Analysis of space–time profiles of the concentrations of contaminants in soil during electrokinetic remediation
- Авторы: Kumpanenko I.V.1, Roshchin A.V.1, Ivanova N.A.1, Bloshenko A.V.1, Tikhonov I.P.1, Skryl’nikov A.M.1
-
Учреждения:
- Semenov Institute of Chemical Physics
- Выпуск: Том 11, № 4 (2017)
- Страницы: 543-554
- Раздел: Chemical Physics of Ecological Processes
- URL: https://journals.rcsi.science/1990-7931/article/view/199310
- DOI: https://doi.org/10.1134/S199079311704008X
- ID: 199310
Цитировать
Аннотация
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(Da, t). The experimental and theoretical C = C(Da, 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 R2 = 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 R2 = 0.9929. It is shown that the polynomial approximation of the space–time concentration profiles of contaminants in soil describes the experimental C = C(Da, t) dependences no worse (sometimes better) than the Poisson–Nernst–Planck model for ionic flow.
Об авторах
I. Kumpanenko
Semenov Institute of Chemical Physics
Автор, ответственный за переписку.
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
A. Roshchin
Semenov Institute of Chemical Physics
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
N. Ivanova
Semenov Institute of Chemical Physics
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
A. Bloshenko
Semenov Institute of Chemical Physics
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
I. Tikhonov
Semenov Institute of Chemical Physics
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
A. Skryl’nikov
Semenov Institute of Chemical Physics
Email: ivkumpan@chph.ras.ru
Россия, Moscow, 119334
Дополнительные файлы
