Structure–activity relationship of xanthates with different hydrophobic groups in the flotation of pyrite
-
Add time:08/22/2019 Source:sciencedirect.com
Xanthate collectors have been industrially used for the flotation of pyrite in the gold mining industry because pyrite is the most common gold-bearing mineral. However, after reviewing the structure-activity relationship study of flotation collectors, the influence of hydrophobic groups on the flotation performance of collectors remains underexplored. In this paper, using density functional theory (DFT) method, the quantum chemical properties of xanthate derivatives ROC = SS- (R = ethyl, isobutyl or amyl) and their interactions with Fe3+, Fe(OH)2+, Fe(OH)2+ and pyrite cluster were evaluated in the context of solvation effects. The flotation performance of substituted xanthates was experimentally investigated for a gold–pyrite ore. Based on the values of frontier orbital energies and electronic chemical potential, the flotation performance of the alkyl xanthates was predicted to be amyl xanthate > isobutyl xanthate > ethyl xanthate. The results showed that the direct chemisorption of the ferric hydroxo xanthates on the pyrite surfaces was thermodynamically possible. The flotation performance of the xanthate collectors matched with the theoretically predicted trend. This study could offer some theoretical insights into the mechanism of pyrite flotation and provide novel guidelines for rational selection/design of hydrophobic groups of flotation collectors.
We also recommend Trading Suppliers and Manufacturers of O-isopropyl xanthate (cas 108-25-8). Pls Click Website Link as below: cas 108-25-8 suppliers
Prev:Visible light/Ir(III) photocatalytic initiation of xanthate-based radical-chain reactions: Xanthate group transfer and oxidative addition to aromatic systems
Next:The role of calcium in xanthate adsorption onto sphalerite) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Fe(Ⅲ) ions enhanced catalytic properties of (BiO)2CO3 nanowires and mechanism study for complete degradation of xanthate08/27/2019
- Comparison of alkyl xanthates degradation in aqueous solution by the O3 and UV/O3 processes: Efficiency, mineralization and ozone utilization08/26/2019
- The flotation behavior and adsorption mechanism of O-isopropyl-S-[2-(hydroxyimino) propyl] dithiocarbonate ester to chalcopyrite08/25/2019
- Enhanced UV–visible response of bismuth subcarbonate nanowires for degradation of xanthate and photocatalytic reaction mechanism08/24/2019
- The role of calcium in xanthate adsorption onto sphalerite08/23/2019
- Visible light/Ir(III) photocatalytic initiation of xanthate-based radical-chain reactions: Xanthate group transfer and oxidative addition to aromatic systems08/21/2019
- Removal of the residual xanthate from flotation plant tailings using bentonite modified by magnetic nano-particles08/20/2019
- Investigating the selectivity of a xanthate derivative for the flotation separation of chalcopyrite from pyrite08/19/2019


