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Novel sustainable alternatives for the fashion industry: A method of chemically recycling waste textiles via acid hydrolysis

机译:时尚行业的新型可持续替代品:通过酸性水解化学回收废纺织品的方法

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摘要

The fashion industry has a considerable environmental impact, especially due to the increased generation of waste textiles as a result of fast fashion business models. Although fiber-to-fiber recycling processes are being developed, such a process is in reality a downcycling process, in which the mechanical properties of the textile fibers are impoverished with each cycle. Thus, new alternatives are required to completely close the fashion loop through chemically recycling textile fibers unfit for other types of recycling or resale due to their poor quality. We have evaluated the possibility of using acid hydrolysis to directly depolymerize the cotton fibers in waste textiles to produce a glucose solution, which could subsequently be used for the production of chemicals or fuels. Although a one-step procedure with sul-furic acid was unable to deliver high glucose production, it was possible to achieve a glucose yield over 90% through a two-step procedure, in which concentrated and dilute sulfuric acid were combined to exploit the benefits of both concentrations. Glucose concentrations around 40 g/L were achieved by increasing the solids loading in the two-step process, which might be sufficiently high for the fermentation of the solution into high-value products. Thus, this study demonstrates that it would be possible to chemically recycle (cellulose-based) waste textiles via acid hydrolysis, which, if correctly designed, could avoid the need to use enzymes to achieve high conversion efficiencies.
机译:时尚行业具有相当大的环境影响,特别是由于快速时尚商业模式导致废纺织品的产生增加。尽管正在开发纤维到纤维回收过程,但是这种方法实际上是脱循环过程,其中纺织纤维的机械性能均受每个循环贫困。因此,新的替代方案需要通过化学回收纺织纤维完全关闭时尚环,因为它们的质量差而导致其他类型的回收或转售。我们已经评估了使用酸水解的可能性,直接将棉纤维直接解聚,以产生葡萄糖溶液,随后可以用于生产化学品或燃料。虽然具有硫酸的一步法不能提供高葡萄糖产生,但是可以通过两步方法实现超过90%的葡萄糖产率,其中浓缩和稀硫酸组合以利用益处两种浓度。通过增加两步法中的固体载荷来实现葡萄糖浓度约为40g / L,这可能足够高,以使溶液发酵成高价值产物。因此,本研究表明,通过酸性水解可以化学回收(纤维素)废纺织品,如果正确设计,可以避免使用酶以实现高转化效率的需要。

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  • 来源
    《Waste Management》 |2021年第2期|248-254|共7页
  • 作者单位

    Department of Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden;

    Department of Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden;

    Department of Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden;

    Department of Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden;

    Department of Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cotton; Waste textiles; Recycling; Acid hydrolysis;

    机译:棉布;垃圾纺织品;回收;酸性水解;
  • 入库时间 2022-08-18 22:57:56

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