Separation of ultrafine hematite from quartz and kaolinite gangue minerals using selective flocculation technique is markedly affected by the state of inter mineral interaction which is governed by type and content of polyvalent metal ions. Because of the presence of polyvalent metal ions hetracoagulation of gangue minerals is widely acknowledged, thus selective flocculation of ultrafine hematite from associated gangue minerals is challenging task when their concentration is above 10 ppm. This study has shown that state of strong interaction of gangue minerals with hematite due to presence of 15 ppm Ca2+, 3 ppm Mg2+ and 3 ppm Fe3+ ions can be weakened by addition of optimal dose of Sodium Hexametaphosphate (SHMP) ligand. The optimization of...
Demand for high-quality iron concentrate is significantly increasing around the world. Thus, the dev...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
The effects of Ca2+, Mg2+, Al3+, and Fe3+ on the flotation behaviors of apatite, dolomite and quartz...
The effectiveness of selective flocculation and dispersion processes for the concentration of hemati...
Copyright © 2015 Taylor & Francis Group, LLC. The only industrially proven method for the benefici...
Fine-grained hematite ore can be concentrated by the process of selective flocculation and dispersio...
The industrial practice of beneficiation of iron ores produces substantial amount of slimes which ca...
In relation to separation between apatite and hematite by froth flotation, surface-chemical interact...
Selective flocculation was studied for binary combinations of artificial mixtures of hematite, corun...
Selective flocculation and dispersion processes rely on differences in the surface chemistry of fine...
Beneficiation of ultrafine mineral particles (typically with an average size less than 20 µm) ...
Clay minerals are widespread in various types of mineral deposits. When present, they contribute to ...
: Flocculation studies on iron-ore fines (size < 10 mum) were conducted using three anionic polyacry...
The dispersion degree of the mineral particles in the pulp is especially relevant regarding the per...
Beneficiation of ultrafine mineral particles (typically with an average size less than 20 µm) remain...
Demand for high-quality iron concentrate is significantly increasing around the world. Thus, the dev...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
The effects of Ca2+, Mg2+, Al3+, and Fe3+ on the flotation behaviors of apatite, dolomite and quartz...
The effectiveness of selective flocculation and dispersion processes for the concentration of hemati...
Copyright © 2015 Taylor & Francis Group, LLC. The only industrially proven method for the benefici...
Fine-grained hematite ore can be concentrated by the process of selective flocculation and dispersio...
The industrial practice of beneficiation of iron ores produces substantial amount of slimes which ca...
In relation to separation between apatite and hematite by froth flotation, surface-chemical interact...
Selective flocculation was studied for binary combinations of artificial mixtures of hematite, corun...
Selective flocculation and dispersion processes rely on differences in the surface chemistry of fine...
Beneficiation of ultrafine mineral particles (typically with an average size less than 20 µm) ...
Clay minerals are widespread in various types of mineral deposits. When present, they contribute to ...
: Flocculation studies on iron-ore fines (size < 10 mum) were conducted using three anionic polyacry...
The dispersion degree of the mineral particles in the pulp is especially relevant regarding the per...
Beneficiation of ultrafine mineral particles (typically with an average size less than 20 µm) remain...
Demand for high-quality iron concentrate is significantly increasing around the world. Thus, the dev...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
The effects of Ca2+, Mg2+, Al3+, and Fe3+ on the flotation behaviors of apatite, dolomite and quartz...