Enhancing chalcopyrite flotation by tackling hydrophobic silicate gangue
V. Aruna, Sudipta Goswami, P R Bawane, Mohan N Ram, C S Gundewar
Abstract
V. Aruna, Sudipta Goswami, P R Bawane, Mohan N Ram, C S Gundewar
Abstract
The Khetri Copper concentrator of M/s Hindustan Copper Limited, encountered with the problem of voluminous black froth, while treating copper ore from Banwas mine. The copper concentrate of the plant assayed 16.19% Cu, and 19.57% Acid insoluble with ~89% Cu recovery. Mineralogical studies revealed that the plant concentrate consists of ~45% chalcopyrite, 10–15% quartz, ~5% mica, 15–20% amphibole, 10–15% pyrite and pyrrhotite, 2–3% magnetite and ~5% other minerals. In order to find a solution to the black froth problem, and to improve the Cu grade and recovery, ROM copper ore sample from Banwas mine was sent to RODL, IBM, Ajmer by M/s HCL, Khetri. Bench scale flotation studies carried out at plant grind of 65.9% < 75 μm, under optimized reagent dosage, at dilute pulp density yielded a II cleaner concentrate assaying 28.81% Cu, 7% acid insoluble with 92.4% Cu recovery. The wt% yield was 6.0. The grade and recovery achieved is much better than that was stipulated by M/s. HCL, Khetri. The study revealed that it is possible to control silicate gangue minerals by slight modifications of the flotation parameters under the existing plant practice conditions.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The Khetri Copper concentrator of M/s Hindustan Copper Limited, encountered with the problem of voluminous black froth, while treating copper ore from Banwas mine. The copper concentrate of the plant assayed 16.19% Cu, and 19.57% Acid insoluble with ~89% Cu recovery. Mineralogical studies revealed that the plant concentrate consists of ~45% chalcopyrite, 10–15% quartz, ~5% mica, 15–20% amphibole, 10–15% pyrite and pyrrhotite, 2–3% magnetite and ~5% other minerals. In order to find a solution to the black froth problem, and to improve the Cu grade and recovery, ROM copper ore sample from Banwas mine was sent to RODL, IBM, Ajmer by M/s HCL, Khetri. Bench scale flotation studies carried out at plant grind of 65.9% < 75 μm, under optimized reagent dosage, at dilute pulp density yielded a II cleaner concentrate assaying 28.81% Cu, 7% acid insoluble with 92.4% Cu recovery. The wt% yield was 6.0. The grade and recovery achieved is much better than that was stipulated by M/s. HCL, Khetri. The study revealed that it is possible to control silicate gangue minerals by slight modifications of the flotation parameters under the existing plant practice conditions.
Key concepts: Gangue, Chalcopyrite, Copper extraction techniques, Froth flotation, Copper, Pyrrhotite, Sodium silicate, Pyrite