莱茵河沉积物中的微塑料--为监测目的制备和分析水生河流系统沉积物样本的工作流程

Yosri Wiesner, Thomas Hoffmann, David Range, Korinna Altmann
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摘要

在所有环境系统中都能检测到微塑料(MP)。过去,海洋和陆地水生系统,尤其是迁移的悬浮固体,往往是科学研究的重点。而水生河流系统的沉积物则常常因为耗时的样品制备和分析程序而被忽视。计算颗粒数量的光谱测量方法很难作为检测方法,因为在少量 MP 颗粒旁边有大量的天然颗粒。本研究介绍了一种通过密度分离制备样品并随后通过热萃取解吸-气相色谱/质谱法进行分析的工作流程,该流程可制备出具有代表性的均匀样品,并可快速、可靠地测量 MP 质量含量,适用于常规分析。对所有样品中的聚合物进行了鉴定和定量。除聚丙烯和聚苯乙烯外,聚乙烯和丁苯橡胶是主要聚合物。总体而言,可测定的聚合物总质量在 1.18 至 337.0 微克/克之间。河床沉积物中 MP 浓度最高的地点是流速较低的港口和水库,而流速较高的砂质/砾质河床沉积物中 MP 浓度较低。
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Microplastics in sediments of the river Rhine—A workflow for preparation and analysis of sediment samples from aquatic river systems for monitoring purposes

Microplastics (MP) can be detected in all environmental systems. Marine and terrestrial aquatic systems, especially the transported suspended solids, have often been the focus of scientific investigations in the past. Sediments of aquatic river systems, on the other hand, were often ignored due to the time-consuming sample preparation and analysis procedures. Spectroscopic measurement methods counting particle numbers are hardly suitable as detection methods, because there are plenty of natural particles next to a small number of MP particles. Integral methods, such as thermoanalytical methods are determining the particle mass independently of the inorganic components.

In this study, a workflow for sample preparation via density separation and subsequent analysis by thermal extraction desorption-gas chromatography/mass spectrometry is presented, which leads to representative and homogeneous samples and allows fast and robust MP mass content measurements suitable for routine analysis. Polymers were identified and quantified in all samples. Polyethylene and styrene-butadiene rubber are the dominant polymers, besides polypropylene and polystyrene. Overall, total polymer masses between 1.18 and 337.0 µg/g could be determined. Highest MP concentrations in riverbed sediment are found in sites characterized by low flow velocities in harbors and reservoirs, while MP concentrations in sandy/gravelly bed sediments with higher flow velocities are small.

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