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用于一步去除油水乳液中油、金属离子和阴离子的结构电镀污泥衍生膜。

Structured electroplating sludge derived membrane for one-step removal of oil, metal ions, and anions from oil/water emulsions.

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Hazard Mater. 2023 Jun 15;452:131284. doi: 10.1016/j.jhazmat.2023.131284. Epub 2023 Mar 24.

Abstract

The effective simultaneous treatment of hazardous waste sludge and complex oil/water emulsions in one way is urgently desired but still a challenging issue. Herein, this work for the first time presents a green and efficient strategy to fabricate an electroplating sludge (ES) derived multifunctional self-supporting membrane for the one-step removal of emulsified oils, soluble metal ions, and anions in complex oily wastewater. Due to low cost of ES and sustainability of the solvent selected in fabrication process, the large-scale application of the membrane is easily to promote. The assembled hierarchical nanostructure endowed robust underwater superoleophobicity of the membrane even under various corrosive aqueous environments, as well as excellent ultra-low oil adhesion and anti-oil-fouling performance, without chemical modification. Significantly, the multifunctional membrane possessed desirable simultaneous separation efficiency for five typical oil-in-water emulsions (>99.4%, high oil/water selective wettability), including crude oil-in-water emulsion with high viscosity (>99.6%), Cu (>96.1%, surface complexation and ionic exchange), and Cl (>92.7%, electrostatic attraction). Therefore, this green, low-cost, and multifunctional membrane not only allows the large-scale resource utilization of hazardous waste sludge, but also effectively solves the problems of complex oily wastewater purification.

摘要

迫切需要有一种有效的方法来同时处理危险废物污泥和复杂的油/水乳液,但这仍然是一个具有挑战性的问题。在此,本文首次提出了一种绿色高效的策略,用于制备电镀污泥(ES)衍生的多功能自支撑膜,以一步去除复杂含油废水中的乳化油、可溶性金属离子和阴离子。由于 ES 的低成本和制造过程中所选溶剂的可持续性,该膜的大规模应用很容易得到推广。组装的分级纳米结构使膜即使在各种腐蚀性水基环境下也具有强大的水下超疏油性,以及出色的超低油粘附性和抗油污性能,无需进行化学改性。重要的是,该多功能膜对五种典型的水包油乳液(>99.4%,高油/水选择润湿性)具有理想的同步分离效率,包括高粘度的原油乳液(>99.6%)、Cu(>96.1%,表面络合和离子交换)和 Cl(>92.7%,静电吸引)。因此,这种绿色、低成本、多功能的膜不仅允许大规模利用危险废物污泥,而且还可以有效解决复杂含油废水的净化问题。

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