Australia Jili Lang collapse (Girilambone) mine [1] upper malachite and azurite ore, started in 1993 heap leaching oxide ores, copper annual 14000t. The sulphide ore in the lower part of the deposit is gradually increasing, accounting for 65% of the copper-bearing ore, mainly chalcopyrite, and the main part is chalcopyrite. In l
Further
In designing heap leaching, the average leaching rate was set at 78% , taking into account the increasing proportion of chalcopyrite. A two-stage leaching process, ie a low copper solution from the old pile, is used for the new heap leaching. The ore contains an average of 2.5% copper, which is much higher than other mines. Ore crushed to
Although the design desired stack temperature is
Analysis of the typical copper leaching rate and leaching time curve in the operation of the Kirilan collapse can be divided into two regions. The first region rises steeply, mainly because the chemical leaching of the acid works, and the subsequent leaching speed becomes slow, and the bacteria are leaching the sulfide ore. Afterwards, changes in the conditions of the heap, such as ore pulverization, cause the pile resistance to increase, and the leaching speed is further reduced.
The results of one year's operation show that this mining sludge leaching treatment of high-grade mixed copper ore is successful, the leaching rate of oxidized ore is 84% , the sulphide is 78 %, and the annual processing ore is 7.5 million tons . The leachate contains copper .
Extremely thermophilic bacteria leaching chalcopyrite
The immersion of chalcopyrite by mesophilic bacteria also leads to passivation, ie the elemental sulphur produced prevents further leaching reactions. However, the results reported in recent years indicate that the passivation of mesophilic bacteria and extremely thermophilic bacteria in chalcopyrite is not obvious.
Factory-based bacterial leaching equipment is highly demanding and therefore requires a high investment. A company recently developed a method for the leaching of chalcopyrite, with low investment and production costs [2] . The core of this method is to spray the slurry of chalcopyrite concentrate on ordinary rock blocks, heap heap, and inoculate the seeds in the heap. They did not specify the name of the rock used, but it should be an acid-resistant rock that requires breaking to 6~
When the stones flow down from the end of the belt conveyor, the slurry is sprayed from different directions to the stones through two nozzles and adheres to the stones. The stones covered with the slurry are directly piled up in a heap and are no longer moved. It is said that because the chalcopyrite is drowning, the concentrate adhered to the stone will not be washed away from the surface of the stone when it is sprayed with the leachate and when it rains. [next]
The sample used in a column immersion test contained 26.1 % copper, 29.7% iron, 29.0% sulfur and 0.5% calcium carbonate. The mineral analysis results were 75.4% for chalcopyrite and 14.5% for pyrite ( 63% of which were ferro-ferrite). mine). Among them, acid-soluble copper is 1.5% and acid-soluble iron is 2.1% . Column height
   The comparison of the results of several tests shows that the leaching rate of copper is linear with the oxidation of sulfur in the ore. In addition to the oxidation of the sulfide ore to elemental sulfur at the initial stage, the elemental sulfur gradually decreases. This helps to understand why there is no significant passivation when extracting chalcopyrite from extreme thermophiles, as shown in the following figure. [next]
   Recently Japanese scholars [3] studied
References :
1. Nicholson HM, Smih GR, et al., conf. Proc. BIOMINE '94, Sep. 19-20, 1994, Perth, western Australia, Paper II
2. Harvey P et al, Conf. Proc. BIOMINE '99, 88-97
3. Konishi Y, et al., Hydrometallurgy, 2001, 59: 271-282
4.Brierlary , CL , Brans R. , Conf. Proc. BIOMINE'94 , Sep.19-20 , 1994 , Perth , Western Australia, Paper V
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