Identification of microplastics and nanoplastics in environmental water by AFM-IR

IF 6 2区 化学 Q1 CHEMISTRY, ANALYTICAL Analytica Chimica Acta Pub Date : 2025-06-08 Epub Date: 2025-03-31 DOI:10.1016/j.aca.2025.343992
Dandan Xie , Huiyao Fang , Xia Zhao , Yuan Lin , Zhaohui Su
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Abstract

Background

Microplastics and nanoplastics have gained worldwide attention as environmental hazards, and reliable analysis of these tiny particles is critical to accurate assessment of their impact to the environment and human health. Among the typical methods developed for analysis of microplastics, mass spectrometry-based methods are destructive and not applicable to individual nanoplastic particles, whereas vibrational spectroscopic techniques in combination with optical microscopy do not have sufficient spatial resolution needed for characterization of the much smaller nanoplastics. Therefore, a new tool is needed for the identification of nanoplastics in the environment.

Results

Here we report for the first time identification of individual nanoplastics in an environmental water sample directly by atomic force microscopy-infrared (AFM-IR), a spectroscopic technique with a spatial resolution of ∼100 nm. On the basis of their spectral characteristics, four different nanoplastics, including poly(3-hydroxybutyrate) (P3HB) and a bisphenol-A based epoxy, as well as microplastics of the latter and two different polyesters were identified unambiguously, and the P3HB nanoplastic particle was found to be highly crystalline. Particles of fatty acid salt, lactic acid salt and sulfate were also identified. Amide bands were observed in the spectra of some of these particles, indicative of protein contamination. In addition, a diatom and a bacterium were identified based on their IR spectra in conjunction with the morphology and elemental composition.

Significance

This work demonstrates that AFM-IR is a powerful tool for studying individual nanoplastic particles in environmental samples, capable of providing not only their identities but also detailed structure information.

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AFM-IR法鉴别环境水中微塑料和纳米塑料
微塑料和纳米塑料作为环境危害引起了全世界的关注,对这些微小颗粒进行可靠的分析对于准确评估其对环境和人类健康的影响至关重要。在用于分析微塑料的典型方法中,基于质谱的方法是破坏性的,不适用于单个纳米塑料颗粒,而振动光谱技术与光学显微镜相结合,不具备表征小得多的纳米塑料所需的足够的空间分辨率。因此,需要一种新的工具来识别环境中的纳米塑料。研究人员首次利用原子力显微镜-红外(AFM-IR)技术直接在环境水样中鉴定出单个纳米塑料,这是一种空间分辨率为~ 100 nm的光谱技术。根据其光谱特征,确定了聚3-羟基丁酸酯(P3HB)和双酚a基环氧树脂(P3HB)、环氧树脂和两种不同聚酯的微塑料,并发现P3HB纳米塑料颗粒具有高结晶性。还鉴定出脂肪酸盐、乳酸盐和硫酸盐颗粒。在一些颗粒的光谱中观察到酰胺带,表明蛋白质污染。此外,根据硅藻和细菌的红外光谱,结合形态和元素组成进行了鉴定。这项工作表明,AFM-IR是研究环境样品中单个纳米塑料颗粒的有力工具,不仅能够提供它们的身份,而且能够提供详细的结构信息。
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来源期刊
Analytica Chimica Acta
Analytica Chimica Acta 化学-分析化学
CiteScore
10.40
自引率
6.50%
发文量
1081
审稿时长
38 days
期刊介绍: Analytica Chimica Acta has an open access mirror journal Analytica Chimica Acta: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. Analytica Chimica Acta provides a forum for the rapid publication of original research, and critical, comprehensive reviews dealing with all aspects of fundamental and applied modern analytical chemistry. The journal welcomes the submission of research papers which report studies concerning the development of new and significant analytical methodologies. In determining the suitability of submitted articles for publication, particular scrutiny will be placed on the degree of novelty and impact of the research and the extent to which it adds to the existing body of knowledge in analytical chemistry.
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