Plate type gangue minerals and their impact on flotation performance

International Mineral Processing Congress
Tarun Bhambhani P. Patra D. R. Nagaraj P. Somasundaran
Organization:
International Mineral Processing Congress
Pages:
10
File Size:
602 KB
Publication Date:
Jan 1, 2014

Abstract

"Certain non-sulfide gangue minerals are known to have a detrimental impact on flotation performance. When present in large amounts, they can negatively affect recoveries, grades and throughput at current operations, and dictate the viability and economics of a greenfield project. While the problem has been investigated for a long period of time, a scientific understanding of the mechanisms by which these minerals affect performance has not been obtained, and no acceptable solutions have been developed. This study focused on the role of physical aspects (e.g. shape, size and morphology) of these minerals as the underlying factors for poor performance. Flotation tests were conducted using model mineral systems to understand the impact of one phyllosilicate mineral (muscovite) on flotation kinetics, recoveries and grades. The study reveals that there is minimal impact on flotation kinetics, no impact on recoveries, but a very strong detrimental impact on concentrate grade. The traditional mechanisms of transport such as true flotation and entrainment are not sufficient in describing the extent of transport. The transport is attributed to the unique platy morphology of muscovite, which allows for action of buoyancy forces. Data also shows that the muscovite transport to the froth phase depends on particle size; coarser sized muscovite (100-150@) report to the froth phase in much larger amounts than medium sized muscovite (50-100@). At finer size fractions (<50@) the transport is also increased, and this is likely due to entrainment."
Citation

APA: Tarun Bhambhani P. Patra D. R. Nagaraj P. Somasundaran  (2014)  Plate type gangue minerals and their impact on flotation performance

MLA: Tarun Bhambhani P. Patra D. R. Nagaraj P. Somasundaran Plate type gangue minerals and their impact on flotation performance. International Mineral Processing Congress, 2014.

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