Abstract A simple method for the extraction and identification of light density microplastics from soil
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A simple method for the extraction and identification of light density microplastics from soil

机译:一种从土壤中提取和鉴定光密度微塑料的简单方法

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AbstractThis article introduces a simple and cost-saving method developed to extract, distinguish and quantify light density microplastics of polyethylene (PE) and polypropylene (PP) in soil. A floatation method using distilled water was used to extract the light density microplastics from soil samples. Microplastics and impurities were identified using a heating method (3–5s at 130°C). The number and size of particles were determined using a camera (Leica DFC 425) connected to a microscope (Leica wild M3C, Type S, simple light, 6.4×). Quantification of the microplastics was conducted using a developed model. Results showed that the floatation method was effective in extracting microplastics from soils, with recovery rates of approximately 90%. After being exposed to heat, the microplastics in the soil samples melted and were transformed into circular transparent particles while other impurities, such as organic matter and silicates were not changed by the heat. Regression analysis of microplastics weight and particle volume (a calculation based on image J software analysis) after heating showed the best fit (y=1.14x+0.46, R2=99%,p<0.001). Recovery rates based on the empirical model method were >80%. Results from field samples collected from North-western China prove that our method of repetitive floatation and heating can be used to extract, distinguish and quantify light density polyethylene microplastics in soils. Microplastics mass can be evaluated using the empirical model.Graphical abstractDisplay OmittedHighlightsTechnique is used to extract and detect light density of microplastics from soils.Technique is low cost-saving, no pollution, simple and high accuracyRepetitive floatation can efficiently extract microplastics from soils.After heating, microplastics were transformed into circular, transparent and shiny.Microplastics mass can be evaluated using the empirical model.
机译: 摘要 本文介绍了一种简单且节省成本的方法,该方法旨在提取,区分和量化聚乙烯(PE)和聚丙烯( PP)在土壤中。使用蒸馏水的浮选法从土壤样品中提取光密度微塑料。使用加热方法(在130°C下3-5s)鉴定出微塑料和杂质。使用连接到显微镜(Leica wild M3C,S型,简单光,6.4倍)的相机(Leica DFC 425)确定颗粒的数量和大小。使用开发的模型对微塑料进行定量。结果表明,漂浮法可有效地从土壤中提取微量塑料,回收率约为90%。加热后,土壤样品中的微塑料熔化并转变为圆形透明颗粒,而其他杂质(例如有机物和硅酸盐)不会因加热而改变。加热后的微塑料重量和颗粒体积的回归分析(基于图像J软件分析的计算)显示最佳拟合(y = 1.14x + 0.46,R 2 = 99%, p <0.001)。基于经验模型方法的回收率> 80%。从中国西北地区采集的田间样品的结果证明,我们的重复漂浮和加热方法可用于提取,区分和定量土壤中的光密度聚乙烯微塑料。可以使用经验模型评估微塑料的质量。 < ce:section-title id =“ st0010”>图形摘要 省略显示 亮点 技术用于提取和检测光土壤中的微塑料的密度。 技术节省成本低,无污染,简单且准确性高 重复漂浮可以有效地从中提取微塑料 加热后,微塑料转变为圆形,透明和发亮的光。 •• 可以使用经验模型来评估微塑料的质量。

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