Oxide melt solution calorimetry of sulfides: Enthalpy of formation of sphalerite, galena, greenockite, and hawleyite

被引:40
作者
Deore, S [1 ]
Navrotsky, A [1 ]
机构
[1] Univ Calif Davis, Thermochem Facil & NEAT ORU, Davis, CA 95616 USA
关键词
sulfides; oxide melt solution caloritrietry; enthalpy of formation; sphalerite; galena; greenockite; hawleyite;
D O I
10.2138/am.2006.1921
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Oxidative drop solution calorimetry is being developed as a general method for sulfide thermochemistry. The samples are dropped from room temperature into molten 3Na(2)O.4MoO(3) solvent at 975 K, with oxygen bubbling through the melt to ensure rapid and complete conversion of sulfide to dissolved sulfate. Complete dissolution of sulfides and retention of sulfur in the solvent is documented by furnace tests and visual observation, consistent determination of enthalpy of drop solution, and comparison with previous data for the heat of formation of ZnS, PbS, and CdS. Enthalpies of formation (kJ/mol) from the elements (Delta H-1(0)) are determined for sphalerite (ZnS) (-206.53 +/- 4.03 kJ/mol), galena (PbS) (-98.12 +/- 4.37 kJ/mol), greenockite (hexagonal CdS) (-148.79 +/- 4.13 kJ/mol), and hawleyite (cubic CdS) (-147.65 +/- 4.28 kJ/mol). Thus, hawleyite appears to be energetically very similar to greenockite but possibly slightly metastable by about 1 kJ/mol. The results confirm that oxidative drop solution calormetry in molten sodium molybdate is a viable method for sulfide thermochemistry. It will be most useful for Sulfides with moderate heats of oxidation (e.g., the Fe-S, Co-S, and Ni-S systems), and should be applicable to tertiary Compounds, e.g., the Fe-Ni-S and Ni-Co-S systems, and systems showing large homogencity ranges, as well as to other chalcogenides and pnictides.
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收藏
页码:400 / 403
页数:4
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