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Breathing Demulsification: A Three-Dimensional (3D) Free-Standing Superhydrophilic Sponge

机译:呼吸破乳:三维(3D)自由站立的超亲水性海绵

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摘要

A novel three-dimensional (3D) free-standing superhydrophilic sponge for industrial wastewater treatment was formed by combining chitosan and linear polyacrylamide (PAM). When the chitosan-PAM sponge is immersed into an oil-in-water emulsion, the milky white emulsion containing surfactant turns clear and clarified. Demulsification efficiency, capacity, and recyclability of this positively charged chitosan-PAM sponge to oil-in-water emulsions stabilized by different types of surfactants including anionic, nonionic, and cationic surfactants, has been investigated for further practical evaluation. A "breathing demulsification" mechanism is presented to explain this attractive demulsified process. The effective contact area between emulsion and sponge is increased by the microcomposite and nanocomposite hierarchical structure of the chitosan-PAM free-standing sponge. Then, interfacial interactions, size effect, and strain act as the driving force for the demulsification of the emulsified droplets at the surface of the sponge.
机译:壳聚糖和线性聚丙烯酰胺(PAM)的结合形成了一种新型的(3D)独立式超亲水海绵,用于工业废水处理。当将脱乙酰壳多糖-PAM海绵浸入水包油乳液中时,含有表面活性剂的乳白色乳液变得澄清和澄清。已对这种带正电荷的壳聚糖-PAM海绵对由不同类型的表面活性剂(包括阴离子,非离子和阳离子表面活性剂)稳定的水包油乳液的破乳效率,容量和可回收性进行了进一步的实践评估。提出了“呼吸破乳”机制来解释这种有吸引力的破乳过程。壳聚糖-PAM自立式海绵的微复合和纳米复合层次结构增加了乳液和海绵之间的有效接触面积。然后,界面相互作用,尺寸效应和应变充当用于使海绵表面处的乳化液滴反乳化的驱动力。

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