Optimization of the Heap Leaching Process through Changes in Modes of Operation and Discrete Event Simulation
Оптимизация процесса кучного выщелачивания посредством изменения режимов работы и имитационного моделирования дискретных событий
2019-07-10
SCID: 54.1/sq2qr5gy
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discrete event simulationheap leachingmineral recovery optimizationmineralogical uncertaintyoxide and sulfide ores
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Abstract (AI)
The importance of mine planning is often underestimated. Nonetheless, it is essential in achieving high performance by identifying the potential value of mineral resources and providing an optimal, practical, and realistic strategy for extraction, which considers the greatest quantity of options, materials, and scenarios. Conventional mine planning is based on a mostly deterministic approach, ignoring part of the uncertainty presented in the input data, such as the mineralogical composition of the feed. This work develops a methodology to optimize the mineral recovery of the heap leaching phase by addressing the mineralogical variation of the feed, by alternating the mode of operation depending on the type of ore in the feed. The operational changes considered in the analysis include the leaching of oxide ores by adding only sulfuric acid (H2SO4) as reagent and adding chloride in the case of sulfide ores (secondary sulfides). The incorporation of uncertainty allows the creation of models that maximize the productivity, while confronting the geological uncertainty, as the extraction program progresses. The model seeks to increase the expected recovery from leaching, considering a set of equiprobable geological scenarios. The modeling and simulation of this productive phase is developed through a discrete event simulation (DES) framework. The results of the simulation indicate the potential to address the dynamics of feed variation through the implementation of alternating modes of operation.
Key Findings
1
A discrete event simulation framework models the leaching phase and supports productivity maximization as the extraction program progresses.
2
A methodology optimizes heap-leaching recovery by adapting operating modes to mineralogical variations in the incoming ore feed.
3
Oxide ores are leached using sulfuric acid alone, whereas secondary sulfide ores receive chloride addition as an operational change.
4
Simulation results indicate that alternating operating modes can address feed variability and potentially improve expected heap-leaching recovery.
5
The approach incorporates geological uncertainty through equiprobable scenarios rather than relying solely on deterministic mine-planning assumptions.
Research Object
Heap leaching phase for variable-mineralogy ore feeds, including oxide and secondary sulfide ores
Research Subject
Optimization of mineral recovery and productivity through uncertainty-aware switching between acid-only and chloride-assisted leaching modes
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2019-07-10
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