References
- 박평주외, 1980: 비철제련공학, 희중당, pp. 586-594.
- 조만형, 이재하, 1995 : 비철금속제련공학, 한양대학교 출판부, pp. 349-352.
- Taghizadeh, M., Ghanadi, M. and Zolfonoun, E., 2011: Separation of zirconium and hafnium by solvent extraction using mixture of TBP and Cyanex923, J. of Nuclear Materials, 412, pp. 334-337. https://doi.org/10.1016/j.jnucmat.2011.03.033
- Habashi, F., 1997 : Handbook of extractive metallurgy, vol. III, Wiley-VCH, NY, pp.1437-1438.
- Saberyan, K. et al., 2010: Solvent extraction of zirconium from zircon leach liquor using triphenylphosphine oxide, Minerals & Metallurgical Processing, 27(3), pp. 129-132.
- Reddy, K.J., et al., 2009: Synergistic enhancement and separation of zirconium(IV) and hafnium(IV) with 3- phenyl-4-benzoyl-5-isoxazolone in the presence of crown ethers, Separation Science and Technology, 44, pp. 2022-2040. https://doi.org/10.1080/01496390902885882
- Nayl, A.A., El-Nadi, Y.A. and Daoud, J.A., 2009: Extraction and separation of Zr(IV) and Hf(IV) from nitrate medium by some cyanex extractatns, Separation Science and Technology, 44, pp. 2956-2970. https://doi.org/10.1080/01496390903014169
- Taghizadeh, M., et al., 2009: Stoichiometric relation for extraction of zirconium and hafnium from acidic nitrate solutions with cyanex272, Hydrometallurgy, 96, pp. 77-80. https://doi.org/10.1016/j.hydromet.2008.08.006
- Taghizadeh, M., et al., 2008: Determination of optimum process conditions for the extraction and separation of zirconium and hafnium by solvent extraction, Hydrometallurgy, 90, pp. 115-120. https://doi.org/10.1016/j.hydromet.2007.10.002
- Reddy, K.J. et al., 2007: Enhanced extraction and separation of zirconium(IV) and hafnium(IV) with 3- phenyl-4-benzoyl-5-isoxazolone in the presence of various neutral organophosphorus extractants, Radiochim. Acta, 95, pp. 289-295. https://doi.org/10.1524/ract.2007.95.5.289
- Lee, H.Y., Kim, S.G. and Oh, J.K., 2004: Stoichiometric relation for extraction of zirconium and hafnium from acidic chloride solutions with versatic acid 10, Hydrometallurgy, 73, pp. 91-97. https://doi.org/10.1016/j.hydromet.2003.08.004
- Juang, R.S. and Lo, R.H., 1993: Equilibrium studies of the extraction of zirconium(IV) from sulfuric acid solutions with di(2-ethylhexyl) phosphoric acid, J. Chem. Tech. Biotechnol., 58, pp. 261-269.
- Pourbaix, M., 1966 : Atlas of electrochemical equilibrium in aqueous solutions, Pergamon Press, Oxford, pp. 224-229.
- Smith, R.M., Martell, A.E., 1974: Critical stability constants volume 4: Inorganic complexes, Plenum Press, NY.
- Zemaitis, J.F., et al., 1986: Handbook of aqueous electrolyte thermodynamics, A publication of the Design Institute for Physical Property Data, NY.
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