An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions

A bench-scale study on the improved electro-kinetic remediation of heavy metals from soil collected near an operating electroplating site in Pakistan is reported. Influence of operating parameters such as electrode material, current density, soil temperature and inter-electrode spacing is investigat...

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Main Authors: Saleem, Muhammad, Essa, M.H., Chakrabarti, Mohammed Harun, Low, C.T.J., Hajimolana, S.A., Hussain, Mohd Azlan, Hashim, M.A., Islam, M.S.
Format: Article
Published: Electrochemical Science Group 2012
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author Saleem, Muhammad
Essa, M.H.
Chakrabarti, Mohammed Harun
Low, C.T.J.
Hajimolana, S.A.
Hussain, Mohd Azlan
Hashim, M.A.
Islam, M.S.
author_facet Saleem, Muhammad
Essa, M.H.
Chakrabarti, Mohammed Harun
Low, C.T.J.
Hajimolana, S.A.
Hussain, Mohd Azlan
Hashim, M.A.
Islam, M.S.
author_sort Saleem, Muhammad
collection UM
description A bench-scale study on the improved electro-kinetic remediation of heavy metals from soil collected near an operating electroplating site in Pakistan is reported. Influence of operating parameters such as electrode material, current density, soil temperature and inter-electrode spacing is investigated. A maximum of 61.8 removal of cadmium is achieved using titanium electrodes (under natural conditions simulating rain water present in soil). Removal efficiency improves with the increase in current density and soil temperature. About 73 of copper removal is achieved within 20 hours when the soil temperature is constant at 29°C as compared to 32 removal at 18°C. Rate of metal removal increases as the inter-electrode spacing decreases to 10 cm, which demonstrates the highest copper removal of 88.1 at a current density of 8.9 mA/cm2. Other heavy metals are well below their maximum permissible limits and thus are not studied in detail. A maximum energy consumption of 5 kWh/m3 of soil means the process can be economically scaled up. Removal efficiencies may be improved by carefully controlling the catholyte pH and by introducing zero-valent iron particles as a permeable reactive barrier in the electro-kinetic process.
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spelling um.eprints-69832021-01-20T08:00:48Z http://eprints.um.edu.my/6983/ An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions Saleem, Muhammad Essa, M.H. Chakrabarti, Mohammed Harun Low, C.T.J. Hajimolana, S.A. Hussain, Mohd Azlan Hashim, M.A. Islam, M.S. TA Engineering (General). Civil engineering (General) TP Chemical technology A bench-scale study on the improved electro-kinetic remediation of heavy metals from soil collected near an operating electroplating site in Pakistan is reported. Influence of operating parameters such as electrode material, current density, soil temperature and inter-electrode spacing is investigated. A maximum of 61.8 removal of cadmium is achieved using titanium electrodes (under natural conditions simulating rain water present in soil). Removal efficiency improves with the increase in current density and soil temperature. About 73 of copper removal is achieved within 20 hours when the soil temperature is constant at 29°C as compared to 32 removal at 18°C. Rate of metal removal increases as the inter-electrode spacing decreases to 10 cm, which demonstrates the highest copper removal of 88.1 at a current density of 8.9 mA/cm2. Other heavy metals are well below their maximum permissible limits and thus are not studied in detail. A maximum energy consumption of 5 kWh/m3 of soil means the process can be economically scaled up. Removal efficiencies may be improved by carefully controlling the catholyte pH and by introducing zero-valent iron particles as a permeable reactive barrier in the electro-kinetic process. Electrochemical Science Group 2012 Article PeerReviewed Saleem, Muhammad and Essa, M.H. and Chakrabarti, Mohammed Harun and Low, C.T.J. and Hajimolana, S.A. and Hussain, Mohd Azlan and Hashim, M.A. and Islam, M.S. (2012) An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions. International Journal of Electrochemical Science, 7 (9). pp. 7809-7822. ISSN 1452-3981, http://www.electrochemsci.org/papers/vol7/7097809.pdf
spellingShingle TA Engineering (General). Civil engineering (General)
TP Chemical technology
Saleem, Muhammad
Essa, M.H.
Chakrabarti, Mohammed Harun
Low, C.T.J.
Hajimolana, S.A.
Hussain, Mohd Azlan
Hashim, M.A.
Islam, M.S.
An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title_full An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title_fullStr An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title_full_unstemmed An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title_short An economical means for remediating a multiple-metal contaminated soil using electro-kinetic technology under natural conditions
title_sort economical means for remediating a multiple metal contaminated soil using electro kinetic technology under natural conditions
topic TA Engineering (General). Civil engineering (General)
TP Chemical technology
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