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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 42, 2007 - Issue 6
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ARTICLES

Ferrate(VI): A green chemical for the oxidation of cyanide in aqueous/waste solutions

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Pages 803-810 | Received 30 Aug 2006, Published online: 24 Sep 2010

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Read on this site (4)

Jibin An, Chunqiu Xia, Jiahong He & Huixia Feng. (2018) Oxidation of propyl paraben by ferrate(VI): Kinetics, products, and toxicity assessment. Journal of Environmental Science and Health, Part A 53:10, pages 873-882.
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Khemarath Osathaphan, Wasinee Kittisarn, Prapaporn Chatchaitanawat, Ria A. Yngard, Hyunook Kim & Virender K. Sharma. (2014) Oxidation of Ni(II)-cyano and Co(III)-cyano complexes by Ferrate(VI): Effect of pH. Journal of Environmental Science and Health, Part A 49:12, pages 1380-1384.
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M.R. Yu, Y.Y. Chang, Diwakar Tiwari, L. Pachuau, S.M. Lee & J.K. Yang. (2012) Treatment of wastewater contaminated with Cd(II)–NTA using Fe(VI). Desalination and Water Treatment 50:1-3, pages 43-50.
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J. Yang, D. Tiwari, M. Yu, L. Pachuau, W. Kim & S. Lee. (2010) Application of Fe(VI) in the treatment of Zn(II)‐NTA complexes in aqueous solutions. Environmental Technology 31:7, pages 791-798.
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Articles from other publishers (23)

