Filtration of hematite ore slurries can be a bottleneck in some hematite processing plants due to inadequate filtration rates caused by the dispersion of fine particles. Flocculation of fine particles in the slurry decreases the specific cake resistance of the filter cake allowing for increased filtration rates. CO 2 sparging of hematite slurry was shown to increase the filtration rate by altering the pH and the surface chemistry of the particles. It was shown that an increase in filtration rate of 278% can be accomplished by lowering the pH from 11 to 6.5 using CO 2 at a lab scale. This was attributed to increased flocculation of hematite and silica particles in the ore. © 2012 Elsevier B.V
The aim of this study was to determine the mechanism of Bayer residue flocculation. Hematite was cho...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
Flocculant overdose has been considered an inefficient technique for precipitating heavy metals from...
Selective flocculation and dispersion processes rely on differences in the surface chemistry of fine...
Zeta potential is an important factor in affecting filtration rates of iron ore slurries. Two method...
The throughput of any process is limited by the step with the lowest throughput. In iron ore process...
As high grade iron ore deposits are rapidly depleted, the minerals industry is increasingly obliged ...
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...
In two different iron ore processing plants, it was demonstrated that when magnetite concentrate was...
Submitted by Ana Caroline Calderaro (karolcalderaro@hotmail.com) on 2016-07-29T14:33:15Z No. of bit...
Hematite ore selective flocculation-dispersion process water is a complex system of ions and reagent...
© 2015 Taylor & Francis Group, LLC. In mineral beneficiation plants, aqueous ions from the process...
Califloc is an efficient flocculant for hematite ore fines. Addition of CaCl2 improves settling rate...
The effectiveness of reagent adsorption onto hematite ore particle surfaces is critical during benef...
The aim of this study was to determine the mechanism of Bayer residue flocculation. Hematite was cho...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
Flocculant overdose has been considered an inefficient technique for precipitating heavy metals from...
Selective flocculation and dispersion processes rely on differences in the surface chemistry of fine...
Zeta potential is an important factor in affecting filtration rates of iron ore slurries. Two method...
The throughput of any process is limited by the step with the lowest throughput. In iron ore process...
As high grade iron ore deposits are rapidly depleted, the minerals industry is increasingly obliged ...
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...
In two different iron ore processing plants, it was demonstrated that when magnetite concentrate was...
Submitted by Ana Caroline Calderaro (karolcalderaro@hotmail.com) on 2016-07-29T14:33:15Z No. of bit...
Hematite ore selective flocculation-dispersion process water is a complex system of ions and reagent...
© 2015 Taylor & Francis Group, LLC. In mineral beneficiation plants, aqueous ions from the process...
Califloc is an efficient flocculant for hematite ore fines. Addition of CaCl2 improves settling rate...
The effectiveness of reagent adsorption onto hematite ore particle surfaces is critical during benef...
The aim of this study was to determine the mechanism of Bayer residue flocculation. Hematite was cho...
The flocculation and filtration characteristics of typical Indian iron ore fines have been studied u...
Flocculant overdose has been considered an inefficient technique for precipitating heavy metals from...