Robust determination of low Ti contents in zircon using LA–ICP–MS/MS with NH3 reaction gas†

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Junlong Niu, Shitou Wu, Yueheng Yang, Hao Wang, Chao Huang, Lei Xu and Liewen Xie
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Abstract

The Ti-in-zircon thermometer is widely used in geoscience for constraining the temperatures of geological settings. Precise and accurate determination of Ti contents (∼1–10 μg g−1) in zircon is a prerequisite for the application of this thermometer; however, traditional laser ablation–single quadrupole–inductively coupled plasma–mass spectrometry (LA–SQ–ICP–MS) analysis of Ti contents in zircon is challenging due to the low abundance of the interference-free isotope of 49Ti (isotope abundance: 5.51%), resulting in poor precision (>30%, 2RSD), in particular for the high spatial resolution (laser spot size <20 μm) analysis. We have developed a robust technique for determining low Ti contents in zircon using LA–ICP–MS/MS with NH3 as the reaction gas. Using an iCAP TQ ICP–MS/MS instrument (Thermo Scientific, USA), high-purity NH3 was a more effective reaction gas than the commonly used 1 : 9 NH3 : He mixture gas, and a three-fold improvement in sensitivity was achieved using an N2 flow rate of 5.0 mL min−1. The reaction products of Ti, Ca, and Zr with NH3 were identified over a mass range of 40 to 160 amu. The reaction product 48Ti(14N1H)(14N1H3)4 (a mass shift of +83, expressed as (48+83)Ti) was measured to separate 48Ti+ from 48Ca+ and 96Zr2+. Interfering ions 48Ca+ and 96Zr2+ have low reaction rates (∼0.0046% and ∼0.07%) at a mass shift of +83, and corrections are not required for glass reference materials and zircon samples. Five zircon reference materials with Ti contents of 2.5–5.0 μg g−1 were analysed, and the analytical precision was better than 10%. Compared with the single quadrupole (SQ) mode, our method is more robust for determining low Ti contents in zircon at high spatial resolutions (laser spot size <20 μm), making it useful for the analysis of complex zircon grains, e.g., metamorphic zircon.

Abstract Image

利用 LA-ICP-MS/MS 与 NH3 反应气体† 对锆石中的低钛含量进行可靠测定
锆石中的钛温度计被广泛应用于地球科学领域,以确定地质环境的温度。然而,传统的激光烧蚀-单四极杆-电感耦合等离子体质谱(LA-SQ-ICP-MS)分析锆石中的钛含量具有挑战性,因为无干扰同位素 49Ti 的丰度较低(同位素丰度:5.51%),导致分析精度较低(30%,2RSD),尤其是在高空间分辨率(激光光斑尺寸为 20 μm)分析中。我们开发了一种稳健的技术,利用以 NH3 为反应气体的 LA-ICP-MS/MS 测定锆石中的低 Ti 含量。使用 iCAP TQ ICP-MS/MS 仪器(Thermo Scientific,美国),高纯度 NH3 是比常用的 1 : 9 NH3 :使用 5.0 mL min-1 的 N2 流速,灵敏度提高了三倍。钛、钙和锆与 NH3 的反应产物在 40 至 160 amu 的质量范围内得到了鉴定。测量了反应产物 48Ti(14N1H)(14N1H3)4(质量移动为 +83,表示为 (48+83)Ti),以将 48Ti+ 从 48Ca+ 和 96Zr2+ 中分离出来。干扰离子 48Ca+ 和 96Zr2+ 在质量偏移为 +83 时的反应速率较低(分别为 ∼0.0046% 和 ∼0.07%),因此无需对玻璃参考材料和锆石样品进行校正。分析了五种 Ti 含量为 2.5-5.0 μg g-1 的锆石参考材料,分析精度优于 10%。与单四极杆(SQ)模式相比,我们的方法在高空间分辨率(激光光斑尺寸<20 μm)条件下测定锆石中的低Ti含量更为可靠,因此适用于复杂锆石晶粒(如变质锆石)的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.20
自引率
26.50%
发文量
228
审稿时长
1.7 months
期刊介绍: Innovative research on the fundamental theory and application of spectrometric techniques.
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