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Organic Contaminants and Interactions with Micro- and Nano-Plastics in the Aqueous Environment: Review of Analytical Methods

机译:有机污染物和水环境中微型和纳米塑料的相互作用:分析方法综述

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摘要

Micro- and nanoplastic particles are increasingly seen not only as contaminants themselves, but also as potential vectors for trace organic chemicals (TOrCs) that might sorb onto these particles. An analysis of the sorbed TOrCs can either be performed directly from the particle or TOrCs can be extracted from the particle with a solvent. Another possibility is to analyze the remaining concentration in the aqueous phase by a differential approach. In this review, the focus is on analytical methods that are suitable for identifying and quantifying sorbed TOrCs on micro- and nano-plastics. Specific gas chromatography (GC), liquid chromatography (LC) and ultraviolet-visible spectroscopy (UV-VIS) methods are considered. The respective advantages of each method are explained in detail. In addition, influencing factors for sorption in the first place are being discussed including particle size and shape (especially micro and nanoparticles) and the type of polymer, as well as methods for determining sorption kinetics. Since the particles are not present in the environment in a virgin state, the influence of aging on sorption is also considered.
机译:微型和纳米塑料颗粒不仅可以作为污染物本身所看到的,而且还呈现为痕量有机化学品(TORC)的潜在载体,其可能吸附到这些颗粒上。可以直接从颗粒或TORC从颗粒中萃取溶剂的分析可以从颗粒中提取。另一种可能性是通过差分方法分析水相中的剩余浓度。在本文中,重点是适用于在微型和纳米塑料上识别和量化吸附扭矩的分析方法。考虑特定的气相色谱(GC),液相色谱(LC)和紫外线可见光谱(UV-VIS)方法。详细解释了每种方法的相应优点。此外,正在讨论第一处吸附因子的因素包括粒度和形状(尤其是微型和纳米颗粒)和聚合物的类型,以及用于测定吸附动力学的方法。由于颗粒在原始状态下不存在于环境中,因此还考虑了老化对吸附对吸附的影响。

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