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复杂环境基质中的纳米塑料鉴定:聚苯乙烯和聚丙烯的策略

Nanoplastics Identification in Complex Environmental Matrices: Strategies for Polystyrene and Polypropylene.

作者信息

Blancho Florent, Davranche Mélanie, Hadri Hind El, Grassl Bruno, Gigault Julien

机构信息

Géosciences, CNRS/Université Rennes 1, UMR 6118, F35000 Rennes, France.

IPREM, CNRS/Université de Pau et des Pays de l'Adour, F64000 Pau, France.

出版信息

Environ Sci Technol. 2021 Jul 6;55(13):8753-8759. doi: 10.1021/acs.est.1c01351. Epub 2021 Jun 10.

Abstract

Identification of nanoplastics in complex environmental matrices remains a challenge. Despite the increase in nanoplastics studies, there is a lack of studies dedicated to nanoplastics detection, partially explained by their carbon-based structure, their wide variety of composition, and their low environmental concentrations compared to the natural organic matter. Here, pyrolysis coupled to a GCMS instrumental setup provided a relevant analytical response for polypropylene and polystyrene nanoplastic suspensions. Specific pyrolysis markers and their indicative fragment ions were selected and validated. Possible interferences with environmental matrices were explored by spiking nanoplastics in various organic matter suspensions (i.e., algae, soil natural organic matter, and soil humic acid) and analyzing an environmental suspension of nanoplastics. While a rapid polypropylene nanoplastics identification was validated, polystyrene nanoplastics require preliminary treatment. The strategies presented herein open new possibilities for the detection/identification of nanoplastics in environmental matrices such as soil, dust, and biota.

摘要

在复杂环境基质中识别纳米塑料仍然是一项挑战。尽管纳米塑料研究有所增加,但专门针对纳米塑料检测的研究却很缺乏,部分原因在于其碳基结构、多种多样的组成以及与天然有机物相比在环境中的低浓度。在此,热解与气相色谱 - 质谱联用仪器装置为聚丙烯和聚苯乙烯纳米塑料悬浮液提供了相关的分析响应。选择并验证了特定的热解标志物及其指示性碎片离子。通过在各种有机物悬浮液(即藻类、土壤天然有机物和土壤腐殖酸)中添加纳米塑料并分析纳米塑料的环境悬浮液,探索了与环境基质可能存在的干扰。虽然快速识别聚丙烯纳米塑料得到了验证,但聚苯乙烯纳米塑料需要进行预处理。本文提出的策略为在土壤、灰尘和生物群等环境基质中检测/识别纳米塑料开辟了新的可能性。

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