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海洋风化对源自 ROP 的生物聚合物与传统塑料的比较评估。

Comparative assessment of marine weathering of ROP-derived biopolymers against conventional plastics.

机构信息

Plastics Collaboratory, Energy and Environment Institute, The University of Hull, Cottingham Road, Hull HU6 7RX, UK.

Department of Geography, Geology and Environment, The University of Hull, Cottingham Road, Hull HU6 7RX, UK.

出版信息

Mar Pollut Bull. 2021 Jun;167:112272. doi: 10.1016/j.marpolbul.2021.112272. Epub 2021 Mar 29.

Abstract

Bio-based plastics were designed to replace single-use plastics and to cause less post-consumer environmental damage. This paper assesses the weathering of four bio-based polymers created by ring opening polymerization (ROP) promoted by a previously reported Ti-based catalyst, to detect any problems before production was scaled up. Samples were aged in seawater to identify degradation products and monitor structural changes. Surfaces evidenced degradation and a range of leaching products was observed. Aside from compounds used in the preparation of the plastics (i.e. residual monomers and benzyl alcohol), the degradation products included carboxylic acids (often found in plastic leachate), oxacyclohexadecan-2-one (potentially toxic to aquatic life) and triphenylmethane (potential carcinogen). Overall, there were fewer structural changes in the fossil fuel based polymer (PS) and in the commercially available bio-based plastic studied for comparison purposes than the lab based bio-based polymers.

摘要

生物基塑料旨在替代一次性塑料,并减少消费后对环境的破坏。本文评估了通过之前报道的钛基催化剂促进的开环聚合(ROP)制备的四种生物基聚合物的耐候性,以在扩大生产之前发现任何问题。将样品在海水中老化,以鉴定降解产物并监测结构变化。表面出现降解,观察到一系列浸出产物。除了用于制备塑料的化合物(即残留单体和苯甲醇)外,降解产物还包括羧酸(通常存在于塑料浸出物中)、氧杂环己十六烷-2-酮(对水生生物可能有毒)和三苯基甲烷(潜在的致癌物质)。总体而言,与实验室制备的生物基聚合物相比,基于化石燃料的聚合物(PS)和商业上可获得的用作比较目的的生物基塑料的结构变化较少。

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