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Original Articles

The Use of Electrokinetics for Hazardous Waste Site Remediation

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Pages 1670-1676 | Received 11 Jul 1990, Accepted 27 Aug 1990, Published online: 06 Mar 2012

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Read on this site (5)

A. R. Estabragh, A. T. Bordbar, F. Ghaziani & A. A. Javadi. (2016) Removal of MTBE from a clay soil using electrokinetic technique. Environmental Technology 37:14, pages 1745-1756.
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ThomasE. Higgins, AmyR. Halloran & JohnC. Petura. (1997) Traditional and innovative treatment methods for Cr(VI) in soil. Journal of Soil Contamination 6:6, pages 767-797.
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DavidJ. Wilson . (1996) Electrokinetic Remediation. III. Enhancement with Base. Separation Science and Technology 31:4, pages 435-451.
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DavidJ. Wilson, José Miguel Rodríguez-Maroto & César Gómez-Lahoz. (1995) Electrokinetic Remediation. II. Amphoteric Metals and Enhancement with a Weak Acid. Separation Science and Technology 30:16, pages 3111-3128.
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DavidJ. Wilson, José Miguel Rodríguez-Maroto & César Gómez-Lahoz. (1995) Electrokinetic Remediation. I. Modeling of Simple Systems. Separation Science and Technology 30:15, pages 2937-2961.
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Articles from other publishers (37)

