TZW: DVGW-Technologiezentrum Wasser (German Water Centre), Karlsruher Str. 84, D-76139, Karlsruhe, Germany.
Federal Waterways Engineering and Research Institute (BAW), Kußmaulstr. 17, D-76187, Karlsruhe, Germany.
Environ Sci Pollut Res Int. 2021 Nov;28(42):59439-59451. doi: 10.1007/s11356-021-12467-y. Epub 2021 Jan 29.
Microplastics (MP) as emerging persistent pollutants were found in raw and drinking water worldwide. Since different methods were used, there is an urgent need for harmonized protocols for sampling, sample preparation, and analysis. In this study, a holistic and validated analytical workflow for MP analysis in aqueous matrices down to 5 μm is presented. For sampling of several cubic meters of water, an easily portable filter cascade unit with different pore sizes (100-20-5 μm) was developed and successfully applied for the sampling of three processed drinking waters, two tap waters and one groundwater. The size distribution and polymer types of MP were determined using a two-step semi-automated Raman microspectroscopy analysis. For quality control, comprehensive process blanks were considered at all times and a recovery test yielded an overall recovery of 81%. The average concentration of identified MP was 66 ± 76 MP/m ranging from 1 MP/m to 197 MP/m. All found concentrations were below the limit of quantitation (LOQ) of 1880 MP/m. The majority consisted of PE (86% ± 111%) while comparatively low numbers of PET (10% ± 25%), PP (3% ± 6%), and PA (1% ± 4%) were found. 79% of all particles were smaller than 20 μm. In summary, this study presents the application of a workflow for sampling and analysis of MP down to 5 μm with first results of no significant contamination in drinking water and groundwater.
微塑料(MP)作为新兴的持久性污染物,已在世界各地的原水和饮用水中被发现。由于采用了不同的方法,因此迫切需要对采样、样品制备和分析进行协调一致的规范。在本研究中,提出了一种全面且经过验证的分析工作流程,可用于分析水基质中低至 5μm 的微塑料。为了对几立方米的水进行采样,开发了一种带有不同孔径(100-20-5μm)的便携式过滤器级联装置,并成功应用于三种处理饮用水、两种自来水和一种地下水的采样。使用两步半自动拉曼微光谱分析对 MP 的大小分布和聚合物类型进行了测定。为了进行质量控制,始终考虑全面的过程空白,并进行了回收率测试,回收率为 81%。鉴定出的 MP 的平均浓度为 66±76 MP/m,范围从 1 MP/m 到 197 MP/m。所有发现的浓度均低于 1880 MP/m 的定量下限 (LOQ)。大多数由 PE(86%±111%)组成,而 PET(10%±25%)、PP(3%±6%)和 PA(1%±4%)的相对数量较少。所有颗粒中,79%小于 20μm。总之,本研究提出了一种可用于采样和分析低至 5μm 的 MP 的工作流程,并首次得出饮用水和地下水无明显污染的结果。