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Technical Paper

In Situ Reduction of Hexavalent Chromium in Alkaline Soils Enriched with Chromite Ore Processing Residue

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Pages 1100-1106 | Published online: 27 Dec 2011

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Fansheng Meng, Hao Xue, Yeyao Wang, Binghui Zheng & Juling Wang. (2018) Citric-acid preacidification enhanced electrokinetic remediation for removal of chromium from chromium-residue-contaminated soil. Environmental Technology 39:3, pages 356-362.
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NANTHI BOLAN, DOMY ADRIANO & SANTIAGO MAHIMAIRAJA. (2004) Distribution and Bioavailability of Trace Elements in Livestock and Poultry Manure By-Products. Critical Reviews in Environmental Science and Technology 34:3, pages 291-338.
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Mannal Mohamed Emam, Hemmat Khattab, Amal Ahmed Morsy, Karima Hamid A. Salama & Mohamed Magdy F. Mansour. 2021. Handbook of Bioremediation. Handbook of Bioremediation 165 193 .
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Y. DuM. Chrysochoou. (2016) The Leaching Characteristics of Chromite Ore Processing Residue from China. The Leaching Characteristics of Chromite Ore Processing Residue from China.
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Weixuan Ding, Douglas I. Stewart, Paul N. Humphreys, Simon P. Rout & Ian T. Burke. (2016) Role of an organic carbon-rich soil and Fe(III) reduction in reducing the toxicity and environmental mobility of chromium(VI) at a COPR disposal site. Science of The Total Environment 541, pages 1191-1199.
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L K Bankole, S A Rezan & N M Sharif. (2014) Assessment of hexavalent chromium release in Malaysian electric arc furnace steel slag for fertilizer usage. IOP Conference Series: Earth and Environmental Science 19, pages 012004.
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Deok Hyun Moon & Mahmoud Wazne. (2011) Impact of brownmillerite hydration on Cr(VI) sequestration in chromite ore processing residue. Geosciences Journal 15:3, pages 287-296.
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S. Laxmipriya, M. Sivakumar, K. Anand & P. Shanmugam. (2010) Study on soil bio-remediaton for preventing groundwater contamination of chromium bearing leather processing waste dumping sites. Study on soil bio-remediaton for preventing groundwater contamination of chromium bearing leather processing waste dumping sites.
Evert J. Elzinga & Ashley Cirmo. (2010) Application of sequential extractions and X-ray absorption spectroscopy to determine the speciation of chromium in Northern New Jersey marsh soils developed in chromite ore processing residue (COPR). Journal of Hazardous Materials 183:1-3, pages 145-154.
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Qian Zhao, Huan-zhen Zhang, Ying Zhang & Zhi-li Wang. (2010) Solidification/Stabilization Effect of Ferrous Sulfate and Calcium Hydroxide/Calcium Oxide on High Concentration Chromium Contaminated Soil. Solidification/Stabilization Effect of Ferrous Sulfate and Calcium Hydroxide/Calcium Oxide on High Concentration Chromium Contaminated Soil.
Douglas I. Stewart, Ian T. Burke, Danielle V. Hughes-Berry & Robert A. Whittleston. (2010) Microbially mediated chromate reduction in soil contaminated by highly alkaline leachate from chromium containing waste. Ecological Engineering 36:2, pages 211-221.
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Homayon Ahmad Panahi, Amir Abdollah Mehrdad Sharif, Mehrnaz Bigonah & Elham Moniri. (2010) Preconcentration and determination of chromium in water with flame atomic absorption spectrometry by thiourea-formaldehyde as chelating resin. Korean Journal of Chemical Engineering 26:6, pages 1723-1728.
