Author/Authors :
Amini، Mehdi نويسنده Behavioral Sciences Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran Amini, Mehdi
Abstract :
In copper heap leaching structures, the ore is leached by an acidic solution. After dissolving the ore
mineral, the heap is drained off in the acidic solution using a drainage system (consisting of a network
of perforated polyethylene pipes and gravelly drainage layers) and is, then, transferred to the leaching
plant for copper extraction where the copper is extracted and the remaining solution is dripped over
the ore heap for re-leaching. In this process, the reaction between the acidic solution and copper oxide
ore is exothermal and the pregnant leach solution (PLS), which is drained off the leaching heap, has a
higher temperature than the dripped acidic solution. The PLS temperature variations cause some
changes in the viscosity and density which affect the gravelly drainage layerʹs permeability. In this
research, a special permeability measuring system was devised for determining the effects of the PLS
temperature variations on the permeability coefficient of the gravelly drainage layer of heap leaching
structures. The system, consisting of a thermal acid resistant element and a thermocouple, controls the
PLS temperature, which helps measure the permeability coefficient of the gravelly drainage layer. The
PLS and gravelly drainage layer of Sarcheshmeh copper mine heap leaching structure No. 1 were used
in this study. The permeability coefficient of the gravelly soil was measured against the PLS and pure
water at temperatures varying between 3°C to 60°C. Also, the viscosity and density of the PLS and
pure water were measured at these temperatures and, using existing theoretical relations, the
permeability coefficient of the gravel was computed. A comparison between the experimental and
theoretical results revealed a good conformity between the two sets of results. Finally, a case (Taft
heap leaching structure, Yazd, Iran) was studied and its gravelly drainage layer was designed based on
the results of the present research.