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Articles

Recovery of rare earth elements from acid mine drainage by ion exchange

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Pages 2721-2732 | Received 06 Jun 2019, Accepted 23 Dec 2019, Published online: 20 Jan 2020

References

  • Hatch GP. Dynamics in the global market for rare earths. Elements. 2012;8:341–346. doi: 10.2113/gselements.8.5.341
  • European Commission. (2018). [Online]. [cited 2019 Feb 12] Available from http://www.eurare.eu/countries/home.html.
  • Krishnamurthy N, Gupta CK. Extractive metallurgy of rares earths. 2nd ed. New: CRC Press - Taylor & Francis Group; 2016.
  • Page MJ, Soldenhoff K, Ogden MD. Comparative study of the application of chelating resins for rare earth recovery. Hydrometallurgy. 2017;169:275–281. doi: 10.1016/j.hydromet.2017.02.006
  • Verplanck PL, Nordstrom DK, Taylor HE, et al. Rare earth element partitioning between hydrous ferric oxides and acid mine water during iron oxidation. Appl Geochemistry. 2004;19:1339–1354. doi: 10.1016/j.apgeochem.2004.01.016
  • Felipe E, Silva G, Vidigal B. Recovery of rare earth elements from acid mine drainage. In: Kongoli F, Palacios M, Buenger T, editors. 2017 Sustainable industrial processing summit and exhibition. Mont-Royal: FLOGEN STARS OUTREACH; 2017. p. 198–207.
  • Innocenzi V, Ippolito NM, Pietrelli L, et al. Application of solvent extraction operation to recover rare earths from fluorescent lamps. J Clean Prod. 2018;172:2840–2852. doi: 10.1016/j.jclepro.2017.11.129
  • Zhao F, Cong Z, Sun H, et al. The geochemistry of rare earth elements (REE) in acid mine drainage from the Sitai coal mine, Shanxi Province, North China. Int J Coal Geol. 2007;70:184–192. doi: 10.1016/j.coal.2006.01.009
  • Habashi F. Handbook of extractive metallurgy III. Québec: Métallurgie Extractive Québec; Weinheim: WILEY - VCH, 1997, 1695p.
  • Abreu RD, Morais CA. Study on separation of heavy rare earth elements by solvent extraction with organophosphorus acids and amine reagents. Miner Eng. 2014;61:82–87. doi: 10.1016/j.mineng.2014.03.015
  • Morais CA, Ciminelli VST. Selection of solvent extraction reagent for the separation of europium(III) and gadolinium(III). Miner Eng. 2007;20(8):747–752. doi: 10.1016/j.mineng.2007.02.010
  • Wang X, Li J, Dai S, et al. Interactions of Eu(III) and 243Am(III) with humic acid-bound γ-Al2O3 studied using batch and kinetic dissociation techniques. Chem Eng J. 2015;273:588–594. doi: 10.1016/j.cej.2015.03.099
  • Khalil M, El-Aryan YF, El Afifi EM. Sorption performance of light rare earth elements using zirconium titanate and polyacrylonitrile zirconium titanate ion exchangers. Part. Sci. Technol. 2017;0272–6351:1–10.
  • Abrão A. Química e Tecnologia das Terras Raras. Rio de Janeiro: CETEM/CNPq; 1994.
  • Simate GS, Ndlovu S. Acid mine drainage: Challenges and opportunities. J Environ Chem Eng. 2014;2:1785–1803. doi: 10.1016/j.jece.2014.07.021
  • Kołodyńska D, Hubicki Z. Investigation of sorption and separation of lanthanides on the Ion exchangers of various types. In: Kilislioglu A, editor. Ion exchange technologies; 2012. p. 376.
  • Dabrowski A, Hubicki Z, Podkoscielny P, et al. Selective removal of the heavy metal ions from waters and industrial wastewaters by ion-exchange method. Chemosphere. 2004;56:91–106. doi: 10.1016/j.chemosphere.2004.03.006
  • Helfferich F. Ion exchange. New York: Dover Publications; 1995.
  • Melo DQ, et al. Adsorption equilibria of Cu2+, Zn2+, and Cd 2+ on EDTA-functionalized silica spheres. J Chem Eng Data. 2013;58(3):798–806. doi: 10.1021/je3013364