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M.A. Gondal, T. Hussain, Z.H. Yamani & M.A. Baig. (2009) On-line monitoring of remediation process of chromium polluted soil using LIBS. Journal of Hazardous Materials 163:2-3, pages 1265-1271.
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Hui-Sheng Shi & Li-Li Kan. (2009) Study on the properties of chromium residue-cement matrices (CRCM) and the influences of superplasticizers on chromium(VI)-immobilising capability of cement matrices. Journal of Hazardous Materials 162:2-3, pages 913-919.
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James M. TinjumCraig H. BensonTuncer B. Edil. (2008) Treatment of Cr(VI) in COPR Using Ferrous Sulfate–Sulfuric Acid or Cationic Polysulfides. Journal of Geotechnical and Geoenvironmental Engineering 134:12, pages 1791-1803.
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Mahmoud Wazne, Santhi Chandra Jagupilla, Deok Hyun Moon, Christos Christodoulatos & Agamemnon Koutsospyros. (2008) Leaching Mechanisms of Cr(VI) from Chromite Ore Processing Residue. Journal of Environmental Quality 37:6, pages 2125-2134.
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Deok Hyun Moon, Mahmoud Wazne, Santhi Chandra Jagupilla, Christos Christodoulatos, Min Gyu Kim & Agamemnon Koutsospyros. (2008) Particle size and pH effects on remediation of chromite ore processing residue using calcium polysulfide (CaS5). Science of The Total Environment 399:1-3, pages 2-10.
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Maria Chrysochoou, Dimitris Dermatas, Deok Hyun Moon & Christos Christodoulatos. (2008) Reductive Treatment of Chromite Ore Processing Residue (COPR): Lessons from a Field Study. Reductive Treatment of Chromite Ore Processing Residue (COPR): Lessons from a Field Study.
James M. Tinjum, Craig H. Benson & Tuncer B. Edil. (2008) Mobilization of Cr(VI) from chromite ore processing residue through acid treatment. Science of The Total Environment 391:1, pages 13-25.
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Carlo Viti & Luciana Giovannetti. 2007. Environmental Bioremediation Technologies. Environmental Bioremediation Technologies 57 76 .
J.G. Farmer, E. Paterson, R.J.F. Bewley, J.S. Geelhoed, S. Hillier, J.C.L. Meeussen, D.G. Lumsdon, R.P. Thomas & M.C. Graham. (2006) The implications of integrated assessment and modelling studies for the future remediation of chromite ore processing residue disposal sites. Science of The Total Environment 360:1-3, pages 90-97.
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Dar-Yuan Lee, Yu-Na Shih, Hsiu-Ching Zheng, Chiou-Pin Chen, Kai-Wei Juang, Jyh-Fu Lee & Lo Tsui. (2006) Using the Selective Ion Exchange Resin Extraction and XANES Methods to Evaluate the Effect of Compost Amendments on Soil Chromium(VI) Phytotoxicity. Plant and Soil 281:1-2, pages 87-96.
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D.C. Adriano, W.W. Wenzel, J. Vangronsveld & N.S. Bolan. (2004) Role of assisted natural remediation in environmental cleanup. Geoderma 122:2-4, pages 121-142.
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Tetsu K. Tokunaga, Jiamin Wan, Mary K. Firestone, Terry C. Hazen, Keith R. Olson, Donald J. Herman, Stephen R. Sutton & Antonio Lanzirotti. (2003) In Situ Reduction of Chromium(VI) in Heavily Contaminated Soils through Organic Carbon Amendment. Journal of Environmental Quality 32:5, pages 1641-1649.
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Jeanine S Geelhoed, Johannes C.L Meeussen, Stephen Hillier, David G Lumsdon, Rhodri P Thomas, John G Farmer & Edward Paterson. (2002) Identification and geochemical modeling of processes controlling leaching of Cr(VI) and other major elements from chromite ore processing residue. Geochimica et Cosmochimica Acta 66:22, pages 3927-3942.
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Edward J Yurkow, Janet Hong, Samantha Min & Su Wang. (2002) Photochemical reduction of hexavalent chromium in glycerol-containing solutions. Environmental Pollution 117:1, pages 1-3.
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