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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Electrochemical dissolution of simulated 'white inclusions' in nitric acid. Linear voltammetry study with Mo, Re, Ru metals and their alloys electrodes
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Electrochemical dissolution of simulated 'white inclusions' in nitric acid. Linear voltammetry study with Mo, Re, Ru metals and their alloys electrodes

机译:模拟的“白色夹杂物”在硝酸中的电化学溶解。 Mo,Re,Ru金属及其合金电极的线性伏安法研究

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The process of electrochemical dissolution of pure Mo, Re and Ru metals, as well as their alloys 52.5 at. % Mo - 47.5 at. % Re and 90 at. % Mo - 10 at. % Ru in 0.5-6.0 M HNO3 was studied using the linear voltammetry technique. The dissolution potentials of the pure metals were found to increase front 0.39 to 0.48 V/SCE (Mo), from 0.7 to 0.81 V/SCE (Re) and from 1.15 to 1.25 V/SCE (Ru) with the augmentation of HNO3 concentration in the electrolyte. The dissolution potentials of the alloys 52.5 at. % Mo + 47.5 at. % Re and 90 at. % Mo + 10 at. % Ru were found to change from 0.49 to 0.58 (Mo-Re) and from 0.92 to 1.09 (Mo-Ru) when HNO3 concentration in the electrolyte increased from 0.5 to 6.0 M. The secondary passivation of Mo-containing electrodes was observed in the solutions 2.0-6.0 M HNO3 at the potentials front 1.4 to 1.9 V/SCE. decreasing their dissolution rate in this range of potentials. The maximum electrochemical dissolution rate constants of pure Mo, Re, Ru metals and Mo-Re, Mo-Ru alloys have been estimated using the data of linear voltammetry. The obtained values (1.85-2.20 g/cm(2)h for Mo-Re and 0.58-0.64 g/cm(2)h for Mo-Ru alloys electrochemical dissolution) are found to be thousand times greater, than reported for the process of chemical dissolution of corresponding alloys in boiling HNO3. [References: 27]
机译:纯Mo,Re和Ru金属及其合金52.5 at。的电化学溶解过程。钼-47.5 at。 %Re和90 at。 %Mo-10 at。使用线性伏安法研究了0.5-6.0 M HNO3中的%Ru。发现随着HNO3浓度的增加,纯金属的溶解势从0.39升高到0.48 V / SCE(Mo),从0.7升高到0.81 V / SCE(Re)和从1.15到1.25 V / SCE(Ru)。电解质。合金的溶解电位为52.5 at。钼+ 47.5 at。 %Re和90 at。 %Mo + 10 at。当电解液中HNO3的浓度从0.5 M增加到6.0 M时,%Ru会从0.49变为0.58(Mo-Re),从0.92变为1.09(Mo-Ru)。解决方案,在1.4至1.9 V / SCE的电位范围内使用2.0-6.0 M HNO3。在此电位范围内降低其溶解速度。使用线性伏安法数据可以估算纯Mo,Re,Ru金属和Mo-Re,Mo-Ru合金的最大电化学溶解速率常数。发现所获得的值(Mo-Re为1.85-2.20 g / cm(2)h,Mo-Ru合金电化学溶解为0.58-0.64 g / cm(2)h)比该方法报道的值大一千倍。合金在沸腾的硝酸中的化学溶解过程[参考:27]

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