Abstract:The presence of trace selenium (Se) and cadmium (Cd) in K417 alloy can severely affect its mechanical property and durability. Therefore, the accurate determination of Se and Cd contents is of great significance. During the determination of Se and Cd by inductively coupled plasma mass spectrometry (ICP-MS), the interference of 64Ni16O+ with 80Se+ and 95Mo16O+ with 111Cd+ will influence on the determination results. In experiments, the sample was dissolved with hydrochloric acid-nitric acid-hydrofluoric acid in boiling water bath. The mass-to-charge ratio (m/z) of the first-order mass filter (Q1) was set as 80 and 111 at the reaction mode of triple quadrupole (MS/MS) filling with O2. Then O2 with high reactivity was injected into collision/reaction cell (CCT). 80Se+, 95Mo16O+ and 94Zr16O1H+ could react with O2 to form 80Se16O+, 95Mo16O16O+ and 94Zr16O16O1H+, respectively. Meanwhile, 64Ni16O+ and 111Cd+ could not react with O2. Finally, the m/z of the second-order mass filter (Q2) was set as 96 and 111, respectively. 80Se16O+ and 111Cd+ were passed and detected by the mass shift method and on mass method, which avoided the mass spectrum interference. Based on these results, a method for the determination of Se and Cd in K417 alloy by triple quadrupole inductively coupled plasma mass spectrometry (ICP-MS/MS) was established. The flow rate of O2 was optimized and selected at 0.3 mL/min for Se and 0.9 mL/min for Cd, respectively. Meanwhile, 6% (volume fraction) isopropanol was added into internal standard solution as the matrix modifier to enhance the experimental sensitivity and stability. The linear range was 0.018-100.0 μg/L for Se and 0.001-5.0 μg/L for Cd. The linear correlation coefficients were 0.999. The limit of detection for Se and Cd was 0.018 μg/g and 0.000 8 μg/g, and the limit of quantification was 0.058 μg/g and 0.002 7 μg/g, respectively. The contents of Se and Cd in certified reference material of high temperature alloy were determined according to the experimental method, and the found results were consistent with the certified values. The contents of Se and Cd in K417 alloy sample were determined, and the found results were basically consistent with those obtained by the glow discharge mass spectrometry (GD-MS). The relative standard deviation (RSDs, n=6) was 2.2% and 14.9%, respectively.
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