首页> 外文期刊>Applied Surface Science >Polyamide 6.6 separates oil/water due to its dual underwater oleophobicity/underoil hydrophobicity: Role of 2D and 3D porous structures
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Polyamide 6.6 separates oil/water due to its dual underwater oleophobicity/underoil hydrophobicity: Role of 2D and 3D porous structures

机译:聚酰胺6.6具有双重水下疏油性/底油疏水性,可分离油/水:2D和3D多孔结构的作用

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Porous polyamide functionalized by plasma or various coatings has been investigated for oil/water separation. In literature, polyamide has rarely been studied for oil removal, and this work investigated the performance of bare polyamide 6.6 (nylon 6.6) in terms of the oil/water separation efficiency and the intrusion pressure, inspiring cost-effective solutions for large-scale oil removal in the industry. Both polyamide meshes possessing two-dimensional (2D) one-layer pores and nonwoven fabrics with three-dimensional (3D) irregular pores were found to be able to separate oil/water with a high efficiency above 98.5%. This finding was attributed to the dual underwater oleophobicity and underoil hydrophobicity of these polyamide samples. The roles of 2D and 3D structures in oil/water separation were illustrated, to provide a new insight into filter designing. Due to its greater intrusion pressure, the 3D netting structure was suggested as being more beneficial for oil/water separation than the 2D structure.
机译:已经研究了通过等离子体或各种涂层功能化的多孔聚酰胺用于油/水分离。在文献中,很少进行聚酰胺的除油研究,这项工作研究了裸聚酰胺6.6(尼龙6.6)在油/水分离效率和侵入压力方面的性能,从而为大型石油开发了经济高效的解决方案行业中的清除。发现具有二维(2D)一层孔的聚酰胺网和具有三维(3D)不规则孔的非织造织物都能够以高于98.5%的效率分离油/水。该发现归因于这些聚酰胺样品的双重水下疏油性和底油疏水性。说明了2D和3D结构在油水分离中的作用,从而为过滤器设计提供了新的见解。由于其较高的侵入压力,因此建议使用3D网状结构比2D结构对油/水分离更有利。

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