Engineering_Village_citation_9-24-2015_02718407(2)

 

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20. Relationship between surface froth features and process conditions in the batch

flotation of a sulphide ore

Aldrich, C.; Moolman, D.W.; Bunkell, S.-J.; Harris, M.C.; Theron, D.A. Source: Minerals Engineering, v 10, n 11, p1207-1218, Nov 1997

Database: Compendex

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21. An experimental investigation on column flotation circuit configuration

Tao, D. (Department of Mining and Minerals Engineering, Virginia Polytechnic Institute and State University,

Blacksburg, VA 24061, United States); Luttrell, G.H.; Yoon, R.-H. Source: International Journal of Mineral Processing,v 60, n 1, p 37-56, 2000

Database: Compendex

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22. Considerations for improving the performance of froth flotation systems

Klimpel, Richard R. (Dow Chemical Co, United States) Source: Mining Engineering, v 40, n 12, p 1093-1100, Dec1988

Database: Compendex

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23. The effect of dimensionless parameters on coal flotation

Shahbazi, Behzad (Mining Engineering Department, Science and Research Branch, Islamic Azad University, Tehran,Iran); Rezai, Bahram; Javad Koleini, S.M.; Noaparast, Mohammad Source: International Journal of Coal Preparationand Utilization, v 32, n 4, p 157-168, July 1, 2012

Database: Compendex

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24. Effect of chalcopyrite and pyrrhotite interaction on flotation separation

Cheng, X. (Univ of Minnesota, Minneapolis, United States); Iwasaki, I. Source: Minerals and Metallurgical Processing,v 9, n 2, p 73-79, May 1992

Database: Compendex

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25. Application of KYF-320 flotation cell

Zhengchang, Shen (State Key Laboratory of Mineral Processing Science and Technology, Beijing General ResearchInstitute of Mining and Metallurgy, China); Yuejun, Zhang; Dengfeng, Han; Tianran, Feng Source: IMPC 2014 - 27thInternational Mineral Processing Congress, 2014, IMPC 2014 - 27th International Mineral Processing CongressDatabase: Compendex

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26. Beneficiation of a low-grade flaky graphite ore from Australia by flotation

Xin Zhang (Sch. of Natural Resources & Environ. Eng., Wuhan Univ. of Technol., Wuhan, China); Lingyan Zhang;Yangshuai Qiu; Xin Qu Source: Advanced Materials Research, v 1090, p 188-92, 2015

Database: Inspec

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27. Flotation forum rises to expectations

Casteel, Kyran Source: Engineering and Mining Journal, v 206, n 6, p 51-54, July/August 2005

Database: Compendex

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28. Recovery of Silver From Zinc Acid-leaching Residue by Flotation

Yang Zhichao (Sch. of Resources & Environ. Eng., Wuhan Univ. of Technol., Wuhan, China); Ge Yingyong; ZhangYuanlong; Zhao Junli; Zhu Kun Source: Applied Mechanics and Materials, v 392, p 14-23, 2013

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29. Advances in Fine and Coarse Particle Flotation

Jameson, G.J. (Univ. of Newcastle, Callaghan, NSW, Australia) Source: Canadian Metallurgical Quarterly, v 49, n 4, p325-30, Oct. 2010

Database: Inspec

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30. Expert advisor for phosphate flotation

Davis, B.E. (Tuscaloosa Research Cent, United States); Jordan, C.E.; Stanley, D.A. Source: Minerals & MetallurgicalProcessing, p 77-85, 1990, Control 90 Miner Metall Process

Database: Compendex

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31. Contribution to the optimization of the hydrodynamics of coarse particle flotation

(Beitrag zur Optimierung der Hydrodynamik fuer die Grobkornflotation)

Weiss, Th. (Bergakademie Freiberg, Germany); Schubert, H. Source: Aufbereitungs-Technik, v 30, n 11, p 657-663,Nov 1989 Language: German

Database: Compendex

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32. Optimization of gold recovery by selective gold flotation for copper-gold-pyrite oresForrest, K.; Yan, D.; Dunne, R. Source: Minerals Engineering, v 14, n 2, p 227-241, Feb 2001

Database: Compendex

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33. Kinetics of Cu2+ separation by flotation

Stoica, Ligia (Department of Inorganic Chemistry, Politechnica University Bucharest, Splaiul Independentei 313,Bucharest, Romania); Oproiu, Gabriela Carmen; Cosmeleata, Roxana; Dinculescu, Magda Source: SeparationScience and Technology, v 38, n 3, p 613-632, 2003

Database: Compendex

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34. DYNAMIC SIMULATION OF FLOTATION FLOWSHEET BY USING COMPUTER.

Yin Di (Central South Univ of Technology, China, Central South Univ of Technology, China); Li Songren; Zhang

Guoxiang; Hu Weibai Source: Yu Se Chin Shu/Nonferrous Metals, v 39, n 4, p 41-51, Nov 1987 Language: ChineseDatabase: Compendex

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35. Optimization of gold recovery by selective gold flotation for copper-gold-pyrite oresForrest, K. (Croesus Mining Pty Ltd, Kalgoorlie, WA, Australia); Yan, D.; Dunne, R. Source: Minerals Engineering, v14, n 2, p 227-241, February 2001

Database: Compendex

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36. Continuous Flotation; Experimental Data and Modeling. (FLOTTATION EN CONTINU:DONNEES EXPERIMENTALES ET MODELISATION.)

Andre, M. (Inst du Genie Chimique, Fr, Inst du Genie Chimique, Fr); Couderc, J.-P. Source: Industrie Minerale, LesTechniques, n 9-84, p 707-713, Nov 1983 Language: French

Database: Compendex

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37. Air flotation method in the treatment of oily wastewater application of its progress

Zhu Huan-ying (Fac. of Civil Eng., Kunming Univ. of Sci. & Technol., Kunming, China); Zhou Ming Source: AdvancedMaterials Research, v 971-973, p 2044-7, 2014

Database: Inspec

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38. Flotation recovery of fluorite from rare earth operation taillings

Wenliang Xiong (Inst. of Multipurpose Utilization of Miner. Resources, Chinese Acad. of Geol. Sci., Chengdu, China);Bingyan Chen Source: Proceedings of the 2011 International Conference on Remote Sensing, Environment andTransportation Engineering (RSETE 2011), p 3163-6, 2011

Database: Inspec

Copyright 2011, The Institution of Engineering and Technology

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