  • Marwani HM, Albishri HM, Jalal TA, et al. Study of isotherm and kinetic models of lanthanum adsorption on activated carbon loaded with recently synthesized Schiff’s base. Arab J Chem. 2013;10:1032–1040. doi: 10.1016/j.arabjc.2013.01.008
  • Xiong C, Rao C. Use of gel-type weak acid resin for the adsorption of La(III) from aqueous solution. Indian J Chem Technol. 2012;19:392–398.
  • Marcus Y. Thermodynamics of solvation of ions. part 5.—gibbs free energy of hydration at 298.15 K. J Chem Soc, Faraday Trans 1991;87(18):2995–2999. doi: 10.1039/FT9918702995
  • Persson I. Hydrated metal ions in aqueous solution : How regular are their structures ? Pure Appl Chem. 2010;82(10):1901–1917. doi: 10.1351/PAC-CON-09-10-22
  • Avdibegovic D, Regadio M, Binnemans K. Efficient separation of rare earths recovered by a supported ionic liquid from bauxite residue leachate. R Soc Chem. 2018;8:11886–11893.
  • Annadurai G, Ling LY, Lee J-F. Adsorption of reactive dye from an aqueous solution by chitosan: isotherm, kinetic and thermodynamic analysis. J Hazard Mater. 2008;152(1):337–346. doi: 10.1016/j.jhazmat.2007.07.002
  • Jaafari J, Ghozikali MG, Azari A. Adsorption of p -Cresol on Al 2 O 3 coated multi-walled carbon nanotubes: Response surface methodology and isotherm study. J Ind Eng Chem. 2018;57:396–404. doi: 10.1016/j.jiec.2017.08.048
  • Kaur K, Jindal R, Tanwar R. Chitosan – Gelatin @ Tin (IV) Tungstatophosphate Nanocomposite Ion exchanger : Synthesis, characterization and applications in environmental remediation. J Polym Environ. 2019;27(1):19–36. doi: 10.1007/s10924-018-1321-5
  • McCabe WL, Smith JC, Harriott P. Unit operations of chemical engineering. 15th ed. McGRAW HILL Chemical Engineering Series; 1993.
  • Butnariu M, et al. Remediation of rare earth element pollutants by sorption process using organic natural sorbents. Int J Environ Res Public Health. 2015;12:11278–11287. doi: 10.3390/ijerph120911278
  • Collins C, Braga G, Bonato P. Fundamentos de Cromatografia. Campinas (SP): UNICAMP; 2006.
  • Diniz V, Volesky B. Biosorption of La, Eu and Yb using Sargassum biomass. Water Res. 2005;39(1):239–247. doi: 10.1016/j.watres.2004.09.009
  • Oliveira RC, Guibal E, Garcia O. Biosorption and desorption of lanthanum(III) and neodymium(III) in fixed-bed columns with Sargassum sp.: Perspectives for separation of rare earth metals. Biotechnol Prog. 2012;28(3):715–722. doi: 10.1002/btpr.1525
  • Giese E, Magalhães D, Egler S. Série Tecnologia Ambiental Biossorção de Elementos de Terras-Raras. 90th ed Rio de Janeiro: CETEM/MCTI; 2016.
  • Nascimento R, Lima A, Vidal C, et al. ADSORÇÃO : aspectos teóricos e aplicações ambientais. 1st ed Fortaleza: Imprensa Universitária da Universidade Federal do Ceará; 2014.
  • Farfan JRJZ, Barbosa Filho O, Souza V. Avaliação do potencial de drenagem ácida de rejeitos da indústria mineral. Rio de Janeiro: CETEM/MCT; 2004.
  • Bozau E, Leblanc M, Seidel JL, et al. Light rare earth elements enrichment in an acidic mine lake (Lusatia, Germany). Appl. Geochemistry. 2004;19:261–271. doi: 10.1016/S0883-2927(03)00150-1
  • Preobrazhenskii BK, Kalyamin AV, Lilova OM. No Title. Radiokhimiya. 1960;2:239.
  • Ryabchikov DI, Ryabukhin VA. Analytical chemistry of yttrium and the lanthanide elements. Ann Arbor: Humphrey Science Publishers; 1970.
  • Powell JE. Separation chemistry. In: Gschneidner JKA, Eyring L, editors. Handbook on the Physics and chemistry of rare earths. North-Holland: North-Holland Publishing Company; 1979. p. 81–109.
  • Zhang L, Ding SD, Yang T, et al. Adsorption behavior of rare earth elements using polyethyleneglycol (phosphomolybdate and tungstate) heteropolyacid sorbents in nitric solution. Hydrometallurgy. 2009;99(1–2):109–114. doi: 10.1016/j.hydromet.2009.07.002

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