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生物塑料废弃物的可持续利用:综述最广泛使用的生物聚合物的有效回收途径。

Sustainable Valorization of Bioplastic Waste: A Review on Effective Recycling Routes for the Most Widely Used Biopolymers.

机构信息

Industrial Engineering Department, University of Rome Tor Vergata, Via del Politecnico 1, 00133 Rome, Italy.

Institute of Chemistry, Bioscience and Environmental Engineering, Faculty of Science and Technology, University of Stavanger, 4036 Stavanger, Norway.

出版信息

Int J Mol Sci. 2023 Apr 22;24(9):7696. doi: 10.3390/ijms24097696.

Abstract

Plastics-based materials have a high carbon footprint, and their disposal is a considerable problem for the environment. Biodegradable bioplastics represent an alternative on which most countries have focused their attention to replace of conventional plastics in various sectors, among which food packaging is the most significant one. The evaluation of the optimal end-of-life process for bioplastic waste is of great importance for their sustainable use. In this review, the advantages and limits of different waste management routes-biodegradation, mechanical recycling and thermal degradation processes-are presented for the most common categories of biopolymers on the market, including starch-based bioplastics, PLA and PBAT. The analysis outlines that starch-based bioplastics, unless blended with other biopolymers, exhibit good biodegradation rates and are suitable for disposal by composting, while PLA and PBAT are incompatible with this process and require alternative strategies. The thermal degradation process is very promising for chemical recycling, enabling building blocks and the recovery of valuable chemicals from bioplastic waste, according to the principles of a sustainable and circular economy. Nevertheless, only a few articles have focused on this recycling process, highlighting the need for research to fully exploit the potentiality of this waste management route.

摘要

基于塑料的材料具有较高的碳足迹,其处置对环境来说是一个相当大的问题。可生物降解的生物塑料是一种替代品,大多数国家都将注意力集中在这种替代品上,以替代各个领域中的传统塑料,其中食品包装是最重要的领域之一。评估生物塑料废物的最佳终处理过程对于其可持续使用非常重要。在这篇综述中,介绍了不同废物管理途径(生物降解、机械回收和热降解过程)的优点和限制,这些途径适用于市场上最常见的生物聚合物类别,包括淀粉基生物塑料、PLA 和 PBAT。分析表明,除非与其他生物聚合物混合,否则淀粉基生物塑料具有良好的生物降解率,适合通过堆肥进行处理,而 PLA 和 PBAT 与该过程不兼容,需要采用替代策略。根据可持续和循环经济的原则,热降解过程非常适合化学回收,能够从生物塑料废物中回收建筑模块和有价值的化学品。然而,只有少数几篇文章关注这种回收过程,突出了需要进行研究以充分利用这种废物管理途径的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/061b/10178466/ae6ef87ef1fb/ijms-24-07696-g001.jpg

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