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拉曼光谱法在水生系统中微塑料分析的应用。

Raman Spectroscopy for the Analysis of Microplastics in Aquatic Systems.

机构信息

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Milano, Italy.

出版信息

Appl Spectrosc. 2021 Nov;75(11):1341-1357. doi: 10.1177/00037028211043119. Epub 2021 Sep 20.

Abstract

Raman spectroscopy is gaining ground in the analysis of microplastics, especially due to its high spatial resolution that allows the investigation of small plastic particles, whose numeric abundance is argued to be particularly relevant in aquatic systems. Here, we aimed at outlining the status of Raman analysis of microplastics from aquatic systems, highlighting the advantages and the drawbacks of this technique and critically presenting tools and ways to effectively employ this instrument and to improve the spectra obtained and their interpretation. In particular, we summarized procedural information for the use of Raman spectroscopy, and we discussed issues linked to fluorescence interference and the analysis of weathered polymers, which may complicate the interpretation of Raman signatures. In this context, a deep understanding of the different plastic polymers and their Raman peaks and chemical fingerprints is fundamental to avoid misidentification. Therefore, we provided a catalog with detailed information about peaks of most common plastic polymers, and this represents, to the best of our knowledge, the first comprehensive resource that systematically synthesized plastic Raman peaks. Additionally, we focused on plastic additives, which are contained in the majority of plastics. These compounds are often intense in Raman scattering and may partly or completely overlie the actual material types, resulting in the identification of additives alone or misidentification issue. For these reasons, we also presented a new R package "RamanMP" that includes a database of 356 spectra (325 of which are additives). This will help to foster the use of this technique, which is becoming especially relevant in microplastic analysis.

摘要

拉曼光谱分析在微塑料分析中得到了广泛应用,特别是由于其具有高空间分辨率,能够研究小塑料颗粒,而小塑料颗粒的数量被认为在水生系统中尤为重要。在这里,我们旨在概述从水生系统中分析微塑料的拉曼分析的现状,突出该技术的优点和缺点,并批判性地介绍有效使用该仪器和改进获得的光谱及其解释的工具和方法。特别是,我们总结了拉曼光谱分析的程序信息,并讨论了与荧光干扰以及风化聚合物分析相关的问题,这些问题可能会使拉曼特征的解释复杂化。在这种情况下,深入了解不同的塑料聚合物及其拉曼峰和化学指纹对于避免误识别至关重要。因此,我们提供了一个包含大多数常见塑料聚合物详细信息的目录,据我们所知,这是第一个系统地综合塑料拉曼峰的全面资源。此外,我们还关注了塑料添加剂,这些添加剂存在于大多数塑料中。这些化合物在拉曼散射中通常很强烈,可能部分或完全覆盖实际的材料类型,导致仅识别添加剂或误识别问题。出于这些原因,我们还介绍了一个新的“RamanMP”R 包,其中包含 356 个光谱(其中 325 个是添加剂)的数据库。这将有助于促进该技术的应用,该技术在微塑料分析中变得越来越重要。

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