A review of zinc oxide mineral beneficiation using flotation method
Tài liệu tham khảo
Ejtemaei, 2010, Flotation of zinc oxide mineral from Angooran mining tailing using cationic, anionic and mixed (cationic/anionic) collectors: influence of important factors
USGS, 2010
Irannajad, 2009, The effect of reagents on selective flotation of smithsonite–calcite–quartz, Miner Eng, 22, 766, 10.1016/j.mineng.2009.01.012
Navidi Kashani, 2008, Separation of oxidized zinc minerals from tailings: influence of flotation reagents, Miner Eng, 21, 967, 10.1016/j.mineng.2008.04.014
Wet, 2008, Development of a viable process for the recovery of zinc from oxide ores, 177
Bulatovic, 2010
Ciccu, 1979, The beneficiation of lean semi oxidized lead–zinc ores, 125
Ejtemaei, 2010, The effects of dissolved ions on the anionic flotation of zinc oxide ores
Fuerstenau, 1985
Hosseini, 2007, Physicochemical studies of smithsonite flotation using mixed anionic/cationic collector, Miner Eng, 20, 621, 10.1016/j.mineng.2006.12.001
Önal, 2005, Flotation of Aladag[caron] oxide lead–zinc ores, Miner Eng, 18, 279, 10.1016/j.mineng.2004.10.018
Pereira, 2005, Reagents in calamine zinc ores flotation, Miner Eng, 18, 275, 10.1016/j.mineng.2004.09.011
Rao, 2003, Base metal oxide flotation using long chain xanthates, Int J Miner Process, 69, 251, 10.1016/S0301-7516(02)00130-8
Abramov, 1961, Use of cationic agents for oxide lead–zinc minerals, Chem Abstr, 55, 26910f
Hosseini, 2006, Adsorption studies of smithsonite flotation using dodecylamine and oleic acid, Miner Metall Process SME, 23, 87
Irannajad, 2008, The effects of flotation reagents on the selective separation of smithsonite–calcite–quartz
Keqing, 2005, Sulphidization flotation for recovery of lead and zinc from oxide–sulfide ores, Trans Nonferrous Met Soc China, 15, 1138
Mckenna WJ, Lessels, V., Petersson, E.C. Froth flotation of oxidized zinc ores. united states, patent: 24828591949.
Rey, 1953, The flotation of oxidized ores of lead, copper and zinc, 541
Shi, 2012, Electrokinetic properties of smithsonite and its floatability with anionic collector, Colloids Surf A Physicochem Eng Asp, 410, 178, 10.1016/j.colsurfa.2012.06.044
Barbery GC, 1977, The use of chelates as flotation collectors, 19
Billi, 1963, Development and results obtained in the treatment of zinc oxide ores at AMMI mines, 631
Gaudin, 1957
Herrera-Urbina, 1998, Amyl xanthate uptake by natural and sulfide-treated cerussite and galena, Int J Miner Process, 55, 113, 10.1016/S0301-7516(98)00028-3
Hosseini, 2006, Smithsonite flotation using potassium amyl xanthate and hexylmercaptan, Miner Process Extr Metall Rev, 115, 107, 10.1179/174328506X109077
Eyring, 1956, Differential infrared spectra of adsorbed monolayers-n-hexanethiol on Zn Minerals, 531
Hosseini, 2008, Selective flotation of angooran oxidised zinc ore using mercaptans
Marabini, 1984, Role of sodium sulphide, xanthate and amine in flotation of lead–zinc oxidized ores, 125
Marabini, 2007, Chelating reagents for flotation, Miner Eng, 20, 1014, 10.1016/j.mineng.2007.03.012
Rinelli, 1973, Flotation of zinc and lead oxide–sulphide ores with chelating agents, 493
Fuerstenau, 1976, 148
Herrington, 1993, Phase behavior of aqueous mixtures of dodecyltrimethylammonium bromide (DTAB) and sodium dodecyl sulfate (SDS), J Phys Chem, 97, 13792, 10.1021/j100153a058
Tarjan, 1986
Chau, 2009, A review of factors that affect contact angle and implications for flotation practice, Adv Colloid Interface Sci, 150, 106, 10.1016/j.cis.2009.07.003
Fuerstenau, 2005, Zeta potentials in the flotation of oxide and silicate minerals, Adv Colloid Interface Sci, 114–115, 9, 10.1016/j.cis.2004.08.006
