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Nano- and microplastic analysis: Focus on their occurrence in freshwater ecosystems and remediation technologies

机译:纳米和微塑性分析:专注于淡水生态系统和修复技术的发生

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Plastic pollution is a global problem since 2016 when its production reached 322 million tonnes, excluding fibers. Daily discharges of microplastics (MPs, defined as <5 mm in size) are estimated in the range of 50,000 up to 15 million particles, whereas no information on nanoplastic (NP, <100 nm) release is available yet. Different processes further degraded these materials producing more MPs and NPs. This review attempts to fill the void of information on the state-of-art analysis of MPs and NPs (recently identified as emerging contaminants) and provides a critical overview on modern instrumentation, newly developed workflows, and promising techniques for their characterization (Raman and FT-IR spectroscopies and microscopies, pyrolysis and thermal desorption gas chromatography, imaging techniques, etc.). Available analytical methods, validation as well as applications with cells have been taken into account. MP and NP sampling, identification, and characterization are discussed. Finally, recent applications to establish their occurrence in freshwater ecosystems and the effectiveness of the proposed remediation technologies are considered. (C) 2018 Elsevier B.V. All rights reserved.
机译:塑料污染是自2016年以来的全球问题,当时其产量达到322万吨,不包括纤维。微塑料(MPS的日常放电(定义为<5mm的大小)估计在50,000至1500万颗粒的范围内,而没有有关纳米塑料(NP,<100nm)释放的信息。不同的过程进一步降解了这些材料,产生更多MPS和NPS。该审查试图填补关于MPS和NPS最新分析的信息(最近被识别为新兴污染物),并提供了现代仪器,新开发的工作流程以及其特征的有前途的技术(拉曼和FT-IR光谱和显微镜,热解和热解吸气相色谱,成像技术等)。已经考虑了可用的分析方法,验证以及使用细胞的应用程序。讨论了MP和NP采样,识别和表征。最后,最近的申请建立了淡水生态系统的发生和建议的修复技术的有效性。 (c)2018 Elsevier B.v.保留所有权利。

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