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将替代标准用作污水污泥中微塑料常规分析的 QA/QC 工具。

The use of surrogate standards as a QA/QC tool for routine analysis of microplastics in sewage sludge.

机构信息

Eawag, Swiss Federal Institute of Aquatic Science and Technology, Überlandstrasse 133, CH-8600 Dübendorf, Switzerland.

Agroscope, Environmental Analytics, 8046, Zurich, Switzerland.

出版信息

Sci Total Environ. 2022 Aug 20;835:155485. doi: 10.1016/j.scitotenv.2022.155485. Epub 2022 Apr 25.

Abstract

The efficient retention of microplastic particles (MP) during wastewater treatment results in their accumulation in the sewage sludge. Thus, sewage sludge represents a key matrix for understanding MP flows between engineered and natural systems. Building on previous reports, we present a sample preparation protocol optimized for digested sewage sludge. The key steps include acid digestion supported by Fenton reagents, enzymatic digestion, and density separation using sodium polytungstate (density of 1.9 gcm). We use colored polyethylene (PE) spheres as surrogate standards to assess sample specific recoveries in terms of number and size, based on visible light (vis) microscopy and focal plane array - micro-Fourier transform - infrared (FPA-μ-FT-IR) imaging. The FT-IR spectra of common MP were identical before and after the digestion procedures and morphological changes were observed for polylactide fibers only. Average recovery rates for PE spheres, polypropylene fibers and polyethylene terephthalate fragments extracted from spiked digested sewage sludge and determined using (automated) vis microscopy ranged from 80% to 100%. Similar recovery rates of around 80% were also obtained for PE spheres based on FPA-μ-FT-IR measurements. The median diameters of red and blue PE spheres in dry state and recovered from spiked deionized water and from extracts of spiked digested sewage sludge determined using vis microscopy ranged between 46 μm and 67 μm. These diameters were similar to 54 μm and 61 μm obtained from the FPA-μ-FT-IR measurements of the corresponding deionized water samples and digested sludge extracts and in line with data from the producer (53 μm-63 μm). Using our digestion protocol in combination with surrogate standards, we measured MP number concentrations of around 10,000 #/g in dried, digested sewage sludge, in agreement with recent results from other studies.

摘要

在废水处理过程中,微塑料颗粒(MP)的有效保留导致其在污水污泥中积累。因此,污水污泥是理解工程系统和自然系统之间 MP 流的关键基质。在以前的报告基础上,我们提出了一种针对消化污水污泥优化的样品制备方案。关键步骤包括芬顿试剂支持的酸消化、酶消化和使用偏钨酸钠进行密度分离(密度为 1.9 gcm)。我们使用彩色聚乙烯(PE)球作为替代标准,根据可见光(vis)显微镜和焦平面阵列-微傅里叶变换-红外(FPA-μ-FT-IR)成像,评估样品特定的回收数量和大小。在消化程序前后,常见 MP 的 FT-IR 光谱相同,仅观察到聚乳酸纤维的形态变化。用(自动)vis 显微镜从加标消化污水污泥中提取并测定的 PE 球、聚丙烯纤维和聚对苯二甲酸乙二醇酯碎片的平均回收率在 80%至 100%之间。基于 FPA-μ-FT-IR 测量,PE 球的回收率也接近 80%。用 vis 显微镜测定的干燥状态和从加标去离子水以及加标消化污水污泥提取物中回收的红色和蓝色 PE 球的中值直径在 46 μm 和 67 μm 之间。这些直径与从相应的去离子水样品和消化污泥提取物的 FPA-μ-FT-IR 测量中获得的 54 μm 和 61 μm 相似,与生产商提供的数据(53 μm-63 μm)一致。使用我们的消化方案结合替代标准,我们测量了干燥消化污水污泥中的 MP 数浓度约为 10,000 #/g,与最近其他研究的结果一致。

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