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Determination of Total Petroleum Hydrocarbon (TPH) and Polycyclic Aromatic Hydrocarbon (PAH) in Soils: A Review of Spectroscopic and Nonspectroscopic Techniques

机译:土壤中总石油烃(TPH)和多环芳烃(PAH)的测定:光谱和非光谱技术的综述

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摘要

In the analysis of petroleum hydrocarbon-contaminated soils for total petroleum hydrocarbons (TPHs) and polycyclic aromatic hydrocarbons (PAHs), the roles of spectroscopic and nonspectroscopic techniques are inseparable. Therefore, spectroscopic techniques cannot be discussed in isolation. In this report, spectroscopic techniques including Raman, fluorescence, infrared, and visible and near-infrared (Vis-NIR) spectroscopies, as well as mass spectroscopy (coupled to a gas chromatograph) and nonspectroscopic techniques such as gravimetry, immunoassay, and gas chromatography with flame ionization detection are reviewed. To bridge the perceived gap in coverage of the quantitative applications of Vis-NIR spectroscopy in the rapid determination of TPHs and PAHs in soils, a detailed review of studies from the period 1999-2012 are presented. This report also highlights the strengths and limitations of these techniques and evaluates their performance from the perspective of their attributes of general applicability, namely economic portability, operational time, accuracy, and occupational health and safety considerations. Overall, the fluorescence spectroscopic technique had the best performance (85% total score) in comparison to the others, and the gravimetric technique performed the least (60% total score). Method-specific solutions geared toward performance improvement are also suggested.
机译:在分析石油烃污染的土壤中的总石油烃(TPH)和多环芳烃(PAH)时,光谱技术和非光谱技术的作用是不可分割的。因此,不能单独讨论光谱技术。在本报告中,光谱技术包括拉曼光谱,荧光光谱,红外光谱以及可见和近红外(Vis-NIR)光谱,以及质谱法(与气相色谱仪耦合)和非光谱技术,例如重量分析法,免疫分析法和气相色谱法进行了火焰离子化检测。为了弥合在快速测定土壤中TPH和PAHs中Vis-NIR光谱定量应用的覆盖面中存在的差距,本文对1999-2012年的研究进行了详细回顾。本报告还重点介绍了这些技术的优势和局限性,并从其普遍适用的属性(即经济便携性,操作时间,准确性和职业健康与安全考虑)的角度评估了它们的性能。总体而言,与其他光谱技术相比,荧光光谱技术的性能最佳(总得分为85%),而重量分析技术的性能最低(总得分为60%)。还建议了针对特定方法的解决方案,旨在提高性能。

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