[1] Z. Li, K.H. Smith, G.W. Stevens, The use of environmentally sustainable bio-derived solvents in solvent extraction applications-A review, Chin. J. Chem. Eng. 24(2016) 215-220.[2] E. Quijada-Maldonado, M.J. Torres, J. Romero, Solvent extraction of molybdenum (VI) from aqueous solution using ionic liquids as diluents, Sep. Purif. Technol. 177(2017) 200-206.[3] C.Y. Cheng, K.R. Barnard, W. Zhang, Z. Zhu, Y. Pranolo, Recovery of nickel, cobalt, copper and zinc in sulphate and chloride solutions using synergistic solvent extraction, Chin. J. Chem. Eng. 24(2016) 237-248.[4] Y. Ma, X. Wang, M. Wang, C. Jiang, X. Xiang, X. Zhang, Separation of V (IV) and Fe (Ⅲ) from the acid leach solution of stone coal by D2EHPA/TBP, Hydrometallurgy 153(2015) 38-45.[5] H. Vazarlis, P. Neou-Syngoyna, A study of the leaching of copper and zinc from a Greek copper concentrate. Liquid-liquid extraction for the separation of copper, zinc and iron from the leach solutions, Hydrometallurgy 12(1984) 365-373.[6] V. Hancil, M. Slater, W. Yu, On the possible use of di-(2-ethylhexyl) phosphoric acid/zinc as a recommended system for liquid-liquid extraction:the effect of impurities on kinetics, Hydrometallurgy 25(1990) 375-386.[7] J. Preston, J. Patrick, G. Steinbach, The selective solvent extraction of cadmium by mixtures of carboxylic acids and trialkylphosphine sulphides. Part 2. Practical applications in the separation of cadmium from zinc and nickel, Hydrometallurgy 36(1994) 143-160.[8] Y. Sasaki, N. Matsuo, T. Oshima, Y. Baba, Selective extraction of In(Ⅲ), Ga(Ⅲ) and Zn (Ⅱ) using a novel extractant with phenylphosphinic acid, Chin. J. Chem. Eng. 24(2016) 232-236.[9] W. Kunz, P.L. Nostro, B.W. Ninham, The present state of affairs with Hofmeister effects, Curr. Opin. Colloid Interface Sci. 9(2004) 1-18.[10] W.k.h. Lum, S.J. Cook, G. Stevens, S. Kentish, Recovery and modelling of ZnCl2 and HCl Co-extraction from galvanizing pickling waste using tri-n-butyl phosphate in ShellSol 2046 with hollow fiber membrane contactor, Ind. Eng. Chem. Res. 53(2014) 4453-4461.[11] J. Qiong, W. Jie, L. Ting-Ting, Z. Wei-Hong, Synergistic extraction of Zn (Ⅱ) by mixtures of tri-butyl-phosphate and trialkyl amine extractant, Chin. J. Anal. Chem. 36(2008) 619-622.[12] M.B. Mansur, S.D.F. Rocha, F.S. Magalhaes, J. dos Santos Benedetto, Selective extraction of zinc (Ⅱ) over iron (Ⅱ) from spent hydrochloric acid pickling effluents by liquid-liquid extraction, J. Hazard. Mater. 150(2008) 669-678.[13] Y. Qiu, L. Yang, S. Huang, Z. Ji, Y. Li, The separation and recovery of copper(Ⅱ), nickel(Ⅱ), cobalt(Ⅱ), zinc(Ⅱ), and cadmium(Ⅱ) in a sulfate-based solution using a mixture of Versatic 10 acid and Mextral 984H, Chin. J. Chem. Eng. 25(2017) 760-767.[14] T. Sato, The extraction of divalent cobalt, copper, zinc and cadmium from hydrochloric acid solutions by tri-n-butyl phosphate, J. Appl. Chem. Biotechnol. 22(1972) 1233-1242.[15] W. Sanad, H. Flex, S. Marei, Kinetics of zinc (Ⅱ) chloride extraction with tributyl phosphate, J. Radioanal. Nucl. Chem. 170(1993) 235-241.[16] A. Azizitorghabeh, F. Rashchi, A. Babakhani, M. Noori, Synergistic extraction and separation of Fe(Ⅲ) and Zn(Ⅱ) using TBP and D2EHPA, Sep. Sci. Technol. 52(2017) 476-486.[17] K.R. Lee, J. Kim, J.-G. Jang, Recovery of zinc in Sspent pickling solution with oxalic acid, Korean Chem. Eng. Res. 55(2017) 785-790.[18] B. Guezzen, M.A. Didi, Removal of Zn (Ⅱ) from aqueous acetate solution using di (2-ethylhexyl) phosphoric acid & tributylphosphate, Int. J. Chem. 4(2012) 32-41.[19] M. Gharabaghi, M. Irannajad, A.R. Azadmehr, Separation of nickel and zinc ions in a synthetic acidic solution by solvent extraction using D2EHPA and Cyanex 272, Physicochem. Probl. Miner. Process. 49(2013) 233-242.[20] D.W.J. MacLean, The kinetics of zinc extraction in the di(2-Ethylhexyl) phosphoric acid, n-Heptane-Zinc Perchlorate, Perchloric Acid, Water System, Ms. Thesis, University of British Columbia, Canada, 1991.[21] E. Vahidi, F. Rashchi, D. Moradkhani, Recovery of zinc from an industrial zinc leach residue by solvent extraction using D2EHPA, Miner. Eng. 22(2009) 204-206.[22] T. Asadi, A. Azizi, J.c. Lee, M. Jahani, Solvent extraction of zinc from sulphate leaching solution of a sulphide-oxide sample using D2EHPA and Cyanex 272, J. Dispers. Sci. Technol. (2017) 1-7.[23] R. Rinaldi, A. de Melo Porcari, T.C. Rocha, W.H. Cassinelli, R.U. Ribeiro, J.M.C. Bueno, D. Zanchet, Construction of heterogeneous Ni catalysts from supports and colloidal nanoparticles-A challenging puzzle, J. Mol. Catal. A Chem. 301(2009) 11-17.[24] R.K. Biswas, A.K. Karmakar, M.S. Rahman, Extraction kinetics of Ni (Ⅱ) in the Ni2+-SO42--Ac-(Na+, H+)-cyanex 272(H2 A2)-kerosene-3%(v/v) octan-1-ol system using single drop technique, Int. J. Nonferrous metallurgy 2(2013) 80-88.[25] R. Sarkar, S. Ray, S. Basu, Synergism in solvent extraction and solvent extraction kinetics, J. Chem. Biol. Phys. Sci. 4(2014) 3156-3181.[26] D. Ebbing, S.D. Gammon, General Chemistry, Cengage Learning, Boston, 2010.[27] W.M. Haddad, V. Chellaboina, S.G. Nersesov, Thermodynamics:A Dynamical Systems Approach:A Dynamical Systems Approach, Princeton University Press, USA, 2009.[28] A. Mellah, D. Benachour, The solvent extraction of zinc, cadmium and chromium from phosphoric acid solutions by tri-n butyl phosphate in kerosene diluent, Sep. Purif. Technol. 56(2007) 220-224.[29] H.F. Li, L.J. Li, D. Shi, J.F. Li, L.M. Ji, X.W. Peng, F.G. Song, F. Nie, Z.M. Zeng, X.X. Song, Kinetics of Lithium extraction with tri-n-butyl phosphate from salt Lake brine by single drop method, Chem. Lett. 44(7) (2015).[30] G. Ertl, H. Knozinger, J. Weitkamp, Preparation of Solid Catalysts, John Wiley & Sons, USA, 2008. |