EXPERIMENTAL-STUDY AND MODELING OF THE U(VI)-FE(OH)(3) SURFACE PRECIPITATION COPRECIPITATION EQUILIBRIA

被引:112
作者
BRUNO, J [1 ]
DEPABLO, J [1 ]
DURO, L [1 ]
FIGUEROLA, E [1 ]
机构
[1] UNIV POLITECN CATALUNYA,ETSEIB,DEPT ENGN QUIM,E-08028 BARCELONA,SPAIN
关键词
D O I
10.1016/0016-7037(95)00243-S
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
The kinetics and thermodynamics of the coprecipitation of U(VI) with Fe(III) oxyhydroxides have been studied under controlled laboratory conditions, by means of chemical solution and spectroscopic techniques. The monitoring of uranium concentration after the simultaneous precipitation of Fe(III) and U(VI) from a homogeneous solution indicates that a fast and quantitative sorption of uranium on the Fe(IlI) oxyhydroxide surface occurs. This is followed by the gradual release of a part of the uranium from the solid phase which can be attributed to a structural rearrangement of the solid surface. Equilibrium uranium concentrations are attained after fifteen days of contact. Several surface complexation models are tested to model the behavior of the system and a simple thermodynamic approach has been proposed in order to describe this post-adsorption phenomena. A conditional solubility constant for the uranium limiting phase is defined as K-so* = K-so.chi, where K-so is the solubility constant for the individual solid phase and chi stands for the molar fraction of the uranium in the bulk of the solid. Treatment of data obtained at different U(VI) to Fe(III) initial concentration ratios and at fixed pH value has allowed us to propose the surface precipitation of schoepite on Fe(III) oxyhydroxide as the uranium solubility limiting phase. It has been shown that the behavior of the system can be equally described by both surface complexation and conditional solubility approaches. However, the surface complexation modelling requires the knowledge of the surface properties of the solid. The much simpler coprecipitation approach is only based on mass balances and stoichiometric relationships, which can be a useful predictive tool for the trace metal concentrations in natural systems.
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页码:4113 / 4123
页数:11
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