首页> 外文期刊>Russian journal of physical chemistry, B. >Analysis of Space-Time Profiles of the Concentrations of Contaminants in Soil during Electrokinetic Remediation
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Analysis of Space-Time Profiles of the Concentrations of Contaminants in Soil during Electrokinetic Remediation

机译:电动修复过程中土壤污染物浓度的时空谱分析

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摘要

A new semiempirical method for the mathematical description of the space-time concentration profiles of contaminants in soil during its electrokinetic remediation is proposed. The method is based on approximating the experimental data on the spatiotemporal behavior of the concentration, C = C(D-a, t). The experimental and theoretical C = C(D-a, t) dependences reported in the literature and obtained in our studies were approximated by seventh order polynomials. For example, the space-time concentration profiles of chlorinated hydrocarbon contaminants in unsaturated soils, such as tetrachloroethylene, trichloroethylene and carbon tetrachloride, have been successfully described by a polynomial function with determination coefficients of R-2 = 0.9941, 0.9988, and 0.9972, respectively. A pilot test setup for studying the electrokinetic remediation of soils contaminated with mercury compounds, with ten sampling sections and replaceable cartridges with ionites, was designed and built. This setup allowed measuring the space-time concentration profile of mercury in soil samples during electrokinetic remediation. This profile obtained was approximated by a seventh order polynomials with a determination coefficient of R-2 = 0.9929. It is shown that the polynomial approximation of the space-time concentration profiles of contaminants in soil describes the experimental C = C(D-a, t) dependences no worse (sometimes better) than the Poisson-Nernst-Planck model for ionic flow.
机译:提出了一种新的半透明方法,用于在其电动修复过程中土壤中污染物的时空描述的数学描述。该方法基于近似对浓度的时空行为的实验数据,C = C(D-A,T)。在文献中报告的实验和理论C = C(D-A,T)依赖性并在我们的研究中获得的依赖性由第七阶多项式近似。例如,通过r-2 = 0.9941,0.9988和0.9972的测定系数成功地描述了不饱和土壤中氯化烃污染物的时空浓度曲线,例如四氯甲基,三氯乙烯和四氯化碳,分别是r-2 = 0.9941,0.9988和0.9972的确定系数的多项式函数。设计并建造了一种用于研究汞化合物污染的土壤电动修复的试验装置,并设计并建造了具有10个采样部分和可更换墨盒。该设置允许在电动修复期间测量土壤样品中汞空间浓度曲线。获得的该轮廓由七阶多项式近似,具有R-2 = 0.9929的确定系数。结果表明,土壤中的污染物的时空浓度谱的多项式近似描述了实验C = C(D-A,T)的依赖性而不是离子流量的泊松 - 内部普通普通模型更差。

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