The use of graphene nanoplatelet‐embedded PA‐6 nanofibres to remove turbidity from water

Ahmet Alp Zembat, Elifnur Gezmis‐Yavuz, Derya Y. Koseoglu‐Imer, C. Elif Cansoy
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Abstract

The global challenge of providing clean water at an affordable cost has led to the need for the development of low‐cost and non‐toxic materials for the treatment and recycling of waste water. Nanofibres have emerged as a promising solution due to their superior properties. To this end, composite polyamide‐6 (PA‐6) nanofibres embedded with graphene nanoplatelets (GNPs) were prepared by electrospinning. The study investigated the effect of the ratio of GNPs, which ranged from 0.1 to 1.0 wt.%, on the mechanical properties of nanofibres and the removal of turbidity. The results showed that PA‐6 nanofibres with 0.5 wt.% GNP exhibited enhanced mechanical properties, and increasing the GNP ratio led to lower turbidity values. To the best of our knowledge, GNP‐embedded PA‐6 nanofibres have not been used for turbidity removal before, and these filter materials are promising due to their excellent fibre structure, mechanical strength, and high level of turbidity removal.
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使用嵌入石墨烯纳米小板的 PA-6 纳米纤维去除水中的浊度
以可承受的成本提供清洁水是一项全球性挑战,因此需要开发低成本、无毒的材料来处理和回收废水。纳米纤维因其卓越的性能而成为一种前景广阔的解决方案。为此,研究人员通过电纺丝法制备了嵌入石墨烯纳米片(GNPs)的复合聚酰胺-6(PA-6)纳米纤维。研究调查了 GNPs 的比例(0.1-1.0 wt.%)对纳米纤维机械性能和去除浊度的影响。结果表明,含有 0.5 wt.% GNP 的 PA-6 纳米纤维具有更高的机械性能,而增加 GNP 的比例可降低浊度值。据我们所知,包埋 GNP 的 PA-6 纳米纤维以前从未用于去除浊度,这些过滤材料因其优异的纤维结构、机械强度和高水平的浊度去除率而大有可为。
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