MAGNETITE SOLUBILITY AND PHASE-STABILITY IN ALKALINE MEDIA AT ELEVATED-TEMPERATURES

被引:53
作者
ZIEMNIAK, SE
JONES, ME
COMBS, KES
机构
[1] Knolls Atomic Power Laboratory, Schenectady, 12301-1072, New York
关键词
MAGNETITE; IRON OXIDE; FERROUS AND FERRIC ION HYDROLYSIS; PHOSPHATOCOMPLEXING; EQUILIBRIUM CONSTANT; PRESSURIZED WATER; HYDROTHERMAL SOLUTIONS; CORROSION;
D O I
10.1007/BF00973442
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A platinum-lined, flowing autoclave facility was used to investigate the solubility behavior of magnetite (Fe3O4) in alkaline sodium phosphate and ammonium hydroxide solutions between 21 and 288 degrees C. Measured iron solubilities were interpreted via a Fe(II)/Fe(III) ion hydroxo-, phosphato-, and ammino-complexing model and thermodynamic functions for these equilibria were obtained from a least-squares analysis of the data. A total of 14 iron ion species were fitted. Complexing equilibria are reported for 8 new species: Fe(OH)(HPO4)(-), Fe(OH)(2)(HPO4)(2-), Fe(OH)(3)(HPO4)(2-), Fe(OH)(NH3)(+), Fe(OH)(2)(PO4)(3-), Fe(OH)(4)(HPO4)(3-), Fe(OH)(2)(H2PO4)(-), and Fe(OH)3(H2PO4)(-). Ar elevated temperatures, hydrolysis and phosphato complexing tended to stabilize Fe(III) relative to Fe(II), as evidenced by free energy changes fitted to the oxidation reactions. Fe(OH)(3)(-) + H2O reversible arrow Fe(OH)(4)(-) + (1/2)H-2(g) Fe(OH)(2)(HPO4)(2-) + H2O reversible arrow Fe(OH)(3)(HPO4)(2-) + (1/2)H-2(g) For temperatures below 83 degrees C and for a dissolved hydrogen concentration of 234 mu mol-kg(-1), the activity of ferrous iron in aqueous solution is controlled by a hydrous Fe(II) oxide solid phase rather than magnetite.
引用
收藏
页码:837 / 877
页数:41
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