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Microplastic Monitoring at Different Stages in a Wastewater Treatment Plant Using Reflectance Micro-FTIR Imaging

机译:使用反射微型FTIR成像的废水处理厂不同阶段的微塑性监测

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While the presence of microplastics has been reported in aquatic habitats across the globe, the pathways through which they enter the environment are still poorly understood. Studies investigating the fate of microplastics in wastewater are gaining attention but are still scarce, despite the urgent need to understand the role of wastewater treatment plants (WWTP) as point sources of aquatic microplastic pollution. A likely reason for the limited number of WWTP-associated studies is that working with a biogenic organic matter (BOM)-rich sample matrix like wastewater is challenging. Here, we investigated the presence of microplastics (MP) throughout several stages of a wastewater treatment plant (WWTP) at multiple depths, employing Fenton’s reagent and focal plane array-based reflectance micro-Fourier-transform infrared spectroscopic (FPA-based reflectance micro-FTIR) imaging, a protocol that allows the automated detection and identification of microplastics in complex samples with high organic matter content, without the need for previous visual sorting, or reducing considerably the thickness of the sample, or the use of IR-transparent transmission windows. It was found that the number of microplastic fragments detected at downstream stages of the WWTP notably decreased following the primary settlement stage, with primary settlement stage samples responsible for 76.9% of total microplastics detected. Despite the marked reduction in the number of microplastic particles following the primary settlement stage, an average total of 1.5 MP L-1 were identified in the final effluent of the WWTP.
机译:虽然在全球水生栖息地报告了微塑料的存在,但他们进入环境的途径仍然明白。研究污水中微塑料的命运的研究正在受到关注,但仍然是稀缺的,尽管迫切需要了解废水处理厂(WWTP)作为水生微塑性污染点来源的作用。有限数量的WWTP相关研究的可能原因是使用类似废水的生物有机物(BOM) - 中等样品基质是具有挑战性的。在这里,我们在许多深度下,在废水处理厂(WWTP)的几个阶段中,采用Fenton的试剂和焦平面阵列的反射率微傅立叶变换红外光谱(FPA的反射微型FTIR)成像,一种协议,其允许具有高有机物质含量的复杂样品中的微塑料自动检测和鉴定微塑料,而无需先前的视觉分类,或者减少样品的厚度,或使用IR透明传输窗口。结果发现,在初级沉降阶段,在WWTP的下游阶段检测到的微塑料片段的数量,主要沉降阶段样品负责检测到的总微薄的76.9%。尽管初级沉降阶段后微塑性颗粒的数量显着降低,但在WWTP的最终流出物中鉴定了平均总量1.5MP1-1。

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