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海鲜中的微塑料:提取与表征的基准协议

Microplastics in seafood: Benchmark protocol for their extraction and characterization.

作者信息

Dehaut Alexandre, Cassone Anne-Laure, Frère Laura, Hermabessiere Ludovic, Himber Charlotte, Rinnert Emmanuel, Rivière Gilles, Lambert Christophe, Soudant Philippe, Huvet Arnaud, Duflos Guillaume, Paul-Pont Ika

机构信息

ANSES, Laboratoire de Sécurité des Aliments, Boulevard du Bassin Napoléon, 62200 Boulogne-sur-Mer, France.

Laboratoire des Sciences de l'Environnement Marin (LEMAR), UMR6539/UBO/CNRS/IRD/IFREMER, Institut Universitaire Européen de la Mer, Technopôle Brest-Iroise, Rue Dumont d'Urville, 29280 Plouzané, France.

出版信息

Environ Pollut. 2016 Aug;215:223-233. doi: 10.1016/j.envpol.2016.05.018. Epub 2016 May 19.

Abstract

Pollution of the oceans by microplastics (<5 mm) represents a major environmental problem. To date, a limited number of studies have investigated the level of contamination of marine organisms collected in situ. For extraction and characterization of microplastics in biological samples, the crucial step is the identification of solvent(s) or chemical(s) that efficiently dissolve organic matter without degrading plastic polymers for their identification in a time and cost effective way. Most published papers, as well as OSPAR recommendations for the development of a common monitoring protocol for plastic particles in fish and shellfish at the European level, use protocols containing nitric acid to digest the biological tissues, despite reports of polyamide degradation with this chemical. In the present study, six existing approaches were tested and their effects were compared on up to 15 different plastic polymers, as well as their efficiency in digesting biological matrices. Plastic integrity was evaluated through microscopic inspection, weighing, pyrolysis coupled with gas chromatography and mass spectrometry, and Raman spectrometry before and after digestion. Tissues from mussels, crabs and fish were digested before being filtered on glass fibre filters. Digestion efficiency was evaluated through microscopical inspection of the filters and determination of the relative removal of organic matter content after digestion. Five out of the six tested protocols led to significant degradation of plastic particles and/or insufficient tissue digestion. The protocol using a KOH 10% solution and incubation at 60 °C during a 24 h period led to an efficient digestion of biological tissues with no significant degradation on all tested polymers, except for cellulose acetate. This protocol appeared to be the best compromise for extraction and later identification of microplastics in biological samples and should be implemented in further monitoring studies to ensure relevance and comparison of environmental and seafood product quality studies.

摘要

微塑料(<5毫米)对海洋的污染是一个重大的环境问题。迄今为止,仅有有限的研究调查了原位采集的海洋生物的污染水平。对于生物样品中微塑料的提取和表征,关键步骤是确定能有效溶解有机物而不降解塑料聚合物的一种或多种溶剂或化学物质,以便能以具有时间和成本效益的方式对其进行识别。尽管有报道称硝酸会导致聚酰胺降解,但大多数已发表的论文以及欧洲层面关于制定鱼类和贝类中塑料颗粒通用监测方案的奥斯巴委员会建议,都使用含有硝酸的方案来消化生物组织。在本研究中,对六种现有方法进行了测试,并比较了它们对多达15种不同塑料聚合物的影响及其消化生物基质的效率。通过消化前后的显微镜检查、称重、热解气相色谱 - 质谱联用以及拉曼光谱法评估塑料的完整性。贻贝、螃蟹和鱼类的组织在玻璃纤维滤膜上过滤前进行消化。通过对滤膜的显微镜检查以及测定消化后有机物含量的相对去除率来评估消化效率。六种测试方案中有五种导致塑料颗粒显著降解和/或组织消化不充分。使用10%氢氧化钾溶液并在60°C下孵育24小时的方案能有效消化生物组织,除醋酸纤维素外,对所有测试聚合物均无显著降解。该方案似乎是生物样品中微塑料提取及后续鉴定的最佳折中方案,应在进一步的监测研究中实施,以确保环境和海产品质量研究的相关性及可比性。

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