Activities of components in zinc-iron-sulfur system at 1100 and 1200 K
Citation
S. Itoh et A. Kikuchi, Activities of components in zinc-iron-sulfur system at 1100 and 1200 K, J JPN METAL, 63(4), 1999, pp. 448-453
Categorie Soggetti
Metallurgy
Journal title
JOURNAL OF THE JAPAN INSTITUTE OF METALS
SICI code
0021-4876(199904)63:4<448:AOCIZS>2.0.ZU;2-S
Abstract
In order to determine the activities of components in the zinc-iron-sulfur
ternary system, activity measurement of the iron-zinc binary system was car
ried out by employing an isopiestic method at temperatures of 1100 and 1200
K. Then the activities of components in the ternary system were calculated
by applying the Gibbs-Duhem equations to the phase relation of metal-sulfi
de equilibrium. These data are of fundamental importance for discussing a n
ew zinc distillation process with environmental consciousness proposed by t
he authors. In this process, zinc sulfide is directly reduced to zinc vapor
with metallic iron; fixing sulfur as pyrrhotite. The results are summarize
d as follows:
(1) In the alpha-solid solution of the iron-zinc alloy, both the activities
of iron and zinc exhibited considerable positive deviations from Raoult's
law. Both the activities of iron and zinc behave more ideal with increasing
temperature. Activity coefficients were expressed by the following equatio
ns in the temperature range 1100 to 1200 K.
RTln y(Zn(I))/kJ. mol(-1) =23.00(1-N-Zn)(2)-3.642
RTln gamma Fe/kJ.mol(-1) =23.00(1-N-Fe)(2)
Raoultian activity coefficients of zinc at infinite dilution, gamma(Zn(I))(
o,) were obtained as 8.3 and 7.0 at 1100 and 1200 K, respectively.
(2) Relation between the equilibrium sulfur partial pressure and the compos
ition of the condensed phase was determined. Using the equilibrium sulfur p
artial pressure and the activity of iron, the activity of FeS was obtained
from the equilibrium constant of FeS formation reaction. Then the activity
of ZnS was calculated by the Gibbs-Duhem relation.
(3) It was found from these results that the activity of FeS in the pyrrhot
ite which will be formed in the new zinc distillation process, can be regar
ded as almost unity. Zinc content in the pyrrhotite is therefore expected t
o be negligibly small, and the pyrrhotite can be utilized as a source of su
lfuric acid or fuel for smelting processes for metals such as copper, nicke
l.