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Identification of contaminated soil using CO2 laser reflectance ratios

机译:利用CO2激光反射比鉴定污染土壤

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Abstract: A mid-infrared laser reflectance sensor operating within the 9-11 micrometer wavelength range was used to study the reflectance characteristics of soil contaminated with various commercially available chemical liquid materials. Measurements were made at ten wavelengths and three incidence angles under both co-polarized and cross-polarized scatter conditions. Data were gathered from bare soil, as well as soil saturated with anti-freeze/coolant, unused motor oil, and used motor oil. Calibration was performed using a Labsphere Diffuse Reflectance Standard of 94% nominal reflectivity. The measurements were used to compute reflectance ratios, i.e., ratios of reflectivities at various two-wavelength combinations. Our study indicates that it is possible to detect the presence of as well as to identify the type of contamination present in the soil by computing reflectance ratios at judiciously selected wavelengths. Use of wavelength ratios obviates the need for absolute calibration if the atmospheric transmission characteristics are the same at the two probing wavelengths. This technique is well-suited for standoff detection of contaminated soil. !5
机译:摘要:使用在9-11微米波长范围内操作的中红外激光反射率传感器研究了各种市售化学液体材料污染的土壤的反射率特性。在共极化和交叉极化散射条件下,在十个波长和三个入射角下进行测量。从裸露的土壤,以及用防冻剂/冷却剂饱和的土壤,未使用的机油和用过的机油中收集数据。使用标称反射率为94%的Labsphere漫反射标准进行校准。这些测量值被用于计算反射率比,即在各种两个波长组合下的反射率之比。我们的研究表明,通过计算明智选择的波长下的反射率,可以检测土壤中污染物的存在并确定其污染类型。如果在两个探测波长下的大气透射特性相同,则使用波长比就无需进行绝对校准。该技术非常适合用于污染土壤的隔离检测。 !5

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