Detection methods of micro and nanoplastics.

Q1 Agricultural and Biological Sciences Advances in Food and Nutrition Research Pub Date : 2023-01-01 DOI:10.1016/bs.afnr.2022.08.002
Abdo Hassoun, Luisa Pasti, Tatiana Chenet, Polina Rusanova, Slim Smaoui, Abderrahmane Aït-Kaddour, Gioacchino Bono
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引用次数: 1

Abstract

Plastics and related contaminants (including microplastics; MPs and nanoplastics; NPs) have become a serious global safety issue due to their overuse in many products and applications and their inadequate management, leading to possible leakage into the environment and eventually to the food chain and humans. There is a growing literature reporting on the occurrence of plastics, (MPs and NPs) in both marine and terrestrial organisms, with many indications about the harmful impact of these contaminants on plants and animals, as well as potential human health risks. The presence of MPs and NPs in many foods and beverages including seafood (especially finfish, crustaceans, bivalves, and cephalopods), fruits, vegetables, milk, wine and beer, meat, and table salts, has become popular research areas in recent years. Detection, identification, and quantification of MPs and NPs have been widely investigated using a wide range of traditional methods, such as visual and optical methods, scanning electron microscopy, and gas chromatography-mass spectrometry, but these methods are burdened with a number of limitations. In contrast, spectroscopic techniques, especially Fourier-transform infrared spectroscopy and Raman spectroscopy, and other emerging techniques, such as hyperspectral imaging are increasingly being applied due to their potential to enable rapid, non-destructive, and high-throughput analysis. Despite huge research efforts, there is still an overarching need to develop reliable analytical techniques with low cost and high efficiency. Mitigation of plastic pollution requires establishing standard and harmonized methods, adopting holistic approaches, and raising awareness and engaging the public and policymakers. Therefore, this chapter focuses mainly on identification and quantification techniques of MPs and NPs in different food matrices (mostly seafood).

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微、纳米塑料的检测方法。
塑料及相关污染物(包括微塑料;MPs和纳米塑料;由于在许多产品和应用中过度使用以及管理不善,NPs已成为一个严重的全球安全问题,导致可能泄漏到环境中,并最终泄漏到食物链和人类。越来越多的文献报道了塑料(MPs和NPs)在海洋和陆地生物中的出现,并有许多迹象表明这些污染物对植物和动物的有害影响以及潜在的人类健康风险。MPs和NPs存在于许多食品和饮料中,包括海鲜(特别是鳍鱼、甲壳类、双壳类和头足类)、水果、蔬菜、牛奶、葡萄酒和啤酒、肉类和食盐,近年来已成为热门的研究领域。MPs和NPs的检测、鉴定和定量已经被广泛研究,使用了广泛的传统方法,如视觉和光学方法、扫描电子显微镜、气相色谱-质谱法,但这些方法都有许多局限性。相比之下,光谱技术,特别是傅里叶变换红外光谱和拉曼光谱,以及其他新兴技术,如高光谱成像,由于它们具有实现快速、无损和高通量分析的潜力,正越来越多地得到应用。尽管进行了大量的研究工作,但仍然需要开发低成本、高效率的可靠分析技术。减轻塑料污染需要建立标准和统一的方法,采取全面的办法,提高认识,让公众和决策者参与进来。因此,本章主要关注不同食品基质(主要是海产品)中MPs和NPs的鉴定和定量技术。
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来源期刊
Advances in Food and Nutrition Research
Advances in Food and Nutrition Research Agricultural and Biological Sciences-Food Science
CiteScore
8.50
自引率
0.00%
发文量
50
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