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在生物反应器中改进生物催化解聚消费后 PET 包装的工艺策略,以及降低耗材成本的研究。

Process strategies to improve biocatalytic depolymerization of post-consumer PET packages in bioreactors, and investigation on consumables cost reduction.

机构信息

Falcão Bauer, R. Aquinos, 111. Água Branca, São Paulo, 05036‑070, Brazil.

Department of Biochemical Engineering, Escola de Química, Universidade Federal do Rio de Janeiro, Ilha do Fundão, Rio de Janeiro, 21949-900, Brazil.

出版信息

Bioprocess Biosyst Eng. 2021 Mar;44(3):507-516. doi: 10.1007/s00449-020-02461-y. Epub 2020 Oct 28.

Abstract

Massive plastics production has raised concerns about low recycling rates and disposal of these materials in nature, causing environmental and economic impacts. Poly(ethylene terephthalate) (PET) is one of main polymers used for manufacture of plastic packaging (e.g. bottles, trays). Enzymatic recycling of PET has been a route of increasing study aiming at to recover its monomers (terephthalic acid and ethylene glycol), resulting in a circular production chain. In this study, investigation of pH control and fractionation of enzyme feeding were explored in post-consumed PET (PC-PET) hydrolysis reactions catalyzed by Humicola insolens cutinase (HiC) in stirred reactors. It was found that the unbuffered reaction provided of pH control by 0.5 M NaOH addition showed 2.39-fold improvement in the released monomers (to a total of 26.3 mM), comparatively to the Tris-HCl-buffered reaction. In addition, it was observed a possibility of reducing the enzyme loading used in the process by half, leading to an increase of 2.41-fold in the specific terephthalic acid concentration released per protein amount, whilst maintaining a high products concentration (97 mM). A simplified cost analysis of reaction consumables was performed, and the data reported here demonstrates that these alternative process strategies contribute to costs reduction on the enzymatic depolymerization reactions of PET.

摘要

大规模的塑料生产引起了人们对低回收利用率和这些材料在自然界中处置的关注,对环境和经济造成了影响。聚对苯二甲酸乙二醇酯(PET)是用于制造塑料包装(例如瓶子、托盘)的主要聚合物之一。酶法回收 PET 是越来越多的研究途径,旨在回收其单体(对苯二甲酸和乙二醇),从而形成循环生产链。在这项研究中,研究了在搅拌反应器中用嗜热毁丝霉角质酶(HiC)催化消费后 PET(PC-PET)水解反应中 pH 控制和酶进料分段的情况。结果发现,未缓冲的反应通过添加 0.5 M NaOH 进行 pH 控制,与 Tris-HCl 缓冲的反应相比,释放出的单体提高了 2.39 倍(总共 26.3 mM)。此外,观察到可以将过程中使用的酶负载量减少一半,从而使每蛋白质释放的特定对苯二甲酸浓度提高 2.41 倍,同时保持高产物浓度(97 mM)。对反应消耗品进行了简化的成本分析,报告的数据表明,这些替代工艺策略有助于降低 PET 酶解反应的成本。

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