ICP-MS测定某离子型稀土矿中离子相稀土总量

    Determination of Total Ion-phase Rare Earth Content in an Ionic-adsorption Rare Earth Ore by ICP-MS

    • 摘要: 【目的】目前国内缺乏离子相稀土总量检测的国家标准,普遍采用行业标准进行检测。针对该标准未明确浸取温度等关键参数,不能准确、科学有效地评价离子相稀土价值的问题,以福建某离子型稀土矿为研究对象,通过优化浸取条件,结合电感耦合等离子体质谱法(ICP-MS)建立离子相稀土总量的测定方法。【方法】本研究系统考查浸取剂、振荡时间、振荡频率及浸取温度对稀土浸出效果的影响,最终确定该样品在20 ℃、160 r/min条件下振荡浸取1.5 h,可有效实现离子相稀土的浸出,浸出液采用电感耦合等离子体质谱法(ICP-MS)进行测定。【结果】通过方法精密度和加标回收实验,得到方法精密度(RSD,n=12)为4.00%~4.29%,方法准确度(加标回收率)为95.3%~102.3%。【结论】建立的离子相稀土总量测定方法操作简便、快速高效,精密度与准确性均符合检测规范,适用于该矿日常检测离子相稀土含量的测定,为该矿区离子型稀土矿的储量评估、开发利用及工艺优化提供科学的数据支撑。

       

      Abstract: Objective At present, there is no national standard for the determination of total ion-adsorbed rare earth elements in China, and relevant industry standards are generally adopted for detection. However, these standards fail to specify key parameters such as leaching temperature, which makes it impossible to evaluate the value of ion-adsorbed rare earth elements accurately, scientifically and effectively. To address this problem, taking an ion-adsorbed rare earth ore from Fujian Province as the research object, a method for determining the total amount of ion-adsorbed rare earth elements was established by optimizing leaching conditions combined with inductively coupled plasma mass spectrometry (ICP-MS). Method In this study, the effects of leaching agent type, oscillation time, oscillation frequency and leaching temperature on the leaching efficiency of rare earth elements were systematically investigated. Finally, it was determined that oscillating leaching of the sample at 20 ℃ and 160 r/min for 1.5 h could effectively leach the ion-adsorbed rare earth elements, and the leachate was then determined by ICP-MS. Result Through the tests of method precision and standard addition recovery, the results showed that the precision (RSD, n = 12) of the method ranged from 4.00% to 4.29%, and the accuracy (standard addition recovery rate) was between 95.3% and 102.3%. The established method for determining the total amount of ion-adsorbed rare earth elements is simple to operate, rapid and efficient, with its precision and accuracy both meeting the detection specifications. Conclusion It is suitable for the routine determination of ion-adsorbed rare earth content in the ores of this mining area, providing scientific data support for the reserve assessment, development and utilization, as well as process optimization of the ion-adsorbed rare earth ores in the mining area.

       

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