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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Sorption and desorption of uranium(VI) on silica: experimental and modeling studies
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Sorption and desorption of uranium(VI) on silica: experimental and modeling studies

机译:铀(VI)在二氧化硅上的吸附和解吸:实验和模型研究

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Sorption of U(VI) on silica was investigated as functions of contact time, pH, ionic strength, solid-to-liquid ratio (m/V) and U(VI) concentration by using a batch] experimental method. It was found that sorption kinetics is relatively rapid and 1h is sufficient to reach sorption steady state. The sorption of U(VI) increases from about 0 to 100% with pH over the range of 2.8 to 5.8. Sorption isotherms were collected at pH 4.3 and three ionic strengths (0.01, 0.1 and 0.5 mol/L NaCl). It was found that the sorption of U(VI) increases with decreasing ionic strength at pH 4.3 and relatively low U(VI) concentrations. The sorption of U(VI) with variable m/V at pH 4.2 and initial U(VI) concentration of 1.03 x 10(-4) mol/L indicated that the U(VI) distribution coefficient increases slightly with the increase of m/V over the range of 1 to 100 g/L. Description was performed by dilution of aqueous U(VI) concentration for desorption isotherms and by pH adjustment of the suspension for pH desorption edges. It was found that sorption/desorption is reversible with respect to aqueous pH values, whereas a hysteresis was found for desorption isotherms. All equilibrium data were fitted with a surface complexation model. A mononuclear inner-sphere surface complex SOUO21 and a polynuclear surface complex SO(UO2)(3) (OH)(5) were used to quantitatively interpret sorption of U(VI) on silica.
机译:通过使用一批实验方法,研究了U(VI)在二氧化硅上的吸附作用,它是接触时间,pH,离子强度,固液比(m / V)和U(VI)浓度的函数。发现吸附动力学相对较快,并且1h足以达到吸附稳态。当pH值在2.8至5.8范围内时,U(VI)的吸附量从0%增至100%。在pH 4.3和三种离子强度(0.01、0.1和0.5 mol / L NaCl)下收集吸附等温线。发现在pH 4.3和相对较低的U(VI)浓度下,U(VI)的吸附随着离子强度的降低而增加。在pH 4.2下m / V可变的U(VI)的吸附和初始U(VI)浓度为1.03 x 10(-4)mol / L表明,U(VI)的分布系数随m / V的增加而略有增加。 V在1至100 g / L的范围内。通过稀释水溶液的U(VI)浓度进行解吸等温线,并通过调整悬浮液的pH值进行解吸边沿来进行描述。已经发现,相对于水性pH值,吸附/解吸是可逆的,而对于解吸等温线则发现有滞后现象。所有平衡数据都拟合了表面络合模型。单核内球表面配合物SOUO21和多核表面配合物SO(UO2)(3)(OH)(5)用于定量解释U(VI)在二氧化硅上的吸附。

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