An Innovative Sensor-Based Approach for Evaluating Performance of Flotation Circuit at the Expansion of Toromocho Copper Mine

Author:

Zhang Wei12ORCID,Tan Zhiyong3,Li Tengfei12ORCID,Guan Xiaoqiang3,Zhou Shiqing4,Li Haibin3,Wang Chao12

Affiliation:

1. Chinalco Research Institute of Science and Technology Co., Ltd., Beijing 102209, China

2. Kunming Metallurgical Research Institute Co., Ltd. Beijing Branch, Beijing 102209, China

3. Chinalco Intelligent Tongchuang Technology (Yunnan) Co., Ltd., Kunming 650101, China

4. Yunnan Copper Industry Co., Ltd., Kunming 650051, China

Abstract

Chinalco’s Toromocho mine, located in the Morococha district of Peru, treated 117,200 mtpd ores during last 10 years. It is currently undergoing expansion, treating approximately 52,740 mtpd of chalcopyrite ore since 2021. As with the commissioning of most large plants, the metallurgical performance levels produced after stability was achieved were below the design criteria; more specifically, the Cu overall recoveries were 80–82% compared with the design value of 85%, and the final concentrate Cu grades were 20–23% compared with the design value of 24% over the past 2 years. It is clear that the copper losses in the fine size fraction (<10 µm) were due to unoptimized hydrodynamics. To overcome this obstacle and improve overall performance, an innovative approach for flotation circuit evaluation was designed and set up, to improve understanding of the nature of the mineral losses, benchmark the cell hydrodynamics as a platform to improve flotation cell operation, and link the circuit setup and operation to gas dispersion characteristics. These needs were fulfilled by the developments in gas dispersion sensor technology and process measurement methodology of CRIST. Effectively utilizing the sensor technology, it was observed that the deficient recovery of the Toromocho expansion plant was due to poor recovery of <10 μm Cu, as a result of a lack of small bubbles (<1 mm) compared to the pilot circuit. The resulting data highlight the potential for recovery improvement (increased kinetics) via bubble size reduction and increased air rate.

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference12 articles.

1. China Enfi Engineering Corporation (2014). Preliminary Design for the Expansion of Toromocho Copper-Molybdenum Mine, China Enfi Engineering Corporation. (In Chinese).

2. Chinalco Research Institute of Science and Technology (2022). The Flotation Improvements at Toromocho Expansion Concentrator, Chinalco Research Institute of Science and Technology. Internal Report.

3. Effect of some operational variables on bubble size in a pilot-scale mechanical flotation machine;Zhang;J. Cent. South Univ.,2014

4. Effect of solids on pulp and froth properties in flotation;Zhang;J. Cent. South Univ.,2014

5. Cappuccitti, F., Finch, J.A., Nesset, J.E., and Zhang, W. (2009, January 22–25). Characterization of Frothers and Its Role in Flotation Optimization. Proceedings of the 2009 SME Annual Meeting & Exhibit and Colorado Mining Associations, 111th National Western Mining Conference, Denver, CO, USA.

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