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首页> 外文期刊>Journal of near infrared spectroscopy >Near infrared spectroscopic analysis of hydrocarbon contaminants in soil with a hand-held spectrometer
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Near infrared spectroscopic analysis of hydrocarbon contaminants in soil with a hand-held spectrometer

机译:手持式光谱仪近红外光谱分析土壤中的碳氢化合物污染物

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摘要

The contamination of soil with hydrocarbons due to accidents or leakages is a wide-spread phenomenon with potential health risks. So far, no technique has been available for fast on-site identification and quantitative determination of the contaminant. This information, however, would be necessary for the assessment of decontamination measures to be taken for the area under consideration either by excavation or a biotechnical approach. All methods in current practice require a time-consuming retrieval and transportation of contaminated soil samples to the laboratory for further qualitative and quantitative analysis. Based on diffuse reflection measurements with a hand-held NIR spectrometer, in the present communication, results on the qualitative discrimination and on the quantitative determination of hydrocarbon contaminants (gasoline, diesel and oil) with standard errors of cross validation between 0.3% to 0.5% (w/w) in different types of soil are reported. The presented approach can serve as proof of concept to replace conventional methods in the case of hazardous incidents with high contamination concentrations by on-site investigations for a fast assessment of decontamination measures and an effective monitoring of their success. Furthermore, the method is not limited only to the characterisation of areal pollution, but can also be easily extended to depth-profiling measurements.
机译:由于事故或泄漏造成的碳氢化合物对土壤的污染是一种普遍存在的现象,具有潜在的健康风险。到目前为止,尚无可用于快速现场识别和定量确定污染物的技术。但是,对于通过挖掘或生物技术方法对所考虑区域采取的去污措施进行评估,此信息将是必需的。当前实践中的所有方法都需要费时的检索并将污染的土壤样品运输到实验室,以进行进一步的定性和定量分析。在本来文中,基于手持式近红外光谱仪的漫反射测量结果,对烃污染物(汽油,柴油和机油)进行定性鉴别和定量测定,结果交叉验证的标准误差在0.3%至0.5%之间报告了不同类型土壤中的(w / w)。所提出的方法可以作为概念证明,通过现场调查来代替高污染浓度危险事件的常规方法,以快速评估去污措施并有效监测其成功实施。此外,该方法不仅限于区域污染的特征,而且还可以轻松地扩展到深度剖面测量。

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