P.J. van Staden, J. Petersen
Several differences exist between the columns used for laboratory simulations of heap leaching and commercial heaps. Column walls support part of the weight of the ore and restrict the particle packing arrangements. Columns are typically of a diameter that is smaller than the dripper spacing to be used on the commercial heaps. The stacking practices that cause segregation and stratification on heaps are absent from columns. Intuitively, these physical differences would be expected to be the reasons behind the observed differences between column and heap leaching performance. But how can they be quantified, and what is the magnitude of the differences? Could some of these differences be built into column leaching experiments in order to better simulate commercial-scale heap leaching performance to ease the scale-up calculations from column leaching data? Alternatively, could heap construction practices be improved so that the ideal performance obtained in columns could be emulated on heaps? Data from a few heap leaching case studies that permit direct comparisons between column and heap leaching performance is analysed, to reveal the extent of the differences in resistance to mass transfer. Discussion is provided on the implications for column and heap leaching practice, and for scale-up design procedures.
@article{ed15ca8a-11ae-4079-8e9e-3a77241fbac3,
title={DIFFERENCES BETWEEN COLUMN AND HEAP LEACHING AND THEIR IMPLICATIONS FOR LABORATORY AND OPERATIONAL PRACTICE},
author={P.J. van Staden and J. Petersen},
year={2019},
language={en}
}TY - JOUR TI - DIFFERENCES BETWEEN COLUMN AND HEAP LEACHING AND THEIR IMPLICATIONS FOR LABORATORY AND OPERATIONAL PRACTICE AU - P.J. van Staden AU - J. Petersen PY - 2019 LA - en ER -
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