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Subsurface contaminant monitoring by laser excitation-emission matrix/cone penetrometer

机译:激光激发 - 发射矩阵/锥形污染仪的地下污染物监测

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We have recently developed instrumentation capable of quickly characterizing or monitoring a site using laser-induced fluorescence (LIF) measurements made through a sapphire window near the tip of a cone penetrometer (CPT) probe as it advances through the subsurface. By incorporating ten laser wavelengths simultaneously and collecting a full three-dimensional fingerprint of the soil sample at a vertical resolution of approximately 2 cm, we have made advances in site characterization using this technique, which enjoys all the advantages of in situ measurements: no exposure to, handling, custody or generation of hazardous waste is involved, and results are available in near real time. This report presents the results of recent work at Otis Air National Guard Base. First, a simple one-dimensional measure of the fluorescence fingerprints was correlated with laboratory results for total petroleum hydrocarbons (TPH), as a potentially convenient way for an operator of our instrument to monitor the results of the LIF measurements in real time, as the probe advances. Second, and more importantly, results are presented to demonstrate the potential of the instrumentation to identify individual target species and to quantify their concentrations approximately. The samples collected on site for conventional laboratory analysis were also measured by LIF and the resulting excitation-emission matrices (EEMs) were analyzed for ten target polycyclic aromatic hydrocarbons (PAHs). Qualitative and semi-quantitative agreement between these two sets of results was obtained. The agreements were extended to the in situ LIF data taken 2 - 3 feet away.
机译:我们最近开发了能够使用激光诱导的荧光(LiF)测量的能够快速表征或监测现场的仪器,这些荧光(LiF)测量通过锥形孔径尖端(CPT)探针附近的蓝宝石窗口,因为它通过地下进步。通过同时掺入10个激光波长并以约2厘米的垂直分辨率收集土样的全三维指纹,我们已经使用这种技术进行了现场表征的进步,这享有原位测量的所有优点:没有暴露涉及处理,监护或产生危险废物,结果在近实时可用。本报告介绍了Otis Air Natial Guard Base最近工作的结果。首先,荧光指纹的简单一维测量与总石油碳氢化合物(TPH)的实验室结果相关,作为我们仪器操作员实时监测生命测量结果的潜在方便的方式,如探讨进展。其次,更重要的是,提出了结果以证明仪器识别单个靶种类并大致量化其浓度的仪器。在现场收集的用于传统实验室分析的样品也通过LIF测量,并分析了所得激发排放基质(EEM)的10个靶含有多环芳烃(PAH)。获得这两套结果之间的定性和半量值协议。该协议扩展到距离2 - 3英尺的原位生命数据。

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