CEA, Nuclear Energy Division, CEA Marcoule, Research Department of Mining and Fuel Recycling Processes , DEN/DMRC , BP 17171, 30207 Bagnols-sur-Cèze , France.
ICSM, CEA, CNRS, ENSCM , Univ Montpellier , Site de Marcoule, Bât. 426, BP 17171, 30207 Bagnols-sur-Cèze , France.
Inorg Chem. 2018 Aug 6;57(15):9393-9402. doi: 10.1021/acs.inorgchem.8b01390. Epub 2018 Jul 9.
A multiparametric study of the hydrothermal synthesis of ThSiO, thorite, was performed with the aim of determining the most efficient conditions to form single-phase samples. Among the experimental parameters examined, significant effects were found for the concentration of reactants in the starting mixture, pH of the reactive media, and temperature of the hydrothermal process. Such parameters affected both the rate of formation of thorite and the morphology of the final products synthesized. Precipitation of pure ThSiO was obtained over a wide range of pH on going from C = 0.3 mol L to pH 9.1 with a yield of over 95%. Temperatures higher than 160 °C favor the formation of thorite. Finally, thorium and silicon concentrations above 2.1 × 10 mol L are required to obtain pure thorium silicate.
采用水热合成法对钍硅氧(thorite)进行了多参数研究,目的是确定形成单相样品的最有效条件。在所研究的实验参数中,反应物在起始混合物中的浓度、反应介质的 pH 值和水热过程的温度对钍硅氧的形成速率和最终产物的形貌有显著影响。在 pH 值为 9.1 时,从 C = 0.3 mol/L 到 pH 值为 9.1 的范围内,通过沉淀可获得纯 ThSiO,产率超过 95%。温度高于 160°C 有利于形成钍硅氧。最后,需要将钍和硅的浓度提高到 2.1×10 mol/L 以上,才能获得纯的钍硅酸盐。