Chung HI, Kang BH (1999) Lead removal from contaminated marine clay by electrokinetic soil
decontamination. Eng Geol 53:139–150
Costerton JW, Lappin-Scott HM (1989) Behavior of bacteria in biofilms. ASM News 55:650–654
DeFlaun MF, Condee CW (1997) Electrokinetic transport of bacteria. J Hazard Mater 55:263–277
Fierro S, del Pilar Sánchez-Saavedra M, Copalcua C (2008) Nitrate and phosphate removal by
chitosan immobilized Scenedesmus. Bioresour Technol 99:1274–1279
Fytianos K, Voudrias E, Raikos N (1998) Modelling of phosphorus removal from aqueous and
wastewater samples using ferric iron. Environ Pollut 101:123–130
Gardner K (2005) Electrochemical remediation and stabilization of contaminated sediments.
Cooperative Institute for Coastal and Estuarine Environmental Technology (CICEET), Durham
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
approaches, 1st edn. CRC Press, Taylor & Francis Group, Boca Raton, pp 369–396. https://doi.
org/10.1201/9781315173351-14
Geller A (1991) Handbuch Mikrobiologische Bodenreinigung Materialien zur
Altlastenbearbeitung. Landesanstalt f{ü}r Umweltschutz Baden-W{ü}rttemberg. Karlsruhe
Gent DB, Bricka RM, Alshawabkeh AN, Larson SL, Fabian G, Granade S (2004) Bench-and fieldscale evaluation of chromium and cadmium extraction by electrokinetics. J Hazard Mater
110:53–62
Gomes HI, Dias-Ferreira C, Ribeiro AB (2012) Electrokinetic remediation of organochlorines in
soil: enhancement techniques and integration with other remediation technologies.
Chemosphere 87:1077–1090
Goutam SP, Saxena G, Singh V, Yadav AK, Bharagava RN (2018) Green synthesis of TiO 2
nanoparticles using leaf extract of Jatropha curcas L. for photocatalytic degradation of tannery
wastewater. Chem Eng J 336:386–396. https://doi.org/10.1016/j.cej.2017.12.029
Granade S, Gent D (2002) Electrokinetic remediation of contaminated sediments. Remediat. Benef.
Reuse Contam. Sediments. pp 205–212
Gundersen P, Steinnes E (2003) Influence of pH and TOC concentration on Cu, Zn, Cd, and Al
speciation in rivers. Water Res 37:307–318
Hao OJ, Kim H, Chiang P-C (2000) Decolorization of wastewater. Crit Rev Environ Sci Technol
30:449–505
Harbottle MJ, Lear G, Sills GC, Thompson IP (2009) Enhanced biodegradation of pentachlorophenol in unsaturated soil using reversed field electrokinetics. J Environ Manag 90
(5):1893–1900
Harms H, Wick LY (2006) Dispersing pollutant-degrading bacteria in contaminated soil without
touching it. Eng Life Sci 6:252–260
Hassan I, Mohamedelhassan E, Yanful EK, Yuan Z (2016) A review article: Electrokinetic
bioremediation: current knowledge and new prospects. Adv Microbiol 6:57–72
Jadhav JP, Govindwar SP (2006) Biotransformation of malachite green by Saccharomyces
cerevisiae MTCC 463. Yeast 23:315–323
Jayanth SN, Karthik R, Logesh S, Srinivas RK, Vijayanand K (2011) Environmental issues and its
impacts associated with the textile processing units in Tiruppur, Tamilnadu. In: 2nd international conference on Environmental Science and Development, IPCBEE. pp 120–124
Jeon EK, Jung JM, Ryu SR, Baek K (2015) In situ field application of electrokinetic remediation for
an As-, Cu-, and Pb-contaminated rice paddy site using parallel electrode configuration. Environ
Sci Pollut Res 22:15763–15771. https://doi.org/10.1007/s11356-015-4765-3
Jo S, Shin YJ, Yang JS, Moon DH, Koutsospyros A, Baek K (2015) Enhanced electrokinetic
transport of sulfate in saline soil. Water Air Soil Pollut 226:1–8. https://doi.org/10.1007/s11270015-2459-6
Kamaruzzaman BY, Ong MC, Jalal KCA, Shahbudin S, Nor OM, (2009) Accumulation of lead and
