Lee H-S, Lee K (2001) Bioremediation of diesel-contaminated soil by bacterial cells transported by
electrokinetics. J Microbiol Biotechnol 11:1038–1045
Lee H-H, Yang J-W (2000) A new method to control electrolytes pH by circulation system in
electrokinetic soil remediation. J Hazard Mater 77:227–240
Li T, Guo S, Zhang L, Li F (2010) Electro-biodegradation of the oil-contaminated soil through
periodic electrode switching. In: 4th international conference on bioinformatics and biomedical
engineering (pp 14), IEEE
Lee Y-J, Choi J-H, Lee H-G, Ha T-H, Bae J-H (2012a) Effect of electrode materials on electrokinetic reduction of soil salinity. Sep Sci Technol 47:22–29
Lee Y, Choi J, Lee H, Ha T, Bae J (2012b) Effect of electrode materials on electrokinetic reduction
of soil salinity. Separation Science and Technology, pp pp 37–41
Lee Y-J, Choi J-H, Lee H-G, Ha T-H (2013) Electrokinetic remediation of saline soil using pulse
power. Environ Eng Sci 30:133–141
Leitgib L, Gruiz K, Fenyvesi É, Balogh G, Murányi A (2008) Development of an innovative soil
remediation:“Cyclodextrin-enhanced combined technology”. Sci Total Environ 392:12–21
Li RS, Li LY (2000) Enhancement of electrokinetic extraction from lead-spiked soils. J Environ
Eng 126:849–857
Li B-L, Loehle C, Malon D (1996) Microbial transport through heterogeneous porous media:
random walk, fractal, and percolation approaches. Ecol Model 85:285–302
Li T, Guo S, Zhang L, Li F (2010) Electro-biodegradation of the oil-contaminated soil through
periodic electrode switching. 4th International Conference on Bioinformatics and Biomedical
Engineering (pp. 1-4). IEEE.
Li D, Tan X-Y, Wu X-D, Pan C, Xu P (2014) Effects of electrolyte characteristics on soil
conductivity and current in electrokinetic remediation of lead-contaminated soil. Sep Purif
Technol 135:14–21
Li F, Guo S, Hartog N, Yuan Y, Yang X (2016) Isolation and characterization of heavy polycyclic
aromatic hydrocarbon-degrading bacteria adapted to electrokinetic conditions. Biodegradation
27:1–13
Liu Z, Chen W, Papadopoulos KD (1999) Electrokinetic movement of Escherichia coli in capillaries. Environ Microbiol 1:99–102
Lovley DR (2006) Bug juice: harvesting electricity with microorganisms. Nat Rev Microbiol
4:497–508
Luo Q, Zhang X, Wang H, Qian Y (2005) The use of non-uniform electrokinetics to enhance in situ
bioremediation of phenol-contaminated soil. J Hazard Mater 121:187–194
Maini G, Sharman AK, Knowles CJ, Sunderland G, Jackman SA (2000) Electrokinetic remediation
of metals and organics from historically contaminated soil. J Chem Technol Biotechnol
75:657–664
Manokararajah K, Ranjan RS (2005) Electrokinetic retention, migration and remediation of nitrates
in silty loam soil under hydraulic gradients. Eng Geol 77:263–272
Marechal JC, Dewandel B, Ahmed S, Galeazzi L, Zaidi FK (2006) Combined estimation of specific
yield and natural recharge in a semi-arid groundwater basin with irrigated agriculture. J Hydrol
329:281–293
Maturi K, Reddy KR (2006) Simultaneous removal of organic compounds and heavy metals from
soils by electrokinetic remediation with a modified cyclodextrin. Chemosphere 63:1022–1031
Micó C, Recatalá L, Peris M, Sánchez J (2006) Assessing heavy metal sources in agricultural soils
of an European Mediterranean area by multivariate analysis. Chemosphere 65:863–872
Moghadam MJ, Moayedi H, Sadeghi MM, Hajiannia A (2016) A review of combinations of
electrokinetic applications. Environ Geochem Health 38:1217
Mueller JG, Cerniglia CE, Pritchard PH (1996) Bioremediation of environments contaminated by
polycyclic aromatic hydrocarbons. Biotechnol Res Ser 6:125–194
O’Connor CS, Lepp NW, Edwards R, Sunderland G (2003) The combined use of electrokinetic
remediation and phytoremediation to decontaminate metal-polluted soils: a laboratory-scale
