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加速风化会影响海洋防污漆微塑料的化学和物理性质,并影响其通过衰减全反射傅里叶变换红外光谱(ATR-FTIR 光谱)进行识别。

Accelerated weathering affects the chemical and physical properties of marine antifouling paint microplastics and their identification by ATR-FTIR spectroscopy.

机构信息

Department of the Built Environment, Aalborg University, Thomas Manns Vej 23, Aalborg, DK, 9220, Denmark.

Department of the Built Environment, Aalborg University, Thomas Manns Vej 23, Aalborg, DK, 9220, Denmark.

出版信息

Chemosphere. 2021 Jul;274:129749. doi: 10.1016/j.chemosphere.2021.129749. Epub 2021 Jan 28.

Abstract

Microplastics prepared from commercial marine antifouling paints were weathered by UV-C irradiation representing between 25 and 101 days of real-time, outdoor exposure. Attenuated Total Reflection Fourier Transform Infrared (ATR-FTIR) spectroscopy of the degraded paint particles showed that weathering induced chemical changes in the material, including the release of volatile components and the formation of hydrophilic groups. The chemical changes and increased reactivity of the paint binder were associated with alterations in their physical properties and increased leaching of metals in freshwater conditions. Changes in the spectra obtained from weathered paint samples reduced their match with spectra of unaged materials, resulting in a poorer similarity index, the Score when using automatic identification tools for microplastics. The results suggest that spectra of weathered, as well as pristine paint microplastics, should be consulted when applying analytical pipelines to identify microplastics extracted from natural matrices.

摘要

由商用海洋防污漆制备的微塑料通过 UV-C 照射进行老化,代表了 25 到 101 天的实时户外暴露。降解漆颗粒的衰减全反射傅里叶变换红外(ATR-FTIR)光谱表明,老化导致材料发生化学变化,包括挥发性成分的释放和亲水性基团的形成。涂料结合剂的化学变化和反应性增加与它们物理性质的改变以及在淡水条件下金属浸出的增加有关。从老化的油漆样品中获得的光谱变化降低了它们与未老化材料的光谱的匹配程度,导致相似指数变差,即使用自动识别工具识别微塑料时的得分变差。结果表明,在应用分析管道识别从自然基质中提取的微塑料时,应参考老化和原始油漆微塑料的光谱。

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