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Enzymatic recycling of thermoplastic polyurethanes: Synergistic effect of an esterase and an amidase and recovery of building blocks

机译:热塑性聚氨酯的酶回收:酯酶和酰胺酶的协同作用与结构单元的回收

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摘要

Biological recycling of polyurethanes (PU) is a huge challenge to take up in order to reduce a large part of the environmental pollution from these materials. However, enzymatic depolymerization of PU still needs to be improved to propose valuable and green solutions. The present study aims to identify efficient PU degrading enzymes among a collection of 50 hydrolases. Screenings based on model molecules were performed leading to the selection of an efficient amidase (E4143) able to hydrolyze the urethane bond of a low molar mass molecule and an esterase (E3576) able to hydrolyze a waterborne polyester polyurethane dispersion. Degradation activities of the amidase, the esterase and a mix of these enzymes were then evaluated on four thermoplastic polyurethanes (TPU) specifically designed for this assay. The highest degradation was obtained on a polycaprolactone polyol-based polyurethane with weight loss of 33% after 51 days measured for the esterase. Deep cracks on the polymer surface observed by scanning electron microscopy and the presence of oligomers on the remaining TPU detected by size exclusion chromatography evidenced the polymer degradation. Mixing both enzymes led to an increased amount of urethane bonds hydrolysis of the polymer. 6-hydroxycaproic acid and 4,4'-methylene dianiline were recovered after depolymerization as hydrolysis products. Such building blocks could get a second life with the synthesis of new macromolecular architectures. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:为了减少这些材料的大部分环境污染,聚氨酯(PU)的生物回收是一项巨大的挑战。然而,PU的酶促解聚仍需要改进以提出有价值的绿色解决方案。本研究旨在确定50种水解酶中有效的PU降解酶。进行基于模型分子的筛选,从而选择能够水解低摩尔质量分子的氨基甲酸酯键的高效酰胺酶(E4143)和能够水解水性聚酯聚氨酯分散体的酯酶(E3576)。然后,在专门为此分析设计的四种热塑性聚氨酯(TPU)上评估酰胺酶,酯酶和这些酶的混合物的降解活性。在基于聚己内酯多元醇的聚氨酯上,酯化酶测定的51天后重量损失为33%,降解率最高。通过扫描电子显微镜观察到的聚合物表面上的深裂以及通过尺寸排阻色谱法检测到的剩余TPU上存在低聚物证明了聚合物的降解。两种酶的混合导致聚合物的氨基甲酸酯键水解量增加。解聚后作为水解产物回收6-羟基己酸和4,4'-亚甲基二苯胺。通过合成新的大分子结构,这样的构件可以重获新生。 (C)2018作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Waste Management》 |2019年第2期|141-150|共10页
  • 作者单位

    Univ Strasbourg, BioTeam ICPEES ECPM, UMR CNRS 7515, 25 Rue Becquerel, F-67087 Strasbourg 2, France;

    Univ Strasbourg, BioTeam ICPEES ECPM, UMR CNRS 7515, 25 Rue Becquerel, F-67087 Strasbourg 2, France;

    Soprema, 14 Rue St Nazaire, F-67025 Strasbourg 1, France;

    Proteus SA, 70 Allee Graham Bell,Parc Georges Besse, F-30035 Nimes 1, France;

    Proteus SA, 70 Allee Graham Bell,Parc Georges Besse, F-30035 Nimes 1, France;

    Univ Lille, Univ Artois, Univ Littoral Cote Opale, INRA,ISA,EA 7394,ICv, F-59000 Lille, France;

    Univ Strasbourg, BioTeam ICPEES ECPM, UMR CNRS 7515, 25 Rue Becquerel, F-67087 Strasbourg 2, France;

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

    Enzymatic degradation; Polyurethane; Hydrolase; Polymer pollution; Bio-recycling;

    机译:酶促降解聚氨酯水合酶聚合物污染生物回收;

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