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Preparation of Iodine-129 Standard Solutions for Triple Quadrupole ICP-MS

机译:制备用于三重四极杆ICP-MS的Iodine-129标准溶液

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Accelerator mass spectrometry (AMS) has been recognized as the most sensitive analytical method for the isotopic ratio 129I/127I, and its limit of detection reaches as low as 129I/127I 2×10-14. Recently triple quadrupole ICP-MS (ICP-MS/MS) is becoming an alternative analytical method for the rather high isotopic ratio range, 129I/127I 10-8. Absolute ICP-MS/MS measurements require reliable standard materials for calibration. In this study, 129I standard solutions “tRIC-1” and “tRIC-2” were prepared from a laboratory-stored 129I solution and the 129I radioactivity standard of NIST SRM 4949d, respectively. The isotopic ratios of 129I/127I were determined to be (6.54 ± 0.23) × 10-5 for tRIC-1 and (3.41 ± 0.12) × 10-6 for tRIC-2 from the measurement results of AMS (129I/127I ratio) and ICP-MS/MS (127I concentration). From the 129I and 127I concentrations each calibration line in ICP-MS/MS was used to calculate the 129I/127I isotopic ratios which were (6.51 ± 0.26) × 10-5 for tRIC-1 and (3.34 ± 0.13) × 10-6 for tRIC-2. These isotopic ratios of 129I/127I agree with the value from AMS. It was proved that the two home-made standard solutions could be measured using the latest ICP-MS/MS and reliable isotopic ratios of 129I/127I were obtained.
机译:加速器质谱法(AMS)被认为是同位素比129I / 127I的最灵敏分析方法,其检出限低至129I / 127I <2×10-14。最近,对于相当高的同位素比范围129I / 127I> 10-8,三重四极杆ICP-MS(ICP-MS / MS)成为替代分析方法。绝对ICP-MS / MS测量需要可靠的标准材料进行校准。在这项研究中,分别从实验室存储的129I溶液和NIST SRM 4949d的129I放射性标准制备了129I标准溶液“ tRIC-1”和“ tRIC-2”。根据AMS的测量结果(129I / 127I比),129I / 127I同位素比对于tRIC-1为(6.54±0.23)×10-5,对于tRIC-2为(3.41±0.12)×10-6。 ICP-MS / MS(127I浓度)。根据129I和127I浓度,使用ICP-MS / MS中的每个校准线来计算129I / 127I同位素比,其中tRIC-1的同位素比为(6.51±0.26)×10-5,而(RIC4)为(3.34±0.13)×10-6对于tRIC-2。这些同位素比129I / 127I与AMS的值一致。事实证明,使用最新的ICP-MS / MS可以测量两种自制的标准溶液,并获得了可靠的同位素比129I / 127I。

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