Engineering_Village_citation_9-24-2015_02718407(4)

 

Moon, Kwang S. (Canada Cent for Mineral & Energy, Technology, Ottawa, Ont, Can, Canada Cent for Mineral &Energy Technology, Ottawa, Ont, Can); Sirois, Louis L. Source: Soc of Mining Engineers of AIME, p 91-102, 1988Database: Compendex

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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

Database: Inspec

Copyright 2014, The Institution of Engineering and Technology

Data Provider: Engineering Village

58. Advances in Coal and Mineral Processing Using Flotation - Proceedings of an

Engineering Foundation Conference

Source: Adv Coal Miner Process Using Flotation Proc Eng Found Conf, 1989, Adv Coal Miner Process Using FlotationProc Eng Found Conf

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Copyright 2012, The Institution of Engineering and Technology

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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 -

Proceedings of 23rd International Mineral Processing Congress

Database: Compendex

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Data Provider: Engineering Village

Content provided by Engineering Village. Copyright 2015Page 9 of 21


Citation results: 140

Downloaded: 9/24/2015

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Inspec

Copyright 2014, The Institution of Engineering and Technology

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

Content provided by Engineering Village. Copyright 2015Page 10 of 21


Citation results: 140

Downloaded: 9/24/2015

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

Database: Compendex

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Data Provider: Engineering Village

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

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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

Database: Compendex

Compilation and indexing terms, Copyright 2015 Elsevier Inc.

Data Provider: Engineering Village

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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