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Original Articles

Transport and transformation of hexavalent chromium through soils and into ground water

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Pages 203-224 | Published online: 02 Dec 2008

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M. Sinduja, V. Sathya, M. Maheswari, P. Dhevagi, P. Kalpana, G. K. Dinesh & Shiv Prasad. (2022) Evaluation and speciation of heavy metals in the soil of the Sub Urban Region of Southern India. Soil and Sediment Contamination: An International Journal 31:8, pages 974-993.
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Sayed M. Hassan & Arthur W. Garrison. (1996) Distribution of chromium species between soil and porewater. Chemical Speciation & Bioavailability 8:3-4, pages 85-103.
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Articles from other publishers (33)

Abhi P. Shah & G. Archana. (2021) Evaluation of bacterial strains isolated from Late Quaternary alluvial sediments spanning ~ 28 m in depth for heavy metal tolerance and Cr(VI) removal ability. International Microbiology 24:3, pages 385-398.
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Amelia Bergeson, Travis Reed & Allen W. Apblett. (2020) Reduction and Immobilization of Chromate Using Nanometric Pyrite. Journal of Materials Engineering and Performance 29:9, pages 5557-5563.
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Weizhao Yin, Yongtao Li, Jinhua Wu, Guocai Chen, Gangbiao Jiang, Ping Li, Jingjing Gu, Hao Liang & Chuansheng Liu. (2017) Enhanced Cr(VI) removal from groundwater by Fe 0 -H 2 O system with bio-amended iron corrosion. Journal of Hazardous Materials 332, pages 42-50.
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Wenjuan Fan, Junlian Qiao & Xiaohong Guan. (2017) Multi-wavelength spectrophotometric determination of Cr(VI) in water with ABTS. Chemosphere 171, pages 460-467.
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Dilip K.L. Harijan & Vimlesh Chandra. (2016) Environment friendly synthesis of magnetite-graphene composite for adsorption of toxic chromium (VI) ions from drinking water. Environmental Progress & Sustainable Energy 35:3, pages 700-705.
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Kevin N. BarberCory K. PerkinsAllen W. Apblett. (2016) Reduction of chromate by molybdenum hydrogen bronze. Canadian Journal of Chemistry 94:4, pages 401-405.
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F. Pinakidou, M. Katsikini, K. Simeonidis, E. Kaprara, E.C. Paloura & M. Mitrakas. (2016) On the passivation mechanism of Fe3O4 nanoparticles during Cr(VI) removal from water: A XAFS study. Applied Surface Science 360, pages 1080-1086.
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Pian Feng, Xiaohong Guan, Yuankui Sun, Wonyong Choi, Hejie Qin, Jianmin Wang, Junlian Qiao & Lina Li. (2015) Weak magnetic field accelerates chromate removal by zero-valent iron. Journal of Environmental Sciences 31, pages 175-183.
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In-Ho Yoon, Sunbaek Bang, Jin-Soo Chang, Min Gyu Kim & Kyoung-Woong Kim. (2011) Effects of pH and dissolved oxygen on Cr(VI) removal in Fe(0)/H2O systems. Journal of Hazardous Materials 186:1, pages 855-862.
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Khaled Mahmud Shams, Gottfried Tichy, Manfred Sager, Thomas Peer, Ashtar Bashar & Marija Jozic. (2008) Soil Contamination From Tannery Wastes with Emphasis on the Fate and Distribution of Tri- and Hexavalent Chromium. Water, Air, and Soil Pollution 199:1-4, pages 123-137.
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Burcu UyuşurKahraman Ünlü. (2009) A Laboratory Column Investigation for the Treatment of Cr(VI) with Zero-Valent Iron. Environmental Engineering Science 26:2, pages 385-396.
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Irene M.C. Lo, Chester S.C. Lam & Keith C.K. Lai. (2006) Hardness and carbonate effects on the reactivity of zero-valent iron for Cr(VI) removal. Water Research 40:3, pages 595-605.
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Yu-Cheng CHEN, Zhi-Ting XIONG & Shan-Yan DONG. (2006) Chemical Behavior of Cadmium in Purple Soil as Affected by Surfactants and EDTA. Pedosphere 16:1, pages 91-99.
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Lucia H. G. Chaves. (2005) The role of green rust in the environment: a review. Revista Brasileira de Engenharia Agrícola e Ambiental 9:2, pages 284-288.
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Patricia A. Terry. (2004) Characterization of Cr ion exchange with hydrotalcite. Chemosphere 57:7, pages 541-546.
