Citation results: 140
Downloaded: 9/24/2015
1. The Flotation Experiment Study on A High Silicon Low-grade Magnesite in LiaoningProvince
Shujuan Dai (Coll. of Resources & Civil Eng., Liaoning Univ. of Sci. & Technol., Anshan, China); Xiaoan Li; Shuyongyang; Liantao Yu Source: Advanced Materials Research, v 454, p 352-6, 2012
Database: Inspec
Copyright 2012, The Institution of Engineering and Technology
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2. Application of column flotation in waste paper recycling
Ben, Yuxia (Pulp and Paper Research Institute of Canada, Pointe-Claire, Que., Canada); Dorris, Gilles; Pagé, NatalieSource: Research Forum on Recycling, Proceedings, p 229-238, 2004, 7th Research Forum on Recycling - PreprintsDatabase: Compendex
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3. The role of phenols from bagasse vacuum pyrolysis bio-oil in cupper sulfured ore
flotation
Brossard, L.E. (Faculdade de Engenharia Agricola, FEAGRI UNICAMP, Cidade Universitária, Zeferino Vaz, Bar?oGeraldo, Cx. P. 6011, CEP 13083-875, Paulo, Brazil); Beraldo, A.L.; Cortez, L.A.B.; Brossard, L.E.; Maury, E.D.;Brossard, C.O. Source: Brazilian Journal of Chemical Engineering, v 25, n 4, p 723-728, October/December 2008Database: Compendex
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4. COMPARISON OF PERFORMANCE OF VARIOUS LABORATORY FLOTATION CELLS.
O'Connor, C.T.; Dunne, R.C.; Duncan, R.B. Source: Transactions of the Institution of Mining and Metallurgy, SectionC: Mineral Processing and Extractive Metallurgy, v 96, p 168-170, Sep 1987
Database: Compendex
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5. Plant-based trials of monitoring of coal flotation systems using electrical impedancespectrum technique
Hu, S. (CSIRO Energy Technology, 1 Technology Court, Pullenvale Qld 4069, Australia); Firth, B. Source: XXVInternational Mineral Processing Congress 2010, IMPC 2010, v 3, p 1991-2001, 2010, XXV International MineralProcessing Congress 2010, IMPC 2010
Database: Compendex
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6. Particle dynamics during froth flotation of hardcoal determined by means of particleimage velocimetry
Zachos, A. (DMT-Inst fuer Rohstoffe und, Aufbereitung, Essen, Germany); Kaiser, M.; Merzkirch, W. Source:Proceedings of SPIE - The International Society for Optical Engineering, v 2052, p 281-288, 1993
Database: Compendex
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7. Flotation of Sulphide Minerals 1990
Editors: Forssberg, Eric K.S. Source: International Journal of Mineral Processing, v 33, n 1-4, Nov 1991
Database: Compendex
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Citation results: 140
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8. Quantum-chemical assessment of the flotation activity of RNKh-3010 reagent
Petukhov, V.N. (Nosov Magnitogorsk State Technical University, Magnitogorsk, Russia); Medyanik, N.L.; Girevaya,Kh.Ya.; Kubak, D.A. Source: Coke and Chemistry, v 56, n 6, p 209-214, June 2013
Database: Compendex
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9. COLUMN FLOTATION AT VARIOUS PROCESS STAGES.
Lindsberg, Risto (Outokumpu Oy, Finl, Outokumpu Oy, Finl) Source: Soc of Mining Engineers of AIME, p 187-190,1988
Database: Compendex
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10. EFFECT OF DOSAGE OF REAGENT ON THE FLOTATION OF COPPER ORE.
Sanyal, P. (Indian Sch of Mines, Dhanbad, India, Indian Sch of Mines, Dhanbad, India); Rao, T.C. Source: Journal ofthe Institution of Engineers (India), Part MM: Metallurgy and Material Science Division, v 68, n pt 1, p 29-32, Sep 1987Database: Compendex
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11. ON THE HYDRODYNAMICS AND THE SCALE-UP OF FLOTATION PROCESSES.
Schubert, H. (Bergakademie Freiberg, Freiberg, East Ger, Bergakademie Freiberg, Freiberg, East Ger) Source: Socof Mining Engineers, p 636-649, 1986
Database: Compendex
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12. Improving the flotation process by optimizing reject flotation (Verbesserung des
Flotations-Deinking-Prozesses durch Optimierung der Rejektflotation)
Hornfeck, K. (Napco Paper Technology GmbH, Duesseldorf, Germany); Nellessen, B. Source: Wochenblatt fuerPapierfabrikation, v 128, n 17, p 1139-1142, 2000 Language: German
Database: Compendex
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13. The Red Dog Vip mill optimization project. Part B: An integrated approach to modellingand design of the flotation plant
Gorain, B.K. (Teck Cominco Metals Ltd., Trail, BC, Canada); Stradling, A.W. Source: CIM Bulletin, v 96, n 1069, p100-106, March 2003
Database: Compendex
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14. Effect of flotation promoter on the rate of coal slime flotation
Xie, W. (China Univ. of Min. & Technol. Beijing, Beijing, China); Cao, G.; Ren, X.; Li, Y. Source: Journal of MiningScience, v 50, n 3, p 601-7, May 2014
Database: Inspec
Copyright 2015, The Institution of Engineering and Technology
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Citation results: 140
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15. Synthesis of SO42-/Zr-SBA-15 catalyst for the transesterification of waste cooking oil asa bio-flotation agent in coal flotation
Yi, Qun (Key Laboratory of Coal Science and Technology, Taiyuan University of Technology, Ministry of Education
and Shanxi Province, Taiyuan, China); Zhang, Jilong; Zhang, Xiaochao; Feng, Jie; Li, Wenying Source: Fuel, v 143, p390-398, March 1, 2015
Database: Compendex
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16. Synthesis of SO42-/Zr-SBA-15 catalyst for the transesterification of waste cooking oil asa bio-flotation agent in coal flotation
Yi, Qun (Key Laboratory of Coal Science and Technology, Taiyuan University of Technology, Ministry of Education
and Shanxi Province, Taiyuan, China); Zhang, Jilong; Zhang, Xiaochao; Feng, Jie; Li, Wenying Source: Fuel, v 143, p390-398, March 15, 2015
Database: Compendex
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Data Provider: Engineering Village
17. Synergistic interactions between reagents in sulphide flotation
Bradshaw, D.J. (Univ of Cape Town, Rondebosch, South Africa); Harris, P.J.; O'Connor, C.T. Source: Journal of TheSouth African Institute of Mining and Metallurgy, v 98, n 4, p 187-192, Jul-Aug 1998
Database: Compendex
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18. Synergistic interactions between reagents in sulphide flotation
Bradshaw, D.J.; Harris, P.J.; O'Connor, C.T. Source: Journal of The South African Institute of Mining and Metallurgy, v98, n 4, p 187-192, Jul-Aug 1998
Database: Compendex
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Data Provider: Engineering Village
19. Froth flotation of mineral particles: Mechanism
Min, Qi (Department of Thermal Engineering, Tsinghua University, Beijing, China); Duan, Yuan-Yuan; Peng, Xiao-Feng; Mujumdar, Arun; Hsu, Chien; Lee, Duu-Jong Source: Drying Technology, v 26, n 8, p 985-995, August 2008Database: Compendex
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