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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Hydrolysis of trivalent plutonium and solubility of Pu(OH)(3) (am) under electrolytic reducing conditions
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Hydrolysis of trivalent plutonium and solubility of Pu(OH)(3) (am) under electrolytic reducing conditions

机译:电解还原条件下三价p的水解和Pu(OH)(3)(am)的溶解度

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The aim of this work is to determine the solubility product of plutonium hydroxide under reducing conditions and to ascertain the stability of Pu(OH)(3) (am) in water. Hydrolysis of Pu(III) and solubility of Pu(OH)(3) (am) were investigated at a constant ionic strength of 0.1 M NaClO4. Coulometric titration was adopted to adjust the pH of plutonium solutions, during which the electrolytic reducing conditions maintained the oxidation state of Pu(III). Chemical speciation for dissolved plutonium was investigated using sensitive spectrophotometry coupled with a liquid waveguide capillary cell. The spectroscopic investigations indicated that dissolved Pu(IV), Pu(V), and Pu(VI) species were ignorable under these experimental conditions. The absorbance of Pu3+ ions decreased due to hydrolysis of Pu(III) but the absorbance of Pu(III) hydrolysis species was not distinguishable. The formation constant for the first hydrolysis species (log * beta(1)) determined in the present study is-6.62 +/- 0.25. The non-crystalline structure of the plutonium precipitate was observed through X-ray diffraction. The solubility product of Pu(OH)(3) (am), log * K'(s,0) is determined to be 15.23 +/- 0.50. These results indicate a stronger tendency for the hydrolysis of Pu(III) and higher stability (lower solubility) of Pu(OH)(3) (am) compared to Am(III).
机译:这项工作的目的是确定还原条件下氢氧化p的溶解度,并确定Pu(OH)(3)(am)在水中的稳定性。在0.1 M NaClO4恒定离子强度下研究了Pu(III)的水解和Pu(OH)(3)(am)的溶解度。采用电量滴定法调节adjust溶液的pH,在此过程中,电解还原条件保持了Pu(III)的氧化态。使用灵敏分光光度法结合液体波导毛细管池研究了溶解p的化学形态。光谱研究表明,在这些实验条件下,可溶的Pu(IV),Pu(V)和Pu(VI)种类可忽略。由于Pu(III)的水解,Pu3 +离子的吸光度降低,但无法区分Pu(III)水解物质的吸光度。在本研究中确定的第一个水解物质(log * beta(1))的形成常数为-6.62 +/- 0.25。通过X射线衍射观察到precipitate沉淀物的非晶态结构。 Pu(OH)(3)(am)的溶解度乘积log * K'(s,0)确定为15.23 +/- 0.50。这些结果表明,与Am(III)相比,Pu(III)的水解趋势更强,Pu(OH)(3)(am)的稳定性更高(溶解度更低)。

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