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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 46, 2007 - Issue 3
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Articles

Characterizing Frothers using Gas Hold-Up

Pages 237-242 | Published online: 29 Nov 2013

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Read on this site (2)

Kamalendu Bhunia, Gautam Kundu & Dibyendu Mukherjee. (2017) Gas holdup characteristics in a flotation column with different solids. Separation Science and Technology 52:7, pages 1298-1309.
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K. Bhunia, G. Kundu & D. Mukherjee. (2015) Statistical model for gas holdup in flotation column in presence of minerals. Canadian Metallurgical Quarterly 54:2, pages 235-246.
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Articles from other publishers (17)

T. N. Aleksandrova & V. V. Kuznetsov. (2023) A New Approach to Determining Aeration Intensity in Flotation. Journal of Mining Science 58:5, pages 812-822.
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Youli Han, Xing Wang, Jinbo Zhu & Po Wang. (2022) Gas Dispersion Characteristics in a Novel Jet-Stirring Coupling Flotation Device. ACS Omega 7:10, pages 9061-9070.
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Yesenia Saavedra Moreno, Ghislain Bournival & Seher Ata. (2021) Foam stability of flotation frothers under dynamic and static conditions. Separation and Purification Technology 274, pages 117822.
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Lei Wang & Chao Li. (2020) A Brief Review of Pulp and Froth Rheology in Mineral Flotation. Journal of Chemistry 2020, pages 1-16.
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Soroush Rahmati, Ali Ahmadi, Mohammad Rauof Hosseini & Mehdi Molaei Nasab. (2018) Surface phenomena in air-assisted solvent extraction. Hydrometallurgy 177, pages 168-177.
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Jan Drzymala & Przemyslaw Kowalczuk. (2018) Classification of Flotation Frothers. Minerals 8:2, pages 53.
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X. Zhou, A. Jordens, F. Cappuccitti, J.A. Finch & K.E. Waters. (2016) Gas dispersion properties of collector/frother blends. Minerals Engineering 96-97, pages 20-25.
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M.A. Corona-Arroyo, A. López-Valdivieso, J.S. Laskowski & A. Encinas-Oropesa. (2015) Effect of frothers and dodecylamine on bubble size and gas holdup in a downflow column. Minerals Engineering 81, pages 109-115.
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Marc Nassif, James A. Finch & Kristian E. Waters. (2014) Determining frother-like properties of process water in bitumen flotation. Minerals Engineering 56, pages 121-128.
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A.M. Elmahdy & J.A. Finch. (2013) Effect of frother blends on hydrodynamic properties. International Journal of Mineral Processing 123, pages 60-63.
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A.A. Rafiei, M. Robbertze & J.A. Finch. (2011) Gas holdup and single bubble velocity profile. International Journal of Mineral Processing 98:1-2, pages 89-93.
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W. Kracht & J.A. Finch. (2010) Effect of frother on initial bubble shape and velocity. International Journal of Mineral Processing 94:3-4, pages 115-120.
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W. Kracht & J.A. Finch. (2009) Bubble break-up and the role of frother and salt. International Journal of Mineral Processing 92:3-4, pages 153-161.
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F. Azgomi, C.O. Gomez & J.A. Finch. (2009) Frother persistence: A measure using gas holdup. Minerals Engineering 22:9-10, pages 874-878.
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W. Kracht & J.A. Finch. (2009) Using sound to study bubble coalescence. Journal of Colloid and Interface Science 332:1, pages 237-245.
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A.M. Elmahdy, M. Mirnezami & J.A. Finch. (2008) Zeta potential of air bubbles in presence of frothers. International Journal of Mineral Processing 89:1-4, pages 40-43.
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F. Cappuccitti & J.A. Finch. (2008) Development of new frothers through hydrodynamic characterization. Minerals Engineering 21:12-14, pages 944-948.
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