feasibility study. Environ Monit Assess 84:141–158
8 Electro-bioremediation: An Advanced Remediation Technology for the. . .
211
electrokinetics. J Microbiol Biotechnol 11:1038–1045
Lee H-H, Yang J-W (2000) A new method to control electrolytes pH by circulation system in
electrokinetic soil remediation. J Hazard Mater 77:227–240
Li T, Guo S, Zhang L, Li F (2010) Electro-biodegradation of the oil-contaminated soil through
periodic electrode switching. In: 4th international conference on bioinformatics and biomedical
engineering (pp 14), IEEE
Lee Y-J, Choi J-H, Lee H-G, Ha T-H, Bae J-H (2012a) Effect of electrode materials on electrokinetic reduction of soil salinity. Sep Sci Technol 47:22–29
Lee Y, Choi J, Lee H, Ha T, Bae J (2012b) Effect of electrode materials on electrokinetic reduction
of soil salinity. Separation Science and Technology, pp pp 37–41
Lee Y-J, Choi J-H, Lee H-G, Ha T-H (2013) Electrokinetic remediation of saline soil using pulse
power. Environ Eng Sci 30:133–141
Leitgib L, Gruiz K, Fenyvesi É, Balogh G, Murányi A (2008) Development of an innovative soil
remediation:“Cyclodextrin-enhanced combined technology”. Sci Total Environ 392:12–21
Li RS, Li LY (2000) Enhancement of electrokinetic extraction from lead-spiked soils. J Environ
Eng 126:849–857
Li B-L, Loehle C, Malon D (1996) Microbial transport through heterogeneous porous media:
random walk, fractal, and percolation approaches. Ecol Model 85:285–302
Li T, Guo S, Zhang L, Li F (2010) Electro-biodegradation of the oil-contaminated soil through
periodic electrode switching. 4th International Conference on Bioinformatics and Biomedical
Engineering (pp. 1-4). IEEE.
Li D, Tan X-Y, Wu X-D, Pan C, Xu P (2014) Effects of electrolyte characteristics on soil
conductivity and current in electrokinetic remediation of lead-contaminated soil. Sep Purif
Technol 135:14–21
Li F, Guo S, Hartog N, Yuan Y, Yang X (2016) Isolation and characterization of heavy polycyclic
aromatic hydrocarbon-degrading bacteria adapted to electrokinetic conditions. Biodegradation
27:1–13
Liu Z, Chen W, Papadopoulos KD (1999) Electrokinetic movement of Escherichia coli in capillaries. Environ Microbiol 1:99–102
Lovley DR (2006) Bug juice: harvesting electricity with microorganisms. Nat Rev Microbiol
4:497–508
Luo Q, Zhang X, Wang H, Qian Y (2005) The use of non-uniform electrokinetics to enhance in situ
bioremediation of phenol-contaminated soil. J Hazard Mater 121:187–194
Maini G, Sharman AK, Knowles CJ, Sunderland G, Jackman SA (2000) Electrokinetic remediation
of metals and organics from historically contaminated soil. J Chem Technol Biotechnol
75:657–664
Manokararajah K, Ranjan RS (2005) Electrokinetic retention, migration and remediation of nitrates
in silty loam soil under hydraulic gradients. Eng Geol 77:263–272
Marechal JC, Dewandel B, Ahmed S, Galeazzi L, Zaidi FK (2006) Combined estimation of specific
yield and natural recharge in a semi-arid groundwater basin with irrigated agriculture. J Hydrol
329:281–293
Maturi K, Reddy KR (2006) Simultaneous removal of organic compounds and heavy metals from
soils by electrokinetic remediation with a modified cyclodextrin. Chemosphere 63:1022–1031
Micó C, Recatalá L, Peris M, Sánchez J (2006) Assessing heavy metal sources in agricultural soils
of an European Mediterranean area by multivariate analysis. Chemosphere 65:863–872
Moghadam MJ, Moayedi H, Sadeghi MM, Hajiannia A (2016) A review of combinations of
electrokinetic applications. Environ Geochem Health 38:1217
Mueller JG, Cerniglia CE, Pritchard PH (1996) Bioremediation of environments contaminated by
polycyclic aromatic hydrocarbons. Biotechnol Res Ser 6:125–194
O’Connor CS, Lepp NW, Edwards R, Sunderland G (2003) The combined use of electrokinetic
remediation and phytoremediation to decontaminate metal-polluted soils: a laboratory-scale
feasibility study. Environ Monit Assess 84:141–158
8 Electro-bioremediation: An Advanced Remediation Technology for the. . .
211
