CNRS, Université de Toulouse, Laboratoire des Interactions Moléculaires et Réactivité Chimique et Photochimique (IMRCP), UMR 5623, Toulouse, France.
CNRS, Sorbonne Université, Laboratoire d'Océanographie Microbienne (LOMIC), UMR 7621, Observatoire Océanologique de Banyuls, Banyuls sur mer, France.
Mar Pollut Bull. 2022 Aug;181:113882. doi: 10.1016/j.marpolbul.2022.113882. Epub 2022 Jul 8.
The Mediterranean Sea water bodies are ones of the most polluted, especially with microplastics. As the seafloor is the ultimate sink for litter, it is considered a hotspot for microplastic pollution. We provide an original analytical development based on the coupling of tandem mass spectrometry to pyrolysis-gas chromatography to improve the detection of plastic contamination in marine organisms. Due to the high selectivity of the mass spectrometer, a straightforward sample preparation consists uniquely of potassium hydroxide digestion. The quantification of six common polymers is possible in one run. The method was applied to analyze the plastic content from 500 μm down to 0.7 μm in the whole body of seven benthic species with variable feeding modes. Plastic was detected in all samples, with an almost systematic detection of polypropylene and polyethylene. Our method presents a major development in determining the levels of plastic contaminations in samples with rich organic matter content.
地中海水体是污染最严重的水体之一,尤其是微塑料污染。由于海底是垃圾的最终归宿,因此被认为是微塑料污染的热点区域。我们提供了一种基于串联质谱法与热解气相色谱法偶联的创新分析方法,以提高海洋生物中塑料污染的检测能力。由于质谱仪具有高选择性,因此只需经过氢氧化钾消解这一简单的样品制备步骤。该方法可在一次运行中对六种常见聚合物进行定量分析。该方法应用于分析七种具有不同摄食模式的底栖物种的整个身体中从 500μm 到 0.7μm 粒径范围内的塑料含量。所有样品中均检测到了塑料,其中聚丙烯和聚乙烯几乎都被检测到。我们的方法在确定富含有机物的样品中的塑料污染水平方面有了重大进展。