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The Use of Flotation and High-Intensity Magnetic Separation to Improve Feldspar Concentrate Quality
by
E. Rizk, A. M.
, Ahmed, M. M.
, Ibrahim, G. A.
, Mahmoud, N. A.
in
Beneficiation
/ Earth and Environmental Science
/ Earth Sciences
/ Energy consumption
/ Feldspars
/ Ferric oxide
/ Field strength
/ Flotation
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Iron
/ Magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetic separation
/ Magnetic separators
/ Mineral Dressing
/ Mineral Resources
/ Minerals
/ Potash
/ Quartz
/ Separation
/ Titanium
/ Titanium dioxide
2023
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The Use of Flotation and High-Intensity Magnetic Separation to Improve Feldspar Concentrate Quality
by
E. Rizk, A. M.
, Ahmed, M. M.
, Ibrahim, G. A.
, Mahmoud, N. A.
in
Beneficiation
/ Earth and Environmental Science
/ Earth Sciences
/ Energy consumption
/ Feldspars
/ Ferric oxide
/ Field strength
/ Flotation
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Iron
/ Magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetic separation
/ Magnetic separators
/ Mineral Dressing
/ Mineral Resources
/ Minerals
/ Potash
/ Quartz
/ Separation
/ Titanium
/ Titanium dioxide
2023
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The Use of Flotation and High-Intensity Magnetic Separation to Improve Feldspar Concentrate Quality
by
E. Rizk, A. M.
, Ahmed, M. M.
, Ibrahim, G. A.
, Mahmoud, N. A.
in
Beneficiation
/ Earth and Environmental Science
/ Earth Sciences
/ Energy consumption
/ Feldspars
/ Ferric oxide
/ Field strength
/ Flotation
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Iron
/ Magnetic field
/ Magnetic fields
/ Magnetic flux
/ Magnetic separation
/ Magnetic separators
/ Mineral Dressing
/ Mineral Resources
/ Minerals
/ Potash
/ Quartz
/ Separation
/ Titanium
/ Titanium dioxide
2023
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The Use of Flotation and High-Intensity Magnetic Separation to Improve Feldspar Concentrate Quality
Journal Article
The Use of Flotation and High-Intensity Magnetic Separation to Improve Feldspar Concentrate Quality
2023
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Overview
The flotation process and magnetic separation are the most common methods for feldspar beneficiation containing approximately 0.4% Fe
2
O
3
and 0.04% TiO
2
. A model MIH (13) 111-5 Induced Roll dry high-intensity magnetic separator was used in this investigation to produce high-quality feldspar concentrate, and investigate the effects of magnetic field strength and roll speed on reducing coloring minerals. The best results were obtained at a magnetic field intensity of 16600 Gauss and a roller speed of 24 rpm. A feldspar concentrate containing 0.16% Fe
2
O
3
, 0.01% TiO
2
and 10.31% alkali minerals (K
2
O+Na
2
O) was obtained with a mass recovery of approximately 69.24%. As a result, the products that met the white glaze and ceramic requirements were produced.
Publisher
Pleiades Publishing,Springer,Springer Nature B.V
Subject
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