Determination of 73 trace impurity elements in high purity lutetium oxide by radio frequency glow discharge mass spectrometry
JIANG Wei1,2, SUN Na1,2, XU Na*1,2, LI Ping1,2, XIE Min1,2
1. National Center of Quality Testing and Inspection for Tungsten and Rare Earth Products,Ganzhou 341000,China; 2. JiangXi Institute of Tungsten and Rare Earth,Ganzhou 341000,China
Abstract:The existing method for the detection of lutetium oxide cannot cover the detection of whole elements, and also cannot meet the determination requirements of super trace elements. Therefore, a method for the determination of 73 impurity elements in high-purity lutetium oxide by pressed powder pellet-radio frequency glow discharge mass spectrometry(RF-GD-MS) was established. The intensity of matrix signal was controlled to 0.30 nA or higher. The flow rate of discharge gas was 0.8 mL/min, the radio frequency power was 38 W, and the pre-sputtering time was 20 min. RF-GD-MS was applied for the determination of 73 trace impurity elements in high-purity lutetium oxide samples, and the found results were compared with those obtained by direct current glow discharge mass spectrometry (DC-GD-MS). It was found that the determination results of two methods had good consistency when the content of impurity elements was in range of 0.01-2 mg/kg. In other words, the measurement results of impurity elements in same sample were not affected by the light source, i.e., direct current or radio frequency. But RF-GD-MS had higher sensitivity and lower limit of detection compared with DC-GD-MS. The limit of detection of some impurity elements could reach 0.001 mg/kg for RF-GD-MS method, while the limit of detection for DC-GD-MS could only reach 0.05 mg/kg. The limits of detection were in range of 0.001-0.39 mg/kg, and the limits of quantification were in range of 0.005-1.30 mg/kg. The proposed method was applied to the determination of 73 trace impurity elements in high-purity lutetium oxide samples. The results showed that the relative standard deviations(RSD,n=7) were within 10% for the impurity elements with content (mass fraction, similarly hereinafter) higher than 1 mg/kg. For the impurity elements with content in range of 0.1-1 mg/kg, the RSDs were within 20%. For the impurity elements with content lower than 0.1 mg/kg, the RSDs were within 30%. Some representative elements in high-purity lutetium oxide samples were determined according to the experimental method. The found results were compared with those obtained by inductively coupled plasma mass spectrometry (ICP-MS) in national standard methods (GB/T 12690 series) and GB/T 18115.15-2010. For the elements with content of 1 mg/kg, the determination results of two methods were consistent.
蒋威, 孙娜, 徐娜, 李平, 谢敏. 射频辉光放电质谱法测定高纯氧化镥中73种痕量杂质元素[J]. 冶金分析, 2023, 43(1): 16-24.
JIANG Wei, SUN Na, XU Na, LI Ping, XIE Min. Determination of 73 trace impurity elements in high purity lutetium oxide by radio frequency glow discharge mass spectrometry. , 2023, 43(1): 16-24.
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