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可生物降解塑料共混物为塑料的寿命终结管理创造了新的可能性,但它们不是解决塑料污染的万能药。

Biodegradable Plastic Blends Create New Possibilities for End-of-Life Management of Plastics but They Are Not a Panacea for Plastic Pollution.

机构信息

UCD Earth Institute and School of Biomolecular and Biomedical Science , University College Dublin , Belfield, Dublin 4 , Ireland.

OWS nv , Dok Noord 5 , 9000 Gent , Belgium.

出版信息

Environ Sci Technol. 2018 Sep 18;52(18):10441-10452. doi: 10.1021/acs.est.8b02963. Epub 2018 Aug 29.

Abstract

Plastic waste pollution is a global environmental problem which could be addressed by biodegradable plastics. The latter are blended together to achieve commercially functional properties, but the environmental fate of these blends is unknown. We have tested neat polymers, polylactic acid (PLA), polyhydroxybutyrate, polyhydroxyoctanoate, poly(butylene succinate), thermoplastic starch, polycaprolactone (PCL), and blends thereof for biodegradation across seven managed and unmanaged environments. PLA is one of the world's best-selling biodegradable plastics, but it is not home compostable. We show here that PLA when blended with PCL becomes home compostable. We also demonstrate that the majority of the tested bioplastics and their blends degrade by thermophilic anaerobic digestion with high biogas output, but degradation times are 3-6 times longer than the retention times in commercial plants. While some polymers and their blends showed good biodegradation in soil and water, the majority of polymers and their blends tested in this study failed to achieve ISO and ASTM biodegradation standards, and some failed to show any biodegradation. Thus, biodegradable plastic blends need careful postconsumer management, and further design to allow more rapid biodegradation in multiple environments is needed as their release into the environment can cause plastic pollution.

摘要

塑料废物污染是一个全球性的环境问题,可以通过可生物降解塑料来解决。这些塑料是混合在一起以达到商业功能特性的,但这些混合物的环境归宿是未知的。我们已经在七个管理和非管理环境中测试了纯聚合物、聚乳酸(PLA)、聚羟基丁酸酯、聚羟基辛酸酯、聚丁二酸丁二醇酯、热塑性淀粉、聚己内酯(PCL)及其混合物的生物降解性能。PLA 是世界上最畅销的可生物降解塑料之一,但它不可在家庭堆肥。我们在这里表明,PLA 与 PCL 混合后可在家中进行堆肥。我们还证明,大多数测试的生物塑料及其混合物通过嗜热厌氧消化进行降解,产生高生物气产量,但降解时间比商业工厂的停留时间长 3-6 倍。虽然一些聚合物及其混合物在土壤和水中表现出良好的生物降解性,但在这项研究中测试的大多数聚合物及其混合物都未能达到 ISO 和 ASTM 生物降解标准,有些甚至未能显示出任何生物降解性。因此,可生物降解塑料混合物需要谨慎的消费后管理,并且需要进一步设计,以允许在多种环境中更快地生物降解,因为它们释放到环境中可能会造成塑料污染。

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