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A novel approach to designing a biomimetic wettable patterned surface for highly efficient and continuous surfactant-free oil emulsion separation

机译:一种设计用于高效和连续无表面活性剂油乳液分离的仿生可湿性图案化表面的新方法

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摘要

Emulsion separation has global environmental implications owing to the increasing generation of oily industrial wastewater and oil spill incidents. For most existing emulsion separation techniques, secondary treatments are required, such as using additional chemicals or high voltages for emulsion decomposition. Furthermore, the minimum diameter of separable oil droplets is limited, or the separation flux is low. Conventional methods are difficult to apply in practice owing to their low continuity, lack of separation ability, or limited throughput capacity. In this study, a wettability-patterned surface is designed to realize micron-sized oil droplet separation and high-purity oil collection (99.9%). The surface comprises a subaqueous superoleophobic region (interior space) and a subaqueous superoleophilic region (exterior rectangle), with a subaqueous superoleophilic drainage path. The surface outlet geometry was optimized according to Stokes' law to enable quick delivery of the condensed oil film to the collector, thereby improving the practical oil collection efficiency. An underwater system with this patterned surface can be used to continuously separate oil-water emulsions. The proposed method is considered to be the world's first surfactant-free emulsion-separation technique, and serves as a promising tool for isolating and collecting micron-sized oil droplets in real aquatic environments for reuse.
机译:乳液分离由于越来越多的油性工业废水和溢油事件而产生全球环境影响。对于大多数现有的乳液分离技术,需要进行二次处理,例如使用额外的化学物质或高电压进行乳液分解。此外,可分离油滴的最小直径受到限制,或者分离磁通量低。由于它们的低连续性,缺乏分离能力或有限的吞吐量,难以在实践中难以施加常规方法。在本研究中,润湿性图案化表面设计用于实现微米尺寸的油滴分离和高纯度油收集(99.9%)。表面包含亚水上超级电池区域(内部空间)和亚水上高级粒细胞区域(外矩形),具有亚水上的超级抑制排水路径。表面出口几何形状根据Stokes的定律进行了优化,以便能够快速向收集器输送冷凝的油膜,从而提高了实用的油收集效率。具有该图案化表面的水下系统可用于连续分离油水乳液。所提出的方法被认为是世界上第一种无表面活性剂的乳液分离技术,并用作在真实水生环境中隔离和收集微米尺寸的油滴的有前途的工具,以进行重用。

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