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3D-printed ceramic structures with in situ grown whiskers for effective oil/water separation

机译:3D印刷陶瓷结构与原位生长的晶须,用于有效的油/水分离

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摘要

In this work, ceramics 3D printing combined with in situ grown whiskers are proposed for effective oil/water separation in multiple conditions, including (i) free oil/water mixture, (ii) oil purification, and (iii) separation of an oil-in-water emulsion. 3D printing allows the realization of geometrically complex alumina structures, inclusive of honeycomb meshes, sponges, woodpile scaffolds with flexible configuration of inner channels and struts. Aluminum borate whiskers, featured with superhydrophilicity and underwater superoleophobicity, are synthesized on those printed alumina substrates, acting as the pivotally functional coating. These combined structures possess excellent oil/water separation efficiency (over 99%) and high flowrate. The all-ceramic structures also exhibit remarkable durability in cycling tests and resistance to harsh environment, such as organic solvent, elevated temperature and highly corrosive solution, compared with metal/polymer counterparts. Finally, these all-ceramic filters can be quickly restored by high-temperature heat treatment to remove attached oil or water, so that the filters can be reused to avoid waste generation.
机译:在这项工作中,陶瓷3D印刷与原位生长的晶须相结合,用于多种条件下有效的油/水分离,包括(i)游离油/水混合物,(ii)净化油,(iii)分离油 - 水中乳液。 3D印刷允许实现几何复合氧化铝结构,包括蜂窝网格,海绵,带有柔性通道和支柱的柔性配置的蜂窝状网状物。在印刷的氧化铝基材上合成具有超嗜含量和水下超脂肪性的铝硼酸铝晶须,其作用为可枢转的功能涂层。这些组合结构具有优异的油/水分离效率(超过99%)和高流量。与金属/聚合物对应物相比,全陶瓷结构在循环试验和对恶劣环境中的耐受性耐药性,升高和高度腐蚀性溶液等耐受性。最后,这些全陶瓷过滤器可以通过高温热处理快速恢复,以除去附着的油或水,从而可以重复使用过滤器以避免浪费。

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