POTENTIAL CONTROL IN THE FLOTATION OF SULFIDE MINERALS AND PRECIOUS METALS

被引:33
作者
HINTIKKA, VV
LEPPINEN, JO
机构
关键词
FLOTATION; SULFIDE MINERALS; COMPLEX ORES; E(H); POTENTIAL CONTROL; GOLD ORES;
D O I
10.1016/0892-6875(95)00080-A
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this work a method based on the use of flotation gases (air, nitrogen, etc.) is presented for potential controlled flotation. Examples of the flotation of a complex sulphide ore, and two gold ores are presented. With this control method, the potential could be kept constant within 2 to 5 mV throughout the flotation stage. The selectivity in the flotation of copper minerals from the complex ore was significantly improved under conditions of controlled potential compared to open potential conditions. At low potentials the recovery of sulphide minerals was very low,whereas at high potentials created by excessive aeration the selectivity was poor, The maximum selectivity was achieved at about 0 mV vs. SHE, In the flotation of gold ores, the recovery of iron and arsenic minerals such as pyrite and arsenopyrite could be minimized by using potential control. The optimum potential for gold flotation was +250 to +300 mV vs. SHE.
引用
收藏
页码:1151 / 1158
页数:8
相关论文
共 12 条
[1]  
HEIMALA S, 1988, 16 P INT MIN PROC B, P1713
[2]  
HEIMALA S, 1985, 15 P INT MIN PROC C, V3, P85
[3]  
LABONTE G, 1990, MINERALS METALLURGIC, P106
[4]   INSITU FTIR STUDY OF ETHYL XANTHATE ADSORPTION ON SULFIDE MINERALS UNDER CONDITIONS OF CONTROLLED POTENTIAL [J].
LEPPINEN, JO ;
BASILIO, CI ;
YOON, RH .
INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 1989, 26 (3-4) :259-274
[5]   FT-IR STUDIES OF ETHYL XANTHATE ADSORPTION ON GOLD, SILVER AND GOLD-SILVER ALLOYS [J].
LEPPINEN, JO ;
YOON, RH ;
MIELCZARSKI, JA .
COLLOIDS AND SURFACES, 1991, 61 :189-203
[6]  
LEPPINEN JO, 1993, 1ST S POLYM SULPH IB
[7]  
RALSTON J, 1994, MINER ENG, V2, P859
[8]  
RICHARDSON PE, 1985, 15 INT MIN PROC C CA, P198
[9]  
SENIOR GD, 1991, FLOTATION SULPHIDE M, P321
[10]   SURFACE-LAYERS IN BASE-METAL SULFIDE FLOTATION [J].
SMART, RSC .
MINERALS ENGINEERING, 1991, 4 (7-11) :891-909