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用于有效染料过滤的具有聚合物纳米复合活性层的聚酯过滤器的研制。

Development of polyester filters with polymer nanocomposite active layer for effective dye filtration.

作者信息

Pasichnyk Mariia, Gaálová Jana, Minarik Peter, Václavíková Miroslava, Melnyk Inna

机构信息

V.O. Sukhomlynskyi National University of Mykolaiv, 24, Nikolska, Mykolaiv, 54030, Ukraine.

Institute of Chemical Process Fundamentals of the CAS, v.v.i., 135, Rozvojova, Prague, 16500, Czech Republic.

出版信息

Sci Rep. 2022 Jan 19;12(1):973. doi: 10.1038/s41598-022-04829-4.

Abstract

Organic dyes such as methyl orange (MO) and methylene blue (MB) are widely used in different industries and have become one of the leading emerging water contaminants. The purpose of the current research is to develop new polymer nanocomposite filters for the effective elimination of the dyes, which are non-biodegradable and not efficiently removed by traditional treatment methods. New padded and covered filters were produced applying polystyrene-acrylic/ZnO nanocomposite on the polyester surface by blade coating and one-bath pad methods. Principal results determined by SEM analysis confirm that functionalised layer can create unprecedented function of filter textile material depending on the way of treatment. Due to the modification, the surface area increased from 5.9 for untreated polyester to 85.2 (padded), 44.6 (covered) m/g. The measured pore size of produced filters is around 3.4 nm, which corresponds to the mesoporous structure. Our study reported effective filters with the rate of MB and MO removal efficiencies up to 60%. Moreover, a colourless reduced form of MB-leuco-methylene blue (LMB) could be created. The functionalised layer of the developed filters through hydrogen bonding between the -OH groups of styrene-acrylic molecules and the -N(CH) groups on LMB can stabilise LMB.

摘要

诸如甲基橙(MO)和亚甲基蓝(MB)之类的有机染料在不同行业中被广泛使用,并且已成为主要的新兴水污染物之一。当前研究的目的是开发新型聚合物纳米复合过滤器,以有效去除这些不可生物降解且传统处理方法无法有效去除的染料。通过刮涂法和一浴浸轧法将聚苯乙烯 - 丙烯酸/ZnO纳米复合材料应用于聚酯表面,制备了新型的加衬和覆盖过滤器。扫描电子显微镜(SEM)分析确定的主要结果证实,功能化层可根据处理方式赋予过滤纺织材料前所未有的功能。由于改性,表面积从未经处理的聚酯的5.9增加到85.2(加衬)、44.6(覆盖)m²/g。所制备过滤器的测量孔径约为3.4纳米,这对应于介孔结构。我们的研究报告了有效过滤器对MB和MO的去除效率高达60%。此外,还可以生成无色的还原形式的MB——无色亚甲基蓝(LMB)。通过苯乙烯 - 丙烯酸分子的 -OH基团与LMB上的 -N(CH₃)基团之间的氢键作用,所开发过滤器的功能化层可以稳定LMB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eab/8770467/1bd211ab393b/41598_2022_4829_Fig1_HTML.jpg

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