Bulatovic, 1992, No., June. New line of zinc oxide collectors has been development, 6
Bulatovic, 2007
Pålsson, 1989, Computer-assisted calculations of thermodynamic equilibria in sphalerite xanthate systems, Int J Miner Process, 26, 223, 10.1016/0301-7516(89)90031-8
Weast, 1973
Lide, 2005
Glembotskii, 1972
Bustamante, 1983, Surface chemistry and flotation of zinc oxide minerals: I-flotation with dodecylamine, Trans Inst Min Metall, 92, C201
Hu, 1995, Solution chemistry of electrokinetic behavior of carbonate minerals, Trans Nonferrous Met Soc China, 5, 27
Pokrovsky, 2002, Surface chemistry and dissolution kinetics of divalent metal carbonates, Environ Sci Technol, 36, 426, 10.1021/es010925u
Stumm, 1970
Rey, 1954, Flotation of oxidized zinc ores
Wills, 1997
Salum, 1992, The role of sodium sulphide in amine flotation of silicate zinc minerals, Miner Eng, 5, 411, 10.1016/0892-6875(92)90220-4
Hosseini, 2006, Flotation behaviour of oxide zinc ore from Angooran deposit, Iran in the presence of cationic/anionic and mixed (cationic/anionic) collectors, Eur J Miner Process Environ Protect, 6
Marabini, 1994, Effect of depressing agents on the flotation of oxidized zinc minerals, Miner Metall Process SME, 11, 97
Somasundaran, 2006
Jutarat Pomjaturad, 2007, Effects of additives in froth flotation of silicate zinc ore; a study by zeta potential measurement and infrared spectroscopy, Chiang Mai J Sci, 191
Rausch DO, Mariacher, Burt C. Concentration of oxide ores at Tynagh, mining and concentrating of lead and zinc. AIME World Symposium on Mining and Metallurgy of Lead and Zinc; Vol. 1, 1970. p. 721–731.
Wang, 1986
Wang, 1983, Shibin, Non-ferrous Met, 37, 47
Zhang, 1995, Prediction of species distribution at sphalerite/water interface, Miner Eng, 8, 999, 10.1016/0892-6875(95)00063-V
Malghan, 1986, Role of sodium sulfide in the flotation of oxidized copper, lead and zinc ores, Miner Metall Process SME, 3, 158
Ozbayoglu, 1994, Flotation of lead and zinc carbonates ore, 504
Rey, 1979, Memoirs of milling and process metallurgy: 1-flotation of oxide ores, Inst Min Metall Sect C, 88, 245
Fuerstenau, 1968, Trans AIME, 241, 319
Hanna, 1974, vol. 1
Hao Ding, 2007, Depressing effect of sodium hexametaphosphate on apatite in flotation of rutile, J Univ Sci Technol Beijing, 14, 200, 10.1016/S1005-8850(07)60039-5
Smith, 1976, Cationic flotation of oxide and silicates, vol. 1, 87
Fergus, 1958, The flotation of oxidized zinc ores from Washington, Wash State Inst Technol Bull, 245, 44
Peres, 1994, The effect of the dispersion degree on the floatability of an oxidased zinc ore, Miner Eng, 7, 1435, 10.1016/0892-6875(94)00081-6
Somasundaran, 1984, Chemistry and application of chelating agents in flotation and flocculation, 209
Leja, 1982
Hernáinz-Bermúdez De Castro, 1996, The effect of pH modifier on the flotation of celestite with sodium oleate and quebracho, Chem Eng Sci, 51, 4289, 10.1016/0009-2509(96)00278-3
Lazarov, 1994, Temperature influence on the flotation behavior of magnetite, 167
Massacci, 1984, Heat of reaction at solid–liquid interfaces in flotation of lead and zinc oxidized minerals, 137
Jung, 1987, Adsorption, precipitation, and electrokinetic processes in the iron oxide (Goethite)–oleic acid–oleate system, J Colloid Interface Sci, 118, 463, 10.1016/0021-9797(87)90482-6
Griffiths, 2006, Metallosurfactants: interfaces and micelles, Adv Colloid Interface Sci, 122, 107, 10.1016/j.cis.2006.06.010
Barbery and J.-L. Cecile: ‘’. Process for the concentration by flotation of fine mesh size or oxidized ores of copper, lead, zinc. In: patent U, (editor). USA1978. Chapter 75 38393.
