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Experimental study of the complex resistivity and dielectric constant of chrome-contaminated soil

机译:铬污染土壤复电阻率和介电常数的试验研究

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Heavy metals such as arsenic and chromium often contaminate soils near industrialized areas. Soil samples, made with different water content and chromate pollutant concentrations, are often needed to test soil quality. Because complex resistivity and complex dielectric characteristics of these samples need to be measured, the relationship between these measurement results and chromium concentration as well as water content was studied. Based on soil sample observations, the amplitude of the sample complex resistivity decreased with an increase of contamination concentration and water content. The phase of complex resistivity takes on a tendency of initially decrease, and then increase with the increasing of contamination concentration and water content. For a soil sample with the same resistivity, the higher the amplitude of complex resistivity, the lower the water content and the higher the contamination concentration. The real and imaginary parts of the complex dielectric constant increase with an increase in contamination concentration and water content. Note that resistivity and complex resistivity methods are necessary to adequately evaluate pollution at various sites. (C) 2016 Published by Elsevier B.V.
机译:砷和铬等重金属经常污染工业区附近的土壤。通常需要用不同的水含量和铬酸盐污染物浓度制成的土壤样品来测试土壤质量。由于需要测量这些样品的复电阻率和复介电特性,因此研究了这些测量结果与铬浓度以及水含量之间的关系。根据土壤样品的观察结果,样品复合电阻率的幅度随污染物浓度和水含量的增加而降低。复电阻率阶段呈现出先减小后随污染物浓度和水含量增加而增加的趋势。对于具有相同电阻率的土壤样品,复电阻率的幅度越高,水分含量越低,污染浓度越高。复数介电常数的实部和虚部随着污染浓度和水含量的增加而增加。请注意,电阻率法和复电阻率法对于充分评估各个位置的污染是必要的。 (C)2016由Elsevier B.V.发布

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