Engineering_Village_citation_9-24-2015_02718407(5)

 

Database: Compendex

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74. Size dependent gold deportment in the products of copper flotation and methods toincrease gold recovery

Small, G. (Ian Wark Research Institute, ARC Special Research Centre, University of South Australia, Mawson Lakes5095, Australia); Michelmore, A.; Grano, S. Source: Journal of The South African Institute of Mining and Metallurgy, v103, n 9, p 573-579, November 2003

Database: Compendex

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75. Flotation as an operation of macromolecular mass transfer

Yovanovic, A.P. (Universidad del Norte, Chile, Modelo Operacional - Optimisation and Control of Mineral Processing,Rua Grajaú 177-A, Bairro Anchieta, Belo Horizonte MG CEP 30310-480, Brazil); Drumond, M.R. Source: AustralasianInstitute of Mining and Metallurgy Publication Series, p 651-657, 2005, Centenary of Flotation Symposium -

Proceedings

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Citation results: 140

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76. Physicochemical aspects of allanite flotation

Jordens, Adam (Department of Mining and Materials Engineering, McGill University, 3610 University Street, Montreal,QC H3A 0C5, Canada); Marion, Chris; Kuzmina, Olga; Waters, Kristian E. Source: Journal of Rare Earths, v 32, n 5, p476-486, May 2014

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77. Direct measurement of entrainment in large flotation cells

Yianatos, J. (Chemical Engineering Department, Santa Maria University, P.O. Box 110-V, Valparaíso, Chile);

Contreras, F.; Díaz, F.; Villanueva, A. Source: Powder Technology, v 189, n 1, p 42-47, January 25, 2009

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78. Influence of the propagation of three phase contact line on flotation recovery

Subasinghe, G.K. Nimal (Western Australia School of Mines, Curtin University, Kalgoorlie, WA 6430, Australia);Albijanic, Boris Source: Minerals Engineering, v 57, p 43-49, March 2014

Database: Compendex

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79. New flotation technology of ores of the Urup deposit

Pan'shin, A.M. (North Caucasian Metall. Inst. (State Technol. Univ.), Vladikavkaz, Russia); Evdokimov, S.I.; Artemov,S.V. Source: Russian Journal of Non-Ferrous Metals, v 52, n 5, p 399-405, Oct. 2011

Database: Inspec

Copyright 2012, The Institution of Engineering and Technology

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80. The interaction of clay minerals and saline water in coarse coal flotation

Wang, Bo (School of Chemical Engineering, University of Queensland, St Lucia, Brisbane, QLD 4072, Australia); Peng,Yongjun Source: Fuel, v 134, p 326-332, October 15, 2014

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81. Combinations of different-class collectors in selective sulphide-ore flotation

Ignatkina, V.A. (National University of Science and Technology MISIS, Moscow, Russia); Bocharov, V.A.; Tubdenova,

B.T. Source: Journal of Mining Science, v 46, n 1, p 82-88, March 2010

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82. Flotation Froth Motion Velocity Extraction and Analysis Based on SIFT Features

Registration

Mu Xuemin (Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China); Liu Jinping; Gui Weihua; Tang Zhaohui; LiJianqi Source: Information and Control, v 40, n 4, p 525-31, Aug. 2011 Language: Chinese

Database: Inspec

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Citation results: 140

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83. Application of ultrasonic irradiation to micro-bubble flotation

Geng, Yang (Department of Earth, Resources and Environmental Engineering, Graduate School of Creative Scienceand Engineering, Waseda University, Japan); Kuroki, Natsuko; Owada, Shuji Source: IMPC 2014 - 27th InternationalMineral Processing Congress, 2014, IMPC 2014 - 27th International Mineral Processing Congress

Database: Compendex

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84. COLUMN FLOTATION '88, PROCEEDINGS OF AN INTERNATIONAL SYMPOSIUM ONCOLUMN FLOTATION.

Editors: Sastry, K.V.S. Source: Soc of Mining Engineers of AIME, 1988

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85. Activation of high-iron marmatite in froth flotation by ammoniacal copper(II) solutionTong, Xiong (Faculty of Land and Resource Engineering, Kunming University of Science and Technology, Kunming,650093, China); Song, Shaoxian; He, Jian; Rao, Feng; Lopez-Valdivieso, Alejandro Source: Minerals Engineering, v20, n 3, p 259-263, March 2007

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86. Removal of dissolved and colloidal substances from mechanical pulping white watersby flotation

Zasadowski, Dariusz (Fibre Science and Communication Network (FSCN), MidSweden University, SE-851 70Sundsvall, Sweden); Andersson, Fredrik; Almes?ker, Ann; Edlund, H?kan; Hedenstr?m, Erik; Norgren, MagnusSource: 16th International Symposium on Wood, Fiber and Pulping Chemistry - Proceedings, ISWFPC, v 2, p1238-1242, 2011, 16th International Symposium on Wood, Fiber and Pulping Chemistry - Proceedings, ISWFPCDatabase: Compendex

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87. CURRENT ADVANCES IN THE THEORY AND PRACTICE OF FLOTATION: RESEARCHWORK PERFORMED AT THE MEKHANOBR INSTITUTE.

Bogdanov, O.S. (Inst Mekhanobr, Leningrad, USSR, Inst Mekhanobr, Leningrad, USSR) Source: Soc of MiningEngineers, p 255-259, 1986

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88. Pyrrhotite oxidation and its influence on alkaline amine flotation

Bunkholt, Ingjerd (Department of Geology and Mineral Resources Engineering, Norwegian University of Science andTechnology, Sem S?lands vei 1, Trondheim, Norway); Kleiv, Rolf Arne Source: Minerals Engineering, v 71, p 65-72,February 2015

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Citation results: 140

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89. STUDY OF THE KINETICS OF FLOTATION IN A BULK FLOTATION CIRCUIT FOR

GALENA AND SPHALERITE.

Forssbert, K.S.Eric (Univ of Lulea, Div of Mineral, Processing, Lulea, Swed, Univ of Lulea, Div of Mineral Processing,Lulea, Swed); Frykfors, Carl-Otto; Palsson, Bertil I. Source: CIM, p IV. 16. 1-IV. 16. 19, 1983

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90. Pyrrhotite oxidation and its influence on alkaline amine flotation

Bunkholt, Ingjerd (Department of Geology and Mineral Resources Engineering, Norwegian University of Science andTechnology, Sem S?lands vei 1, Trondheim, Norway); Kleiv, Rolf Arne Source: Minerals Engineering, v 71, p 65-72,February 2015

Database: Compendex

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