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Impacts of organic matter digestion protocols on synthetic, artificial and natural raw fibers

机译:有机物质消化方案对合成,人工和天然原料纤维的影响

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摘要

As microplastic studies grow, environmental concerns of all kinds of fibers are currently investigated. However, there is a gap in data regarding the impacts of digestion protocols on fibers integrity. This work focuses on the impact of five commonly used digestion protocols on the seven most produced fibers in traditional textile: three synthetics (polyamide 6.6 (PA 6.6), polyethylene terephthalate (PET) and polyacrylonitrile (acrylic)), one artificial (viscose), two vegetal natural (cotton and flax) and one animal natural (wool). The protocols to be tested were selected based on the literature: 10% KOH at 40 °C for 24 h; 10% KOH at 60 °C for 24 h; diluted NaClO at room temperature (~20 °C) for 15 h; 30% H_2O_2 at 40 °C for 48 h; Fenton's reagent with 30% H_2O_2 for 2 h at room temperature (~20 °C). The fibers were characterized before and after digestion. The effects of those protocols on fibers integrity have been assessed using several of their performance parameters. High degradations were observed for PET with 10% KOH 60 °C whereas almost no impact was observed at 40 °C. H_2O_2 digestion affects mechanical properties of different fibers, particularly PA 6.6. Both protocols should be avoided for synthetic fibers analyses. NaClO digestion mainly affected flax and viscose. Diluted NaClO at room temperature for 15 h, 10% KOH at 40 °C for 24 h and Fenton's reagent are more appropriate to maintain fibers integrity.
机译:随着微塑性研究的增长,目前调查各种纤维的环境问题。然而,关于消化协议对纤维完整性的影响的数据存在差距。这项工作侧重于五种常用的消化方案对传统纺织品中的七种最常用的纤维的影响:三种合成(聚酰胺6.6(Pa 6.6),聚对苯二甲酸乙二醇酯(PET)和聚丙烯腈(丙烯酸)),一种人工(粘胶),两种植物自然(棉花和亚麻)和一只动物天然(羊毛)。基于文献选择待测的方案:40℃的10%KOH 24小时;在60℃下10%KOH 24小时;在室温(〜20°C)的稀释NaClO 15小时; 40°C的30%H_2O_2 48小时; Fenton的试剂在室温(〜20°C)的室温下为30%H_2O_2。在消化之前和之后的特征在于纤维。使用几种性能参数评估了这些协议对纤维完整性的影响。对于具有10%KOH 60℃的PET观察到高降解,而几乎在40℃下几乎没有影响。 H_2O_2消化影响不同纤维的机械性能,特别是PA 6.6。对于合成纤维分析,应避免两种方案。 Naclo消化主要影响亚麻和粘胶。在室温下稀释的NaClO 15小时,10%KOH在40℃下24小时,Fenton的试剂更适合维持纤维完整性。

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  • 来源
    《Science of the total environment》 |2020年第15期|141230.1-141230.11|共11页
  • 作者单位

    Laboratoire Eau Environnement et Systemes Urbains LEESU Ecole des Ponts. Universite Paris-Est Creteil 61 avenue du General de Gaulle 94010 Creteil Cedex France;

    Ecole Nationale Superieure des Arts et Industries Textiles GEMTEX 2 Allee Louise et Victor Champier 59056 Roubaix France;

    Laboratoire Eau Environnement et Systemes Urbains LEESU Ecole des Ponts. Universite Paris-Est Creteil 61 avenue du General de Gaulle 94010 Creteil Cedex France GERS-LEE Universite Gustave Eiffel IFSTTAR F-44344 Bouguenais France;

    Ecole Nationale Superieure des Arts et Industries Textiles GEMTEX 2 Allee Louise et Victor Champier 59056 Roubaix France;

    Laboratoire Interuniversitaire des Systemes Atmospheriques (USA) UMR CNRS 7583 Universite Paris-Est-Creteil Universite de Paris Institut Pierre Simon Laplace (IPSL) Creteil France;

    Laboratoire Eau Environnement et Systemes Urbains LEESU Ecole des Ponts. Universite Paris-Est Creteil 61 avenue du General de Gaulle 94010 Creteil Cedex France;

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

    Fibers; Digestion protocols; Impact assessment; Microplastic;

    机译:纤维;消化协议;影响评估;microplastic.;

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