Mathew Dzingai, Malibongwe Manono
Froth flotation is a multifaceted complex process which is water intensive. The use of recycled water as an alternative source of water to meet water demands of the process may introduce deleterious inorganic ions that affect the mineral surface, pulp chemistry, and reagent action, hence the need to establish whether threshold ion concentrations exist beyond which flotation performance will be adversely affected. This is of paramount importance in informing appropriate recycle streams and allowing simple, cost-effective water treatment methods to be applied. Here we report that increasing ionic strengths of synthetic plant water (SPW); 3, 5, and 10 SPW respectively, resulted in an increase in water recovery in the order 0.073 mol·dm−3 (3 SPW) < 0.121 mol·dm−3 (5 SPW) < 0.242 mol·dm−3 (10 SPW), indicating an increase in froth stability as higher water recoveries are linked to increased froth stabilities. This behavior is linked to the action of inorganic electrolytes on bubble coalescence which is reported in literature. There was, however, no significant effect on the valuable mineral recovery. Spiking 3 SPW to 400 mg/L Ca2+ resulted in higher copper and nickel grades compared to 3 SPW, 5 SPW, and 10 SPW and was deemed to be the Ca2+ ion threshold concentration for this study since 3 SPW spiked with further Ca2+ to a concentration of 800 mg/L resulted in a decrease in the concentrate grade. The spiking of 3 SPW with Mg2+ resulted in higher copper and nickel grades compared to all other synthetic plant water conditions tested in this study.
@article{239445ab-1975-4276-806d-53cff80e36a7,
title={Simulating the Effect of Water Recirculation on Flotation through Ion-Spiking: Effect of Ca2+ and Mg2+},
author={Mathew Dzingai and Malibongwe Manono},
year={2020},
language={English}
}TY - JOUR TI - Simulating the Effect of Water Recirculation on Flotation through Ion-Spiking: Effect of Ca2+ and Mg2+ AU - Mathew Dzingai AU - Malibongwe Manono PY - 2020 LA - English ER -
John Chadwick
This article surveys contemporary technological developments aimed at enhancing the efficiency, selectivity, and sustainability of gold extraction and
Osvaldo Pavez, Pablo Herrera
Copper slag flotation was studied on an industrial scale at a concentrator plant in the region of Atacama, Chile. This study consisted of the physical
FATHI HABASHI
In the past few years, extractive metallurgy has been advancing gradually, despite the absence of remarkable new ideas. This paper aims to summarize t
John Doe, Jane Smith
This work provides a comprehensive introductory treatment of mineral processing with a strong emphasis on the practical design and operation of benefi
Pekka Taskinen, Ari Jokilaakso
The effectivity of present copper smelting technologies have their roots in industrial and laboratory-scale experience accumulated over the past decad
Olof Forsén, Jari Aromaa
The primary production of sulfide concentrates includes smelting to copper matte or blister copper, conversion of matte to blister copper, and refinin