Heslop, 1960
Naklicki, 2002, Flotation and surface analysis of the nickel (II) oxide/amyl xanthate system, Int J Miner Process, 65, 73, 10.1016/S0301-7516(01)00061-8
Hosseini, 2006, XPS & FTIR study of adsorption characteristics using cationic and anionic collectors on smithsonite, J Miner Mater Charact Eng, 5, 21
Healy, 1967, Adsorption-coagulation reactions of Zn (II) hydrolyzed species at the zinc oxide–water interface, J Colloid Interface Sci, 24, 41, 10.1016/0021-9797(67)90274-3
Fornasiero, 2005, Cu(II) and Ni(II) activation in the flotation of quartz, lizardite and chlorite, Int J Miner Process, 76, 75, 10.1016/j.minpro.2004.12.002
Ohno, 1977, 119
Aplan, 1963, Adsorption of hexyl mercaptan on gold, Trans AIME, 229, 235
Dalman, 1961, Ionization constant of hexanethiol from solubility measurements, J Org Chem, 26, 4682, 10.1021/jo01069a508
Gaudin, 1954, Adsorption of a mercaptan on zinc minerals, Trans AIME, 199
Aplan, 1984, The flotation of chrysocolla by mercaptan, Int J Miner Process, 13, 105, 10.1016/0301-7516(84)90014-0
Cook, 1950, Theory of water-repellent films on solids formed by adsorption from aqueous solutions of heteropolar compounds, J Phys Colloid Chem, 54, 445, 10.1021/j150478a002
Usoni, 1971, Chelating agents and fuel oil: a new way to flotation
Bornengo G. Collectors for the selective flotation of lead and zinc minerals. Italian Patent 48585 A/841984.
Bornengo G. Collectors for the selective flotation of lead and zinc minerals. Italian Patent No. 48019 A/851985.
Marabini, 1988, New synthetic collectors for selective flotation of zinc and lead oxidised minerals, 1197
Marabini, 1989, Flotation of cerussite with a synthetic chelating collector, Int J Miner Process, 25, 29, 10.1016/0301-7516(89)90054-9
Buckenham, 1963, Molecular associations in flotation, Trans AIME/SME, 226, 1
Cases, 1992, Thermodynamic model of ionic and nonionic surfactants adsorption-abstraction on heterogeneous surfaces, Langmuir, 8, 1251, 10.1021/la00041a005
Hanumantha Rao, 1993, Solution chemistry of mixed cationic/anionic collectors and flotation separation of feldspar from quartz, 837
Hanumantha Rao, 1997, Mixed collector systems in flotation, Int J Miner Process, 51, 67, 10.1016/S0301-7516(97)00039-2
Katayanagi A. Flotation separation of feldspar. US Patent 3,844,9391974.
Malghan, 1981, Effect of process variables in feldspar flotation using non-hydrofluoric acid system, Trans AIME, 1616
Mathieu, 1984, New processes to float feldspathic and ferrous minerals from quartz, 57
McEwen, 1976, Single-stage flotation of alkali feldspars, ilmenite, rutile, garnet, and monazite, with mixed cationic/anionic collectors, Trans SME/AIME, 260, 97
Shimoiizaka, 1976, vol. 1
Vidyadhar, 2007, Adsorption mechanism of mixed cationic/anionic collectors in feldspar–quartz flotation system, J Colloid Interface Sci, 306, 195, 10.1016/j.jcis.2006.10.047
Ozdemir, 2011, Understanding the role of ion interactions in soluble salt flotation with alkylammonium and alkylsulfate collectors, Adv Colloid Interface Sci, 163, 1, 10.1016/j.cis.2011.01.003
Bulatovic, 2006
Helbig, 1998, Investigation of Langmuir monofilms and flotation experiments with anionic/cationic collector mixtures, Int J Miner Process, 53, 135, 10.1016/S0301-7516(97)00077-X
Hind, 2001, At the solid/liquid interface: FTIR/ATR — the tool of choice, Adv Colloid Interface Sci, 93, 91, 10.1016/S0001-8686(00)00079-8
Danov, 2006, Disjoining pressure of thin films stabilized by nonionic surfactants, Adv Colloid Interface Sci, 128–130, 185, 10.1016/j.cis.2006.11.011
Hanumantha Rao K, Cases, J.M., Barres, O., Forssberg, K.S.E., In: (Eds.), Ltd., pp. Flotation, electrokinetic and FT-IR studies of mixed anionic/cationic collectors in muscovite–biotite system. In: Mehrotra SP, Shekhar, R., (editor). Mineral Processing: Recent Advances and Future Trends. New Delhi: Allied Publication; 1995. p. 29–44
Ejtemaei, 2009
Quaresima, 1991, Behavior of colloidal suspensions of zinc carbonate in the presence of copolymers designed for selective flocculation, J Colloid Interface Sci, 144, 159, 10.1016/0021-9797(91)90246-5