ISSN: 1003-6326
CN: 43-1239/TG
CODEN: TNMCEW

Vol. 20    No. 10    October 2010

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E−pH diagram of ZnS-H2O system during
high pressure leaching of zinc sulfide
MU Wang-zhong(牟望重), ZHANG Ting-an(张廷安), LIU Yan(刘 燕), GU Yan(古 岩),
DOU Zhi-he(豆志河), LÜ Guo-zhi(吕国志), BAO Li(鲍 丽), ZHANG Wei-guang(张伟光)
(Key Laboratory of Ecological Utilization of Multi-metal Intergrown Ores of Ministry of Education,
School of Materials and Metallurgy, Northeastern University, Shenyang 110819, China
)
Abstract: The values of GΘ, EΘ or pH from 110 to 160 °C were calculated and the relevant potential expressions were obtained.    E−pH diagrams of ZnS-H2O system at oxygen partial pressure of 0.8 MPa, ionic activity of 1.0 and different temperatures were drawn through thermodynamical calculation. With the temperature increasing, the stable regions of S and Zn(II) in the E−pH diagrams become gradually larger, but the amplification decreases over 150 °C. The impacts of leaching parameters, such as temperature, liquid to solid ratio, initial acidic concentration, leaching time, oxygen partial pressure and stirring speed on the leaching rate of Zn (II) and conversion rate of S in the single factor of high pressure leaching experiment of ZnS in autoclave, were studied. The leaching residue was examined by X-ray fluorescence (XRF) chemical composition identification and X-ray diffraction (XRD) phase identification, and the content of the leaching solution was tested by inductively coupled plasma-atomic emission spectrometry (ICP). The experimental results indicate that the leaching rate of zinc increases from 60.05% to 97.85% and the conversion rate of sulfur increases from 38.90% to 80.92% with the temperature increasing from 110 °C to 150 °C, 5:1 of liquid-to-solid ratio, 150 g/L of initial acidic concentration, 120 min of leaching time, 0.8 MPa of oxygen partial pressure, and 480 r/min of stirring speed, which tend to be stable over 150 °C. The experimental results correspond with theoretical calculation.
Key words: zinc sulfide; high pressure leaching; ZnS-H2O system; E−pH diagram
Superintended by The China Association for Science and Technology (CAST)
Sponsored by The Nonferrous Metals Society of China (NFSOC)
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