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Spectroscopic Interpretation of PAH-Spectra in Minerals and Its Possible Application to Soil Monitoring

机译:矿物中PAH光谱的光谱解释及其在土壤监测中的应用

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摘要

In order to properly assess the feasibility of using Laser-Induced Fluorescence (LIF) spectroscopy for soil monitoring, the variation of fluorescence intensity due to the heterogeneity and complexity of soil media was investigated. Different soil minerals showed fluorescence spectral structures distinguishable from the contaminants, implying dissimilar interactions or the binding of contaminants on mineral surfaces. More interestingly, solvent and water addition showed different responses in the fluorescence spectral structure showing their effect on the interactions between contaminants and minerals. These results support the claim that the spectral structure contains information on contaminant-mineral interactions; therefore contaminants can be used as a fluorescence probe for these interactions.
机译:为了正确评估使用激光诱导荧光(LIF)光谱进行土壤监测的可行性,研究了由于土壤介质的异质性和复杂性导致的荧光强度变化。不同的土壤矿物显示出的荧光光谱结构可与污染物区分开,这意味着不同的相互作用或污染物在矿物表面上的结合。更有趣的是,溶剂和水的添加在荧光光谱结构中显示出不同的响应,表明它们对污染物与矿物质之间的相互作用具有影响。这些结果支持了这样的主张,即光谱结构包含有关污染物-矿物相互作用的信息。因此,污染物可以用作这些相互作用的荧光探针。

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