算流体动力学(CFD)模拟以支持我们的实验结果。由于它们对流体流动的低抗性,BL-Cu网格也显示出出色的机械稳定性。

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