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Correction for the effect of soil types on the fluorescence intensity of polycyclic aromatic hydrocarbons

机译:土壤类型对多环芳烃荧光强度的校正

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A correction method was proposed and established to reduce the effect of soil types on the PAHs fluorescence intensity based on near-infrared (NIR) diffuse reflectance spectroscopy. The benzo [ghi] pyrene in soil was as the research object. Five types of soil samples with concentration of 1 mg/g benzo [ghi] pyrene were prepared respectively. The fluorescence spectra and NIR diffuse reflectance spectra of all samples were collected. The effects of soil types on the fluorescence spectra and NIR diffuse reflectance spectra were studied. It was found that the effect of soil types on PAHs fluorescence intensities was reduced by dividing the fluorescence intensity by the transformed diffuse reflectance at 4688 cm(-1). In order to verify its effectiveness, the established correction method was used to quantitatively analyze the benzo [ghi] pyrene concentration in soil. The correlation coefficients R-2 of linear fitting between the fluorescence intensities and concentrations of benzo [ghi] perylene are 0.90 and 0.95 before and after correction, respectively. The average relative prediction error decreased from 35.7% before the correction to 8.71% after the correction. The results show that the established correction method can effectively reduce the effect of soil type on PAHs fluorescence intensity based on NIR diffuse reflectance spectrum. The research can provide theoretical basis and technical support for the accurate and rapid detection of PAHs in soil by fluorescence spectroscopy. (C) 2021 Elsevier B.V. All rights reserved.
机译:提出并建立了一种基于近红外漫反射光谱的校正方法,以减少土壤类型对多环芳烃荧光强度的影响。以土壤中的苯并[ghi]芘为研究对象。分别制备了5种浓度为1mg/g苯并[ghi]芘的土壤样品。采集了所有样品的荧光光谱和近红外漫反射光谱。研究了土壤类型对荧光光谱和近红外漫反射光谱的影响。通过将荧光强度除以4688 cm(-1)处的转换漫反射,发现土壤类型对多环芳烃荧光强度的影响减小。为了验证其有效性,使用所建立的校正方法对土壤中的苯并[ghi]芘浓度进行了定量分析。校正前后荧光强度与苯并[ghi]苝浓度的线性拟合相关系数R-2分别为0.90和0.95。平均相对预测误差从校正前的35.7%下降到校正后的8.71%。结果表明,基于近红外漫反射光谱的校正方法可以有效地降低土壤类型对多环芳烃荧光强度的影响。本研究为荧光光谱法准确、快速检测土壤中多环芳烃提供了理论依据和技术支持。(c)2021爱思唯尔B.V.保留所有权利。

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