Lalhmunsiama, Levia Lalthazuala & Diwakar Tiwari. (2021) Ferrate (VI) as efficient oxidant for elimination of sulfamethazine in aqueous wastes: Real matrix implications. Environmental Engineering Research 27:5, pages 210256-0.
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Philip C.W. Cheung, Daryl R. Williams, Jack Barrett, James Barker & Donald W. Kirk. (2021) On the Origins of Some Spectroscopic Properties of “Purple Iron” (the Tetraoxoferrate(VI) Ion) and Its Pourbaix Safe-Space. Molecules 26:17, pages 5266.
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Ansaf V. Karim, Sukanya Krishnan, Lakshmi Pisharody & Milan Malhotra. 2020. Advanced Oxidation Processes - Applications, Trends, and Prospects. Advanced Oxidation Processes - Applications, Trends, and Prospects.
Fabian Kruse, Anh Duc Nguyen, Jovan Dragelj, Ramona Schlesinger, Joachim Heberle, Maria Andrea Mroginski & Inez M. Weidinger. (2020) Characterisation of the Cyanate Inhibited State of Cytochrome c Oxidase. Scientific Reports 10:1.
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Suhadi, Sueb & M Syamsussabri. (2019) Mercury and Cyanide Pollution on the Aquatic Organism in Sekotong People Gold Mining. Journal of Physics: Conference Series 1417:1, pages 012032.
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Stefania Mura, Yu Jiang, Irene Vassalini, Alessandra Gianoncelli, Ivano Alessandri, Gaetano Granozzi, Laura Calvillo, Nina Senes, Stefano Enzo, Plinio Innocenzi & Luca Malfatti. (2018) Graphene Oxide/Iron Oxide Nanocomposites for Water Remediation. ACS Applied Nano Materials 1:12, pages 6724-6732.
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Diwakar Tiwari, Lalsaimawia Sailo, Yi-Yong Yoon & Seung-Mok Lee. (2017) Efficient use of ferrate(VI) in the oxidative removal of potassium hydrogen phthalate from aqueous solutions. Environmental Engineering Research 23:2, pages 129-135.
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Yang Deng, Chanil Jung, Yongmei Liang, Nina Goodey & Thomas D. Waite. (2018) Ferrate(VI) decomposition in water in the absence and presence of natural organic matter (NOM). Chemical Engineering Journal 334, pages 2335-2342.
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Prabhat Kumar Rai, Jechan Lee, Suresh Kumar Kailasa, Eilhann E. Kwon, Yiu Fai Tsang, Yong Sik Ok & Ki-Hyun Kim. (2018) A critical review of ferrate(VI)-based remediation of soil and groundwater. Environmental Research 160, pages 420-448.
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Himani Uppal, S. Swarupa Tripathy, Sneha Chawla, Bharti Sharma, M.K. Dalai, S.P. Singh, Sukhvir Singh & Nahar Singh. (2017) Study of cyanide removal from contaminated water using zinc peroxide nanomaterial. Journal of Environmental Sciences 55, pages 76-85.
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Diwakar Tiwari, Lalsaimawia Sailo, Sang-Il Choi, Yi-Yong Yoon & Seung-Mok Lee. (2017) Efficient oxidative removal of 4-tert-octylphenol and 17α-ethynylestradiol from aqueous solutions using ferrate(VI). Korean Journal of Chemical Engineering 34:3, pages 734-740.
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E. N. Arakcheev, V. E. Brunman, A. N. Volkov, V. A. D’yachenko, A. P. Petkova, A. V. Sorokin, M. V. Brunman & A. V. Konyashin. (2016) Complex Electrolytic Unit for Producing Anode Liquor and Ferrate to Treat Waters Contaminated by Oil-Refining Products and Harmful Admixtures. Chemical and Petroleum Engineering 52:1-2, pages 143-148.
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Yali Song, Yang Deng & Chanil Jung. (2016) Mitigation and degradation of natural organic matters (NOMs) during ferrate(VI) application for drinking water treatment. Chemosphere 146, pages 145-153.
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Diwakar Tiwari. 2016. Ferrites and Ferrates: Chemistry and Applications in Sustainable Energy and Environmental Remediation. Ferrites and Ferrates: Chemistry and Applications in Sustainable Energy and Environmental Remediation 161 220 .
Diwakar Tiwari, Lalsaimawia Sailo & Lalramnghaki Pachuau. (2014) Remediation of aquatic environment contaminated with the iminodiacetic acid metal complexes using ferrate(VI). Separation and Purification Technology 132, pages 77-83.
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Wei Guan, Zhigang Xie & Jia Zhang. (2014) Preparation and Aromatic Hydrocarbon Removal Performance of Potassium Ferrate. Journal of Spectroscopy 2014, pages 1-8.
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Mehrdad Farrokhi, Jae-Kyu Yang, Seung-Mok Lee & Mehdi Shirzad-Siboni. (2013) Effect of organic matter on cyanide removal by illuminated titanium dioxide or zinc oxide nanoparticles. Journal of Environmental Health Science and Engineering 11:1.
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Lalramnghaki Pachuau, Seung Mok Lee & Diwakar Tiwari. (2013) Ferrate(VI) in wastewater treatment contaminated with metal(II)-iminodiacetic acid complexed species. Chemical Engineering Journal 230, pages 141-148.
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Brian E. ReedAnjuman A. IslamJohn Bendick. (2013) Ferrate and Alkaline Chlorination Treatment of Cyanide-Heavy Metal Maritime Wastewater. Journal of Environmental Engineering 139:5, pages 661-666.
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Mok-Ryun Yu, Yoon-Young Chang, Arturo A. Keller & Jae-Kyu Yang. (2013) Application of ferrate for the treatment of metal-sulfide. Journal of Environmental Management 116, pages 95-100.
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Prabhat Kumar Rai. (2011) An eco-sustainable green approach for heavy metals management: two case studies of developing industrial region. Environmental Monitoring and Assessment 184:1, pages 421-448.
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Mohammad Alsheyab, Jia-Qian Jiang & Cécile Stanford. (2009) On-line production of ferrate with an electrochemical method and its potential application for wastewater treatment – A review. Journal of Environmental Management 90:3, pages 1350-1356.
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Lee SEUNG-MOK & Tiwari DIWAKAR. (2009) Application of ferrate(VI) in the treatment of industrial wastes containing metal-complexed cyanides: A green treatment. Journal of Environmental Sciences 21:10, pages 1347-1352.
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