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57. Flotation separation of Donganshan carbonates-containing hematite ore
Shao Anlin (Min. Co. of Anshan Iron & Steel Group Corp., Anshan, China) Source: Journal of Central South University(Science and Technology), v 44, n 2, p 456-60, 26 Feb. 2013 Language: Chinese
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58. Advances in Coal and Mineral Processing Using Flotation - Proceedings of an
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59. Flotation froth image texture extraction based on LBPV
Tang Zhao-hui (Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China); Zhu Chu-mei; Liu Jin-ping Source:Application Research of Computers, v 28, n 10, p 3934-6, Oct. 2011 Language: Chinese
Database: Inspec
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60. Fundamental properties of flotation frothers and their effect on flotation
Melo, F. (Department of Mining Engineering, University of British Columbia, 6350 Stores Road, Vancouver, BC V6T1Z4, Canada); Laskowski, J.S. Source: Australasian Institute of Mining and Metallurgy Publication Series, p 347-353,2005, Centenary of Flotation Symposium - Proceedings
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61. Interface phenomena in quartz-feldspar flotation
Mielczarski, J.A. (LEM, U.M.R. 7569 du C.N.R.S., INPL/ENSG, Vandoeuvre-lès-Nancy, France); Mielczarski, E.
Source: IMPC 2006 - Proceedings of 23rd International Mineral Processing Congress, p 436-441, 2006, IMPC 2006 -Proceedings of 23rd International Mineral Processing Congress
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62. Synergistic effects in mixed collector systems for non sulfide mineral flotation
Filippov, L.O. (Laboratoire Environnement et Minéralurgie, Nancy Université, CNRS, France); Filippova, I. Source:IMPC 2006 - Proceedings of 23rd International Mineral Processing Congress, p 631-633, 2006, IMPC 2006 -
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63. Bubble-particle collision interaction in flotation systems
Brabcová, Zuzana (Prague Institute of Chemical Technology, Department of Chemical Engineering, Technická 5,Praha 6, Czech Republic); Karapantsios, Thodoris; Kostoglou, Margaritis; Basaová, Pavlína; Matis, Kostas Source:Colloids and Surfaces A: Physicochemical and Engineering Aspects, v 473, p 95-103, May 01, 2015
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64. Fundamental electrochemical studies of sulfide mineral flotation
Tolley, W. (Earth Science Technology Cent, Salt Like City, United States); Kotlyar, D.; Wagoner, R. Source: MineralsEngineering, v 9, n 6, p 603-637, June 1996
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65. MODEL DESCRIBING MECHANISM OF THE FLOTATION PROCESS.
Szatkowski, M. (Michigan Technological Univ, Dep of, Metallurgical Engineering, Houghton,, MI, USA, Michigan
Technological Univ, Dep of Metallurgical Engineering, Houghton, MI, USA); Freyberger, W.L. Source: Transactions ofthe Institution of Mining and Metallurgy, Section C: Mineral Processing and Extractive Metallurgy, v 94, p 129-135, Sep1985
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66. Automatic estimation of bubble size distributions in flotation froths by use of a meanshift algorithm and watershed transforms
Amankwah, A. (Comput. Sci. Dept., Univ. of Ghana, Ghana, Ghana); Aldrich, C. Source: 2014 IEEE Geoscience andRemote Sensing Symposium. (IGARSS). Proceedings, p 1608-11, 2014
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67. TYPICAL FLOTATION CIRCUIT CONFIGURATIONS.
Malghan, S.G. (Exxon Minerals Co, Houston, TX, USA, Exxon Minerals Co, Houston, TX, USA) Source: Des andInstall of Conc and Dewatering Circuits, p 76-92, 1986
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68. Froth recovery of industrial flotation cells
Yianatos, J.B. (Chemical Engineering Department, Santa Maria University, P.O. Box 110-V, Valparaíso, Chile); Moys,M.H.; Contreras, F.; Villanueva, A. Source: Minerals Engineering, v 21, n 12-14, p 817-825, November 2008
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69. Effect of nanoparticles on froth stability and bubble size distribution in flotation
Cilek, Emin Cafer (Department of Mining Engineering, Faculty of Engineering, S. Demirel University, Isparta, Turkey);Karaca, Sevgi Source: International Journal of Mineral Processing, v 138, p 6-14, May 10, 2015
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Citation results: 140
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70. MicrocelTM flotation column modelling
Lahey, A.E. (C Clarkson and Associates Pty Ltd, Kenmore); Clarkson, C.J.; Brake, I. Source: Coal Preparation, v 19, n1-2, p 83-113, 1998
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71. Determining frother distribution in flotation circuits
Zangooi, Azin (McGill University, Department of Mining and Materials Engineering, Canada); Gomez, Cesar; Finch,James Source: IMPC 2014 - 27th International Mineral Processing Congress, 2014, IMPC 2014 - 27th InternationalMineral Processing Congress
Database: Compendex
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72. Froth recovery measurements in an industrial flotation cell
Rahman, Reza M (Centre for Multiphase Processes, University of Newcastle, Callaghan, NSW 2308, Australia);Ata, Seher; Jameson, Graeme J Source: 26th International Mineral Processing Congress, IMPC 2012: Innovative
Processing for Sustainable Growth - Conference Proceedings, p 268-280, 2012, 26th International Mineral ProcessingCongress, IMPC 2012: Innovative Processing for Sustainable Growth - Conference Proceedings
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73. PLANT PRACTICE OF THE FLOTAIRE COLUMN FLOTATION MACHINE FOR METALLIC,NONMETALLIC AND COAL FLOTATION.
Zipperian, Donald E. (Deister Concentrator Co, Tucson, AZ,, USA, Deister Concentrator Co, Tucson, AZ, USA);Svensson, Ulf Source: Soc of Mining Engineers of AIME, p 43-54, 1988
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