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利用前沿红外光谱技术分析微塑料和纳米塑料:批判性综述

Analysing micro- and nanoplastics with cutting-edge infrared spectroscopy techniques: a critical review.

作者信息

Xie Junhao, Gowen Aoife, Xu Wei, Xu Junli

机构信息

School of Biosystems and Food Engineering, University College Dublin, Belfield, Dublin 4, Ireland.

Department of Life Sciences, Center for Coastal Studies, College of Sciences, Texas A&M University-Corpus Christi, USA.

出版信息

Anal Methods. 2024 Apr 18;16(15):2177-2197. doi: 10.1039/d3ay01808c.

Abstract

The escalating prominence of micro- and nanoplastics (MNPs) as emerging anthropogenic pollutants has sparked widespread scientific and public interest. These minuscule particles pervade the global environment, permeating drinking water and food sources, prompting concerns regarding their environmental impacts and potential risks to human health. In recent years, the field of MNP research has witnessed the development and application of cutting-edge infrared (IR) spectroscopic instruments. This review focuses on the recent application of advanced IR spectroscopic techniques and relevant instrumentation to analyse MNPs. A comprehensive literature search was conducted, encompassing articles published within the past three years. The findings revealed that Fourier transform infrared (FTIR) spectroscopy stands as the most used technique, with focal plane array FTIR (FPA-FTIR) representing the cutting edge in FTIR spectroscopy. The second most popular technique is quantum cascade laser infrared (QCL-IR) spectroscopy, which has facilitated rapid analysis of plastic particles. Following closely is optical photothermal infrared (O-PTIR) spectroscopy, which can furnish submicron spatial resolution. Subsequently, there is atomic force microscopy-based infrared (AFM-IR) spectroscopy, which has made it feasible to analyse MNPs at the nanoscale level. The most advanced IR instruments identified in articles covered in this review were compared. Comparison metrics encompass substrates/filters, data quality, spatial resolution, data acquisition speed, data processing and cost. The limitations of these IR instruments were identified, and recommendations to address these limitations were proposed. The findings of this review offer valuable guidance to MNP researchers in selecting suitable instrumentation for their research experiments, thereby facilitating advancements in research aimed at enhancing our understanding of the environmental and human health risks associated with MNPs.

摘要

作为新出现的人为污染物,微塑料和纳米塑料(MNPs)日益凸显的重要性引发了广泛的科学和公众关注。这些微小颗粒遍布全球环境,渗透到饮用水和食物来源中,引发了对其环境影响和对人类健康潜在风险的担忧。近年来,MNPs研究领域见证了前沿红外(IR)光谱仪器的发展和应用。本综述聚焦于先进红外光谱技术及相关仪器在分析MNPs方面的最新应用。进行了全面的文献检索,涵盖过去三年发表的文章。研究结果表明,傅里叶变换红外(FTIR)光谱是使用最广泛的技术,焦平面阵列FTIR(FPA - FTIR)代表了FTIR光谱的前沿技术。第二受欢迎的技术是量子级联激光红外(QCL - IR)光谱,它有助于对塑料颗粒进行快速分析。紧随其后的是光热红外(O - PTIR)光谱,它可以提供亚微米级的空间分辨率。随后是基于原子力显微镜的红外(AFM - IR)光谱,它使得在纳米尺度上分析MNPs成为可能。对本综述涵盖的文章中确定的最先进的红外仪器进行了比较。比较指标包括基底/滤光片、数据质量、空间分辨率、数据采集速度、数据处理和成本。确定了这些红外仪器的局限性,并提出了解决这些局限性的建议。本综述的结果为MNPs研究人员在为其研究实验选择合适的仪器方面提供了有价值的指导,从而促进旨在加深我们对与MNPs相关的环境和人类健康风险理解的研究进展。

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