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海洋环境中老化塑料化学添加剂的浸出与转化

Leaching and transformation of chemical additives from weathered plastic deployed in the marine environment.

作者信息

Bridson James H, Masterton Hayden, Theobald Beatrix, Risani Regis, Doake Fraser, Wallbank Jessica A, Maday Stefan D M, Lear Gavin, Abbel Robert, Smith Dawn A, Kingsbury Joanne M, Pantos Olga, Northcott Grant L, Gaw Sally

机构信息

Scion, Titokorangi Drive, Private Bag 3020, Rotorua 3046, New Zealand; School of Physical and Chemical Sciences, University of Canterbury, Christchurch 8041, New Zealand.

Institute of Environmental Science and Research, 27 Creyke Road, Christchurch 8041, New Zealand.

出版信息

Mar Pollut Bull. 2024 Jan;198:115810. doi: 10.1016/j.marpolbul.2023.115810. Epub 2023 Nov 25.

Abstract

Plastic pollution causes detrimental environmental impacts, which are increasingly attributed to chemical additives. However, the behaviour of plastic additives in the marine environment is poorly understood. We used a marine deployment experiment to examine the impact of weathering on the extractables profile, analysed by liquid chromatography-mass spectrometry, of four plastics at two locations over nine months in Aotearoa/New Zealand. The concentration of additives in polyethylene and oxo-degradable polyethylene were strongly influenced by artificial weathering, with deployment location and time less influential. By comparison, polyamide 6 and polyethylene terephthalate were comparatively inert with minimal change in response to artificial weathering or deployment time. Non-target analysis revealed extensive differentiation between non-aged and aged polyethylene after deployment, concordant with the targeted analysis. These observations highlight the need to consider the impact of leaching and weathering on plastic composition when quantifying the potential impact and risk of plastic pollution within receiving environments.

摘要

塑料污染会造成有害的环境影响,而这些影响越来越多地被归因于化学添加剂。然而,人们对塑料添加剂在海洋环境中的行为了解甚少。我们在新西兰的奥特亚罗瓦进行了一项海上部署实验,以研究在九个月的时间里,风化对四个地点的四种塑料的可提取物谱(通过液相色谱 - 质谱分析)的影响。聚乙烯和可氧化降解聚乙烯中添加剂的浓度受人工风化的影响很大,而部署地点和时间的影响较小。相比之下,聚酰胺6和聚对苯二甲酸乙二酯相对惰性,对人工风化或部署时间的反应变化最小。非目标分析显示,部署后未老化和老化的聚乙烯之间存在广泛差异,这与目标分析结果一致。这些观察结果凸显了在量化受纳环境中塑料污染的潜在影响和风险时,需要考虑浸出和风化对塑料成分的影响。

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