Petrus J. van Staden, Andrei V. Kolesnikov
A method is provided for deriving the average macro-scale batch leaching kinetics of ore on a commercial heap on which portions of the heap (or cells) possess a range of leaching ages due to irrigation commencing while stacking is still in progress. It has been designed to require as only inputs the average ore grade, daily amount of ore stacked and the rate of metal extraction to a common drainage collection point for all cells. A comparison of the batch curve, thus derived, with the batch curve upon which the design of the pad footprint was based provides an early indication of the likelihood of reaching the desired rate of metal production. Furthermore, any attempt to fix the performance of a leaching model to that of a commercial heap requires the description of heap leaching kinetics in the form of a batch curve, since leaching modes vary. The procedure relies on the selection of a functional form, denoted X(t), to describe the macro-kinetic batch extraction curve from a single cell (or part thereof) on a heap. Summation over time of the contributions to production from all cells stacked up to time t, assuming each cell leaches according to X(t), yields a calculated production graph. The parameters of the function X(t) are adjusted to minimise the sum of squared residuals between observed and calculated production graphs. X(t) thus defined the batch curve sought.
@article{8cfba16d-76f7-4e36-b7ab-36bf29425a65,
title={Comparative assessment of heap leach pro},
author={Petrus J. van Staden and Andrei V. Kolesnikov},
year={2026},
language={en}
}TY - JOUR TI - Comparative assessment of heap leach pro AU - Petrus J. van Staden AU - Andrei V. Kolesnikov PY - 2026 LA - en ER -
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