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The dissolution of synthetic Na-boltwoodite in sodium carbonate solutions

机译:碳酸钠溶液中合成Na-Boltwoodite的溶解

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摘要

Uranyl silicates such as uranophane and Na-boltwoodite appear to control the solubility of uranium in certain contaminated sediments at the US Department of Energy Hanford site [Liu, C., Zachara, J.M., Qafoku, O., McKinley, J.P., Heald, S.M., Wang, Z. 2004. Dissolution of uranyl microprecipitates in subsurface sediments at Hanford Site, USA. Geochim. Cosmochim. Acta 68, 4519– 4537.]. Consequently, the solubility of synthetic Na-boltwoodite, Na(UO2)(SiO3OH) • 1.5H2O, was determined over a wide range of bicarbonate concentrations, from circumneutral to alkaline pH, that are representative of porewater and groundwater compositions at the Hanford site and calcareous environments generally. Experiments were open to air. Results show that Na-boltwoodite dissolution was nearly congruent and its solubility and dissolution kinetics increased with increasing bicarbonate concentration and pH. A consistent set of solubility constants were determined from circumneutral pH (0 added bicarbonate) to alkaline pH (50 mM added bicarbonate). Average log Kosp = 5:86 ± 0.24 or 5.85 ± 0.0.26; using the Pitzer ion-interaction model or Davies equation, respectively. These values are close to the one determined by [Nguyen, S.N., Silva, R.J., Weed, H.C., Andrews, Jr., J.E., 1992. Standard Gibbs free energies of formation at the temperature 303.15 K of four uranyl silicates: soddyite, uranophane, sodium boltwoodite, and sodium weeksite. J. Chem. Thermodynamics 24, 359–376.] under very different conditions (pH 4.5, Ar atmosphere).
机译:铀酰硅胶如脲烷烷和Na-Boltwoodite似乎可以控制铀在美国能源部Hanford遗址的某些受污染沉积物中的溶解度[刘,C.,Zachara,JM,QAFoku,O.,McKinley,JP,Head,SM ,王,Z.2004.美国汉福德地产沉积物中铀酰微浸润物的溶解。 Geochim。 cosmochim。 ACTA 68,4519-4537.]。因此,合成Na-Boltwoodite,Na(UO 2)(SiO 3 OH)·1.5H 2 O的溶解度在各种碳酸氢盐浓度下,从癌含量与碱性pH值,即在Hanford遗址上的沉皮水和地下水组合物中的含量和地下水组合物钙质环境一般。实验对空气开放。结果表明,Na-Boltwoodite溶解几乎是一致的,其溶解性和溶解动力学随着碳酸氢盐浓度和pH的增加而增加。从呈圆周pH(0加入碳酸氢盐)至碱性pH(加入50mM加入的碳酸氢盐)确定一致的一致溶解度常数。平均日志KOSP = 5:86±0.24或5.85±0.0.26;使用Pitzer离子交互模型或Davies方程式。这些值接近[Nguyen,Sn,Silva,RJ,杂草,HC,Andrews,Jr.,JE,1992.标准Gibbs在四个铀酰硅酸盐温度下的形成:SODDDYITE,脲烷,培养型玻璃石和钠的钠。 J.Chem。热力学24,359-376。]在非常不同的条件下(pH 4.5,AR气氛)。

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