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Cynthia J. Paul, Faruque A. Khan & Robert W. Puls. 2003. Handbook of Groundwater Remediation using Permeable Reactive Barriers. Handbook of Groundwater Remediation using Permeable Reactive Barriers 465 493 .
Tibor Cserháti, Esther Forgács & Gyula Oros. (2002) Biological activity and environmental impact of anionic surfactants. Environment International 28:5, pages 337-348.
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Frank P. BeckJr.Jr., Patrick J. Clark & Robert W. Puls. (2007) Direct Push Methods for Locating and Collecting Cores of Aquifer Sediment and Zero‐Valent Iron from a Permeable Reactive Barrier. Groundwater Monitoring & Remediation 22:3, pages 165-168.
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Jean-Marie R. G?nin, Philippe Refait, Guilhem Bourri?Mustapha Abdelmoula & Fabienne Trolard. (2001) Structure and stability of the Fe(II)?Fe(III) green rust ?fougerite? mineral and its potential for reducing pollutants in soil solutions. Applied Geochemistry 16:5, pages 559-570.
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Dharani Dhar Das, Ranjit Mahapatra, Jyotsnamayee Pradhan, Surendra Nath Das & Ravindra Sing Thakur. (2000) Removal of Cr(VI) from Aqueous Solution Using Activated Cow Dung Carbon. Journal of Colloid and Interface Science 232:2, pages 235-240.
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M Mench, J Seaman, A Knox & J Vangronsveld. 2000. Environmental Restoration of Metals-Contaminated Soils. Environmental Restoration of Metals-Contaminated Soils 21 60 .
Frank P. BeckJr.Jr., Patrick J. Clark & Robert W. Puls. (2007) Location and Characterization of Subsurface Anomalies Using a Soil Conductivity Probe. Groundwater Monitoring & Remediation 20:2, pages 55-59.
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Stéphanie Loyaux-Lawniczak, Philippe Refait, Jean-Jacques Ehrhardt, Paul Lecomte & Jean-Marie R. Génin. (1999) Trapping of Cr by Formation of Ferrihydrite during the Reduction of Chromate Ions by Fe(II)−Fe(III) Hydroxysalt Green Rusts. Environmental Science & Technology 34:3, pages 438-443.
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Robert W Puls, Cynthia J Paul & Robert M Powell. (1999) The application of in situ permeable reactive (zero-valent iron) barrier technology for the remediation of chromate-contaminated groundwater: a field test. Applied Geochemistry 14:8, pages 989-1000.
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Robert W. Puls, David W. Blowes & Robert W. Gillham. (1999) Long-term performance monitoring for a permeable reactive barrier at the U.S. Coast Guard Support Center, Elizabeth City, North Carolina. Journal of Hazardous Materials 68:1-2, pages 109-124.
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L. Jared West, D. I. Stewart, J. R. Duxbury & S. Richard Johnston. (2022) Toxic metal mobility and retention at industrially contaminated sites. Geological Society, London, Special Publications 157:1, pages 241-264.
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Youssef El‐Shoubary, Ned Speizer, Subash Seth & Holly Savoia. (2006) A pilot plant to treat chromium‐contaminated groundwater. Environmental Progress 17:3, pages 209-213.
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Robert W. PulsCynthia J. Paul. (1998) Discrete-Level Ground-Water Monitoring System for Containment and Remedial Performance Assessment Objectives. Journal of Environmental Engineering 124:6, pages 549-553.
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Rock J. Vitale, George R. Mussoline, Kelly A. Rinehimer, John C. Petura & Bruce R. James. (1997) Extraction of Sparingly Soluble Chromate from Soils:  Evaluation of Methods and E h −pH Effects . Environmental Science & Technology 31:2, pages 390-394.
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Robert W. Puls & Cynthia J. Paul. (1997) Multi-layer sampling in conventional monitoring wells for improved estimation of vertical contaminant distributions and mass. Journal of Contaminant Hydrology 25:1-2, pages 85-111.
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B.Thirumalai Nivas, David A. Sabatini, Bor-Jier Shiau & Jeffrey H. Harwell. (1996) Surfactant enhanced remediation of subsurface chromium contamination. Water Research 30:3, pages 511-520.
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Robert M. Powell, Robert W. Puls, Sharon K. Hightower & David A. Sabatini. (2002) Coupled Iron Corrosion and Chromate Reduction: Mechanisms for Subsurface Remediation. Environmental Science & Technology 29:8, pages 1913-1922.
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