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Froth Flotation with Modified Centrifugal Flotation Cell (CFC)By J. X. Guo, A. Pindred, J. Moore
"Two modified centrifugal flotation cells (CFC), Q2 and Q3 models, have been developed for froth flotation. The operating mechanism of Q2 uses a rotating bowl to create a centrifugal force on the feed
Jan 1, 1998
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Froth Flotation: The Kinetic ApproachBy R. R. Klimpel
"SYNOPSISA discussion of the importance of flotation rate in the analysis of mineral flotation is presented. In particular, the highly interactive nature of the flotation ""system"" is emphasized wher
Jan 1, 1984
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Froth Phase Study of Coal Flotation in a Hybrid Mechanical Flotation ColumnBy J. -C. Sztuke, M. Cao
ABSTRACT The correlations between froth recovery of coal and air recovery were investigated using a hybrid mechanical flotation column. The particle slurry was fed onto the surface of air-water two ph
Jan 1, 2013
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Froth Recovery Factor-What is it, And why is it so Difficult to Measure?By M. C. Harris
The past twenty to thirty years have seen unprecedented research activity aimed at understanding the performance of flotation froths. In 1990, Finch and Dobby coined the term froth recovery factor, Rr
Jan 1, 2009
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Froth Washing in Mechanical Flotation CellsBy M. Kaya, A. R. Laplante
"Since the beginning of eighties the use of flotation columns has surged in Canada and abroad; the metallurgical superiority of columns over mechanical cells is in great part due to froth washing, whi
Jan 1, 1989
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Frother Analysis in Industrial Flotation CellsBy A. Zangooi, J. A. Finch
Flotation is a separation process based on the collection of particles on the surface of bubbles. Flotation machines disperse air into bubbles using a variety of techniques. The characteristics of the
Jan 1, 2009
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Frother Analysis: Procedure and Plant Experience (9afbd8b8-3e71-4680-a005-b07f0c7c29ef)By Frank Cappuccitti, James A. Finch, Stéphanie Gélinas
"A colorimetric technique, originally developed for methyl iso butyl carbinol (MIBC) based on the Komarowsky reaction, has been extended to a wide range of common mineral flotation frothers. The proce
Jan 1, 2005
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Frother Analysis: Procedure and Plant ExperiencesBy James A. Finch, Stéphanie Gélinas
"A colorimetric technique, originally developed for methyl iso butyl carbinol (MIBC) based on the Komarowsky reaction, has been extended to a wide range of common mineral flotation frothers. The proce
Jan 1, 2007
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Frother and Collector Effects on Flotation Cell Hydrodynamics and their Implication on Circuit PerformanceBy J. E. Nesset
Significant progress has been made over the past few years on characterizing and understanding the hydrodynamic properties of frothers and collectors and their effect on flotation performance. This ne
Jan 1, 2009
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Frother and Collector Effects on Flotation Cell Hydrodynamics and Their Implication on Circuit Performance (c615fbc8-d724-48ab-a36a-7fd85aca4c5e)By J. E. Nesset
"Significant progress has been made over the past few years on characterizing and understanding the hydrodynamic properties of frothers and collectors and their effect on flotation performance. This n
Jan 1, 2010
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Frother Inducement of the Bubble Attachment to Hydrophobic Solid SurfaceBy M. Krasowska, K. Malysa, M. Krzan
The paper presents fascinating, in our opinion, observations on mechanism and course of processes occurring during bubble collision with hydrophobic and hydrophilic solid surface. Hydrophobicity of pa
Jan 1, 2004
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Frother Structure-Property Relationship: Effect of Polypropylene Glycol Alkyl Ethers on Bubble Rise VelocityBy James A. Finch, Yue Hua Tan, Wei Zhang
"The paper is part of our study of the frother structure-property relationship using bubble rise velocity. Single bubble rise velocity profiles were determined in a 350 cm column for surfactants from
Jan 1, 2016
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Frozen Backfill for Open Stoping in PermafrostBy Daniel L. Cluff
The Canadian mining industry needs to find viable alternatives to the conventional cemented pastefill/hydraulic methods of backfilling open stopes for underground mines located within a permafrost zon
May 1, 2008
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Frozen Backfill for Underground Mine ApplicationsBy Daniel Cluff
Frozen backfill for mining operations in permafrost must be delivered in such a state so as not to thermally impose on the host rock surrounding the filled stope. The placement process, the material s
Oct 1, 2010
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Frozen fill for underground supportBy Jacques H. Nantel, James F. Archibald
"Frozen tailings material may be required, in the future, to perform the support functions of underground backfill in mines located in zones of permafrost, notably in the high Arctic. To date, no know
Jan 1, 1986
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Frozen Lump Generation of Oil Sands ? Climatic Challenges and SolutionsBy Derek J. Cyr
Climate has an immense impact on the properties of Athabasca oil sands and the ease or difficulty with which it is excavated and extracted. During the winter months, exposed oil sands surfaces freeze.
May 1, 2004
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FRP Challenges and Applications in Metals ProcessingBy Rafic Moubarac
FRP (Fiberglass Reinforced Polyester) equipment has been used in different and several applications during metals processing and extraction, and the hydrometallurgical process. Case histories of such
Jan 1, 2015
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Fuel cell and hydrogen R&D targets and funding - A comparative analysisBy K-A. Adamson
If fuel cells and hydrogen are to become a mass market reality a substantial amount of further research and development needs to be undertaken. Work in hydrogen storage, production, the economics of a
Jan 1, 2005
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Fuel Cell Aspects and Future Developments Needed for MiningBy Marc Bétournay
This article examines how fuel cell technology and related power distribution system fits within mine operating requirements. Considerations for improvement of power plant architecture and functions t
May 1, 2007
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Fuel Cell Risk Assessment, Regulatory Compliance, and Implementation of the World?s First Fuel Cell-Powered Mining Equipment at the Campbell MineBy Fred C. Delabbio
The successful implementation of a new technology in an underground production mine requires many challenges to be overcome. These challenges include mine hardening of new technology, mitigation of sa
May 1, 2003