copper in Rhizophora apiculata from Setiu mangrove forest, Terengganu, Malaysia
8 Electro-bioremediation: An Advanced Remediation Technology for the. . .
209
decontamination. Eng Geol 53:139–150
Costerton JW, Lappin-Scott HM (1989) Behavior of bacteria in biofilms. ASM News 55:650–654
DeFlaun MF, Condee CW (1997) Electrokinetic transport of bacteria. J Hazard Mater 55:263–277
Fierro S, del Pilar Sánchez-Saavedra M, Copalcua C (2008) Nitrate and phosphate removal by
chitosan immobilized Scenedesmus. Bioresour Technol 99:1274–1279
Fytianos K, Voudrias E, Raikos N (1998) Modelling of phosphorus removal from aqueous and
wastewater samples using ferric iron. Environ Pollut 101:123–130
Gardner K (2005) Electrochemical remediation and stabilization of contaminated sediments.
Cooperative Institute for Coastal and Estuarine Environmental Technology (CICEET), Durham
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
approaches, 1st edn. CRC Press, Taylor & Francis Group, Boca Raton, pp 369–396. https://doi.
org/10.1201/9781315173351-14
Geller A (1991) Handbuch Mikrobiologische Bodenreinigung Materialien zur
Altlastenbearbeitung. Landesanstalt f{ü}r Umweltschutz Baden-W{ü}rttemberg. Karlsruhe
Gent DB, Bricka RM, Alshawabkeh AN, Larson SL, Fabian G, Granade S (2004) Bench-and fieldscale evaluation of chromium and cadmium extraction by electrokinetics. J Hazard Mater
110:53–62
Gomes HI, Dias-Ferreira C, Ribeiro AB (2012) Electrokinetic remediation of organochlorines in
soil: enhancement techniques and integration with other remediation technologies.
Chemosphere 87:1077–1090
Goutam SP, Saxena G, Singh V, Yadav AK, Bharagava RN (2018) Green synthesis of TiO 2
nanoparticles using leaf extract of Jatropha curcas L. for photocatalytic degradation of tannery
wastewater. Chem Eng J 336:386–396. https://doi.org/10.1016/j.cej.2017.12.029
Granade S, Gent D (2002) Electrokinetic remediation of contaminated sediments. Remediat. Benef.
Reuse Contam. Sediments. pp 205–212
Gundersen P, Steinnes E (2003) Influence of pH and TOC concentration on Cu, Zn, Cd, and Al
speciation in rivers. Water Res 37:307–318
Hao OJ, Kim H, Chiang P-C (2000) Decolorization of wastewater. Crit Rev Environ Sci Technol
30:449–505
Harbottle MJ, Lear G, Sills GC, Thompson IP (2009) Enhanced biodegradation of pentachlorophenol in unsaturated soil using reversed field electrokinetics. J Environ Manag 90
(5):1893–1900
Harms H, Wick LY (2006) Dispersing pollutant-degrading bacteria in contaminated soil without
touching it. Eng Life Sci 6:252–260
Hassan I, Mohamedelhassan E, Yanful EK, Yuan Z (2016) A review article: Electrokinetic
bioremediation: current knowledge and new prospects. Adv Microbiol 6:57–72
Jadhav JP, Govindwar SP (2006) Biotransformation of malachite green by Saccharomyces
cerevisiae MTCC 463. Yeast 23:315–323
Jayanth SN, Karthik R, Logesh S, Srinivas RK, Vijayanand K (2011) Environmental issues and its
impacts associated with the textile processing units in Tiruppur, Tamilnadu. In: 2nd international conference on Environmental Science and Development, IPCBEE. pp 120–124
Jeon EK, Jung JM, Ryu SR, Baek K (2015) In situ field application of electrokinetic remediation for
an As-, Cu-, and Pb-contaminated rice paddy site using parallel electrode configuration. Environ
Sci Pollut Res 22:15763–15771. https://doi.org/10.1007/s11356-015-4765-3
Jo S, Shin YJ, Yang JS, Moon DH, Koutsospyros A, Baek K (2015) Enhanced electrokinetic
transport of sulfate in saline soil. Water Air Soil Pollut 226:1–8. https://doi.org/10.1007/s11270015-2459-6
Kamaruzzaman BY, Ong MC, Jalal KCA, Shahbudin S, Nor OM, (2009) Accumulation of lead and
copper in Rhizophora apiculata from Setiu mangrove forest, Terengganu, Malaysia
8 Electro-bioremediation: An Advanced Remediation Technology for the. . .
209
