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Identification and Quantification of Microplastics in Wastewater Using Focal Plane Array-Based Reflectance Micro-FT-IR Imaging

机译:基于焦平面阵列的反射微FT-IR成像技术鉴定和量化废水中的微塑料

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Microplastics (<5 mm) have been documented in environmental samples on a global scale. While these pollutants may enter aquatic environments via wastewater treatment facilities, the abundance of microplastics in these matrices has not been investigated. Although efficient methods for the analysis of microplastics in sediment samples and marine organisms have been published, no methods have been developed for detecting these pollutants within organic-rich wastewater samples. In addition, there is no standardized method for analyzing microplastics isolated from environmental samples. In many cases, part of the identification protocol relies on visual selection before analysis, which is open to bias. In order, to address this, a new method for the analysis of microplastics in Wastewater was developed. A pretreatment step using 30% hydrogen peroxide (H2O2) was employed to remove biogenic material, and focal plane array (FPA)-based reflectance Micro-Fourier-transform (FT-IR) imaging was shown to successfully image and identify different microplastic types (polyethylene, polypropylene, nylon-6, polyvinyl chloride, polystyrene). Microplastic-spiked wastewater samples were used to validate the methodology, resulting in a robust protocol which was nonselective and reproducible (the overall success identification rate was 98.33%). The use of FPA-based micro-FT-IR spectroscopy also provides a considerable reduction in analysis time compared with previous methods, since samples that could take several days to be mapped using a single-element detector can now be imaged in less than 9 h (circular filter with a diameter of 47 mm). This method for identifying and quantifying microplastics in wastewater is likely to provide an essential tool for further research into the pathways by which microplastics enter the environment.
机译:全球范围内的环境样品中均已记录了微塑料(<5毫米)。尽管这些污染物可能通过废水处理设施进入水生环境,但尚未研究这些基质中大量的微塑料。尽管已经发布了用于分析沉积物样品和海洋生物中微量塑料的有效方法,但尚未开发出用于检测富含有机物的废水样品中这些污染物的方法。另外,还没有分析从环境样品中分离出的微塑料的标准化方法。在许多情况下,部分识别协议依赖于分析之前的视觉选择,这容易产生偏差。为了解决这个问题,开发了一种分析废水中微塑料的新方法。采用了使用30%过氧化氢(H2O2)的预处理步骤来去除生物源材料,并且基于焦平面阵列(FPA)的反射率微傅里叶变换(FT-IR)成像已显示成功成像并鉴定了不同的微塑性类型(聚乙烯,聚丙烯,尼龙6,聚氯乙烯,聚苯乙烯)。使用微塑料加标废水样品来验证该方法,从而得到了一种非选择性且可重现的可靠方案(总体成功识别率为98.33%)。与以前的方法相比,基于FPA的微型FT-IR光谱的使用还大大减少了分析时间,因为使用单元素检测器可将需要花费数天的时间映射的样品现在在不到9小时的时间内成像(直径47毫米的圆形过滤器)。这种用于识别和量化废水中的微塑料的方法可能为进一步研究微塑料进入环境的途径提供必要的工具。

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