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聚氨酯生物回收的突破:一种有效的漆酶介导系统,用于降解不同类型的聚氨酯。

Breakthrough in polyurethane bio-recycling: An efficient laccase-mediated system for the degradation of different types of polyurethanes.

机构信息

BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France.

BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France.

出版信息

Waste Manag. 2021 Aug 1;132:23-30. doi: 10.1016/j.wasman.2021.07.011. Epub 2021 Jul 22.

Abstract

Development of green, efficient and profitable recycling processes for plastic material will contribute to reduce the expanding plastic pollution and microplastics accumulation in the environment. Polyurethanes (PU) are versatile polymers with a large range of chemical compositions and structures. This variability increases the complexity of PU waste management. Biological recycling researchers have recently demonstrated great interest in polyethylene terephthalate. The adaptation of this route towards producing polyurethanes requires the discovery of enzymes that are able to depolymerize a large variety of PU. A laccase mediated system (LMS) was tested on four representative PU models, with different structures (foams and thermoplastics), and chemical compositions (polyester- and polyether-based PU). Size exclusion chromatography was performed on the thermoplastics and this revealed a significant reduction in the molar masses after 18 days of incubation at 37 °C. Degradation of foams under the same conditions was demonstrated by microscopy and compression assay for both polyester- and polyether-based PU. This study represents a major breakthrough in PU degradation, as it is the first time that enzymatic degradation has been clearly demonstrated on a polyether-based PU foam. This work is a step forward in the development of a sustainable recycling pathway, adapted to a large variety of PU materials.

摘要

发展绿色、高效和盈利的塑料材料回收工艺将有助于减少不断扩大的塑料污染和环境中微塑料的积累。聚氨基甲酸酯(PU)是一种用途广泛的聚合物,具有广泛的化学成分和结构。这种可变性增加了 PU 废物管理的复杂性。生物回收研究人员最近对聚对苯二甲酸乙二醇酯表现出了极大的兴趣。将这条路线应用于生产聚氨基甲酸酯需要发现能够解聚各种聚氨基甲酸酯的酶。漆酶介导的系统(LMS)在四种具有不同结构(泡沫和热塑性塑料)和化学组成(聚酯和聚醚基 PU)的代表性 PU 模型上进行了测试。对热塑性塑料进行了尺寸排阻色谱分析,结果表明在 37°C 孵育 18 天后摩尔质量显著降低。在相同条件下,通过显微镜和压缩试验对聚酯和聚醚基 PU 泡沫进行了降解。这项研究代表了在 PU 降解方面的重大突破,因为这是首次在聚醚基 PU 泡沫上清楚地证明了酶降解。这项工作是朝着开发一种适应各种 PU 材料的可持续回收途径迈出的一步。

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