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首页> 外文期刊>Waste Management >Closing the textile loop: Enzymatic fibre separation and recycling of wool/polyester fabric blends
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Closing the textile loop: Enzymatic fibre separation and recycling of wool/polyester fabric blends

机译:闭合纺织品环路:酶法纤维分离和羊毛/聚酯纤维混纺的回收

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摘要

Textile waste presents a serious environmental problem with only a small fraction of products from the fashion industry collected and re-used or recycled. The problem is exacerbated in the case of post-consumer waste by the mixture of different natural and synthetic fibres in blended textiles. The separation of mixed fibre waste, where garments are often multicomponent, presents a major recycling problem as fibres must be separated to single components to enable effective recycling. This work investigates the selective digestion of wool fibres from wool/polyester blended fabrics using an enzymatic approach. Complete degradation of wool fibres was achieved by application of a keratinase in a two-step process with addition of reducing agent and undigested polyester fibres were recovered. Electron microscopy showed complete breakdown of the natural fibres in the fabric blends, while spectroscopic and mechanical analysis of the recovered synthetic fibres confirmed that the enzymatic treatment had no significant impact on the properties of the polyester compared to virgin samples. The polyester fibres are therefore suitable to be recycled to polyester yarn and re-used in the manufacture of new garments or other products. The nutrient rich keratin hydrolysate could be used in microbial growth media or incorporated into bio-fertilisers or animal feed, contributing to the development of the circular economy.
机译:纺织废料带来了严重的环境问题,只有一小部分时装业产品被收集,再利用或回收。在消费后浪费的情况下,不同天然纤维和合成纤维在混纺纺织品中的混合使问题更加严重。在服装通常为多组分的情况下,混合纤维废物的分离提出了一个主要的回收问题,因为必须将纤维分离为单一组分才能有效回收。这项工作研究了使用酶法从羊毛/聚酯混纺织物中选择性消化羊毛纤维的方法。羊毛纤维的完全降解是通过在添加还原剂的两步过程中应用角蛋白酶来实现的,并回收了未消化的聚酯纤维。电子显微镜显示出织物混合物中天然纤维的完全分解,而对回收的合成纤维的光谱和机械分析证实,与原始样品相比,酶处理对聚酯的性能没有显着影响。因此,聚酯纤维适合回收到聚酯纱线中,并重新用于制造新服装或其他产品。富含营养的角蛋白水解物可用于微生物生长培养基或掺入生物肥料或动物饲料中,从而有助于发展循环经济。

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