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首页> 外文期刊>Separation and Purification Technology >Under-oil superhydrophilic TiO2/poly(sodium vinylphosphonate) nanocomposite for the separation of water from oil
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Under-oil superhydrophilic TiO2/poly(sodium vinylphosphonate) nanocomposite for the separation of water from oil

机译:油底含水中的TiO2 /聚(乙烯基膦酸钠)纳米复合材料用于从油中分离水

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Under-water superoleophobic filters lose their water separation capability if they are contaminated with oil. In contrast, an oil contaminant in a filter that is both superoleophobic underwater and superhydrophilic underoil can be readily displaced with water. Even after contamination by oil, such a filter can self-clean in water and recreate and maintain an integral water film in the pores to enable sustained water separation. Unfortunately, there have been only a few reported examples of under-oil superhydrophilic materials. We report herein a novel under-oil superhydrophilic material consisting of TiO2 nanoparticles that are coated by an excess of a sodium salt of poly(vinylphosphonic acid) (PVPA.nNa). This nanocomposite can be applied as a coating onto various substrates such as glass plate, glass wool, cotton ball, and stainless-steel metal mesh for permanent self-cleaning and hexadecane collection. More interestingly, a coated cotton ball could be affixed to the bottom end of a standing tube and allows the selective permeation of water from a stirred water/hexadecane mixture. Unfortunately, a coated metal mesh with larger pores and thus much higher water flux could not achieve the separation most likely because the weakness of the water film in the mesh pores induces a negative value of Laplace pressure. We achieve this separation for the coated metal mesh by attaching a thin electrospun superhydrophobic mat onto its lower side to thus yield a Janus filter. Our assumption is that the unidirectional upward water-pulling force of the Janus filter in this case helps to stabilize the water film in the metal mesh. Due to the facile synthesis of TiO(2)PVPA center dot nNa and the demonstrated applications of the TiO2-PVPA center dot nNa coating, this study should inspire further research in high-flux filters for water separation from oil.
机译:水下超级超级过滤器如果被油污染,则失去了水分离能力。相反,过滤器中的油污染物在水下的过滤器和超硫酸衬垫的过滤器中可以容易地与水容易移位。即使通过油污污染,这种过滤器也可以在水中自清洁并在孔中重新创建并保持一体的水膜,以实现持续的水分离。不幸的是,仅少数人报道的油脂过性材料的例子。我们在本文中报告了一种新型的含油底碱基,由TiO2纳米颗粒组成,其通过过量的聚(乙烯基膦酸)(PVPA.nNA)过量涂覆。该纳米复合材料可作为涂层涂覆到各种基板上,例如玻璃板,玻璃棉,棉球和不锈钢金属网,用于永久性自清洁和十六烷收集。更有趣的是,涂覆的棉球可以固定在立管的底端上,并允许从搅拌的水/十六甲烷混合物中选择性渗透水。不幸的是,具有较大孔的涂覆的金属网,从而越来越多的水通量无法达到最有可能的分离,因为网眼孔中的水膜的弱点引起拉普拉斯压力的负值。我们通过将薄的电纺超疏水垫连接到其下侧来实现涂覆的金属滤网的这种分离,从而产生Janus过滤器。我们的假设是,在这种情况下,Janus过滤器的单向向上水拉力有助于稳定金属网中的水膜。由于TiO(2)PVPA中心点NNA的构成和TiO2-PVPA中心点NNA涂层的展示应用,该研究应激发高通量过滤器的进一步研究,用于与油分离。

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