Lawrence Opoku Boampong, Roozbeh Rafati & Amin Sharifi Haddad. (2023) Modelling of carbonate rock wettability based on surface charge and calcite dissolution. Fuel 331, pages 125856.
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Zhou Wang, Pingping Luo, Xianbao Zha, Chengyi Xu, Shuxin Kang, Meimei Zhou, Daniel Nover & Yihe Wang. (2022) Overview assessment of risk evaluation and treatment technologies for heavy metal pollution of water and soil. Journal of Cleaner Production 379, pages 134043.
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Fan Zheng, Hua Zhu & Haobo Hou. (2021) Insights into the development of electrokinetic remediation technology: A bibliometric analysis. Soil and Water Research 16:4, pages 250-255.
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Mahendra Kumar, Aparna Seth, Alak Kumar Singh, Manish Singh Rajput & Mohd Sikandar. (2021) Remediation strategies for heavy metals contaminated ecosystem: A review. Environmental and Sustainability Indicators 12, pages 100155.
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Kristine B. Pedersen, Ahmed Benamar, Mohamed T. Ammami, Florence Portet‐Koltalo & Gunvor M. Kirkelund. 2021. Electrokinetic Remediation for Environmental Security and Sustainability. Electrokinetic Remediation for Environmental Security and Sustainability 99 139 .
Ding Han, Xingyi Wu, Rui Li, Xianqiang Tang, Shangbin Xiao & Miklas Scholz. (2021) Critical Review of Electro-kinetic Remediation of Contaminated Soils and Sediments: Mechanisms, Performances and Technologies. Water, Air, & Soil Pollution 232:8.
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Kevin Dedecker & Giulia Grancini. (2020) Dealing with Lead in Hybrid Perovskite: A Challenge to Tackle for a Bright Future of This Technology?. Advanced Energy Materials, pages 2001471.
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Salwinder Singh Dhaliwal, Jaswinder Singh, Parminder Kaur Taneja & Agniva Mandal. (2019) Remediation techniques for removal of heavy metals from the soil contaminated through different sources: a review. Environmental Science and Pollution Research 27:2, pages 1319-1333.
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B. K. Pandey & S. Rajesh. (2019) Enhanced Engineering Characteristics of Soils by Electro-Osmotic Treatment: An Overview. Geotechnical and Geological Engineering 37:6, pages 4649-4673.
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O. Ait Ahmed, Z. Derriche, M. Kameche, A. Bahmani, H. Souli, P. Dubujet & J.M. Fleureau. (2016) Electro-remediation of lead contaminated kaolinite: An electro-kinetic treatment. Chemical Engineering and Processing: Process Intensification 100, pages 37-48.
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Shashi Kant Shukla, Rohit Kumar Mishra, Manisha Pandey, Vani Mishra, Ashutosh Pathak, Anand Pandey, Rajesh Kumar & Anupam Dikshit. 2016. Plant Metal Interaction. Plant Metal Interaction 499 529 .
Mingchao Liang, Shanshan Yang & Boming Yu. (2014) A fractal streaming current model for charged microscale porous media. Journal of Electrostatics 72:6, pages 441-446.
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Vincenzo Piemonte, Marcello De Falco & Angelo Basile. 2013. Sustainable Development in Chemical Engineering Innovative Technologies. Sustainable Development in Chemical Engineering Innovative Technologies 1 24 .
I. Robles, M.G. García, S. Solís, G. Hernández, Y. Bandala, E. Juaristi & E. Bustos. (2012) Electroremediation of Mercury Polluted Soil Facilitated by Complexing Agents. International Journal of Electrochemical Science 7:3, pages 2276-2287.
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Zhitong Yao, Jinhui Li, Henghua Xie & Conghai Yu. (2012) Review on Remediation Technologies of Soil Contaminated by Heavy Metals. Procedia Environmental Sciences 16, pages 722-729.
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Yoshiro Maki, Junji Shibata & Norihiro Murayama. (2011) Remediation of Heavy-Metal-Contaminated Soil with Chelating Agent and Treatment of Waste Solution. JOURNAL OF CHEMICAL ENGINEERING OF JAPAN 44:10, pages 701-707.
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Yoshiro Maki, Junji Shibata, Norihiro Murayama, Yasuhiro Nishimura & Yuya Ueshima. (2010) An Attempt to Remediation of Heavy-Metal-Contaminated Soil with Chelating Agent. KAGAKU KOGAKU RONBUNSHU 36:4, pages 222-228.
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Yoshiro Maki, Junji Shibata, Norihiro Murayama, Yasuhiro Nishimura & Yuya Ueshima. (2009) Treatment of Heavy Metal Contaminated Soil with Chelating Agent. KAGAKU KOGAKU RONBUNSHU 35:2, pages 258-263.
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Jorge G. Ibanez, Margarita Hernandez-Esparza, Carmen Doria-Serrano, Arturo Fregoso-Infante & Mono Mohan SinghJorge G. Ibanez, Margarita Hernandez-Esparza, Carmen Doria-Serrano, Arturo Fregoso-Infante & Mono Mohan Singh. 2008. Environmental Chemistry. Environmental Chemistry 147 153 .
Chatdanai Jiradecha, Meltem Urgun-Demirtas & Krishna Pagilla. (2006) Enhanced electrokinetic dissolution of naphthalene and 2,4-DNT from contaminated soils. Journal of Hazardous Materials 136:1, pages 61-67.
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M. M. Teutli-León, M. T. Oropeza, I. González & A. Soria. (2005) Mathematical modeling of a galvanostatic soil electroremediation process. AIChE Journal 51:6, pages 1822-1833.
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Brian M. Desharnais & Barbara Ann G. Lewis. (2002) Electrochemical Water Splitting at Bipolar Interfaces of Ion Exchange Membranes and Soils. Soil Science Society of America Journal 66:5, pages 1518-1525.
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Raymond S. LiLoretta Y. Li. (2000) Enhancement of Electrokinetic Extraction from Lead-Spiked Soils. Journal of Environmental Engineering 126:9, pages 849-857.
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T. Paillat, E. Moreau, P.O. Grimaud & G. Touchard. (2000) Electrokinetic phenomena in porous media applied to soil decontamination. IEEE Transactions on Dielectrics and Electrical Insulation 7:5, pages 693-704.
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Aaron A. Jennings & Puneet Mansharamani. (1999) Modeling electrokinetically-enhanced aggregate remediation. Environmental Modelling & Software 14:6, pages 625-634.
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Muniram BudhuMarcus RutherfordGilliane SillsWilliam Rasmussen. (1997) Transport of Nitrates through Clay Using Electrokinetics. Journal of Environmental Engineering 123:12, pages 1251-1253.
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Krishna R. Reddy, Usha S. Parupudi, Srinivas N. Devulapalli & Charlie Y. Xu. (1997) Effects of soil composition on the removal of chromium by electrokinetics. Journal of Hazardous Materials 55:1-3, pages 135-158.
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Tim Grundl & Christine Reese. (1997) Laboratory study of electrokinetic effects in complex natural sediments. Journal of Hazardous Materials 55:1-3, pages 187-201.
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K. R. Reddy & A. B. Shirani. (1997) Electrokinetic remediation of metal contaminated glacial tills. Geotechnical and Geological Engineering 15:1, pages 3-29.
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Krishnan Rajeshwar & Jorge G. Ibanez. 1997. Environmental Electrochemistry. Environmental Electrochemistry 361 497 .
D.M. Hamby. (1996) Site remediation techniques supporting environmental restoration activities—a review. Science of The Total Environment 191:3, pages 203-224.
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Jihua Hong & Peter N. Pintauro. (1996) Desorption-complexation-dissolution characteristics of adsorbed cadmium from kaolin by chelators. Water, Air, and Soil Pollution 86:1-4, pages 35-50.
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Bala S. Haran, Branko N. Popov, Guanghong Zheng & Ralph E. White. (1996) Development of a new electrokinetic technique for decontamination of hexavalent chromium from low surface charged soils. Environmental Progress 15:3, pages 166-172.
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Daichao Sheng & Kennet Axelsson. (1995) Uncoupling of coupled flows in soil—a finite element method. International Journal for Numerical and Analytical Methods in Geomechanics 19:8, pages 537-553.
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Pallav Tatapudi & James M. Fenton. 1995. Advances in Electrochemical Science and Engineering. Advances in Electrochemical Science and Engineering 362 417 .
Julie E. Sauer & E. James. Davis. (2002) Electrokinetically Enhanced Sedimentation of Colloidal Contaminants. Environmental Science & Technology 28:4, pages 737-745.
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Lawrence Opoku Boampong, Roozbeh Rafati & Amin Sharifi Haddad. (2022) Modelling of Carbonate Rock Wettability Based on Surface Charge and Calcite Dissolution. SSRN Electronic Journal.
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