首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Microwave-assisted dissolution of highly refractory dysprosium-titanate (Dy2TiO5) followed by chemical characterization for major and trace elements using ICP-MS, UV-visible spectroscopy and conventional methods
【24h】

Microwave-assisted dissolution of highly refractory dysprosium-titanate (Dy2TiO5) followed by chemical characterization for major and trace elements using ICP-MS, UV-visible spectroscopy and conventional methods

机译:使用ICP-MS,UV可见光谱和常规方法,微波辅助溶解高度耐冷凝镝 - 钛酸盐(DY2TiO5),然后进行主要和微量元素的化学表征

获取原文
获取原文并翻译 | 示例
           

摘要

Dysprosium-titanate (Dy2TiO5), being highly refractory in nature, its dissolution using conventional (hot-plate and fusion) methods is very difficult. Hence, for quantitative dissolution, a microwave method has been developed. The instrumental parameters and amount of acids has been optimized. Studies have been carried out for precise and accurate estimation of major elements such as Dy, Ti, and Mo. An anion exchange column has been used to separate Mo, Dy and Ti. Analysis of these elements has been carried out using ICP-MS, UV-visible spectroscopy, and gravimetric methods. In the developed method, precipitation of molybdenum and dysprosium has been done using a-benzoine oxime, and oxalic acid respectively. These precipitates have been converted into their respective oxide form. The purities of these oxides (Dy2O3 and MoO3) have been determined using ICP-MS. The method has been validated using synthetic samples where it is found that accuracy of Dy and Mo is 99 % and precision is 1 (%RSD). The titanium has been determined using UV-visible spectroscopy with accuracy 98 % and precision 2 (%RSD).
机译:镝 - 钛酸镝(DY2TIO5)本质上具有高度耐火材料,其常规(热板和融合)方法的溶解非常困难。因此,为了定量溶解,已经开发了微波方法。毒液参数和酸的量已经优化。已经进行了研究,精确准确地估算了Dy,Ti和Mo。Anion Exchange栏已被用于分离Mo,Dy和Ti。使用ICP-MS,UV可见光谱和重量法进行这些元件的分析。在发育方法中,使用苯并肟和草酸进行钼和镝的沉淀。这些沉淀物已被转化为它们各自的氧化物形式。已经使用ICP-MS确定了这些氧化物(DY2O3和MOO3)的纯度。使用合成样品验证了该方法,其中发现Dy和Mo的精度是& 99%和精度是& 1(%RSD)。钛使用UV可见光谱法测定,精度& 98%和精度&lt 2(%RSD)。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号