Implementation and experience of using methods for analyzing the isotopic composition of Sm and Nd, Rb and Sr in rock samples at the Geoanalitik Center for Collective Use

N. G. Soloshenko, M. V. Streletskaya, M. Chervyakovskaya, D. V. Kiseleva
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Abstract

Research subject. AGV-2 and BHVO-2 geochemical reference materials for studying the Sm, Nd and Rb, Sr isotope systems along with various rocks and mineral samples. Materials and Methods. An analysis of the isotopic composition of Sm, Nd and Rb, Sr was carried out using Neptune Plus and Triton Plus mass spectrometers. Aim. To implement analytical techniques for the isotopic composition of Sm and Nd, Rb, and Sr in various rock and mineral samples using two types of multicollector mass spectrometers – inductively coupled plasma NeptunePlus and thermal ionization TritonPlus (Thermo-Fisher), as well as a description of the procedure of processing experimental data and the experience in using techniques at the “Geoanalitik” shared research facilities of the IGG UB RAS for the period 2015-2023. Results. The analytical techniques implemented included (1) column chromatography using various ion-exchange resins, optimised for the ratio of labour costs/quality of analytical results; (2) the measurement of isotope ratios using two types of mass spectrometers; (3) the correction of mass bias of isotope ratios and the determination of Sm and Nd, Rb, and Sr concentrations by the isotope dilution method using 149Sm+150Nd and 85Rb+84Sr spikes. Testing of the techniques was carried out using the AGV-2 and BHVO-2 geochemical reference materials; their metrological characteristics were presented. When using TritonPlus, the reproducibility (BHVO-2, n=60) of measurements of 143Nd/144Nd, 147Sm/144Nd isotope ratios and Sm and Nd concentrations are ±0.000020, ±0.0004, ±1.3 and ±0.4, respectively; indicators of correctness of determining the ratios 143Nd/144Nd and 147Sm/144Nd – 0.001 and 0.25% and concentrations of Sm and Nd – 2%; the reproducibility (BHVO-2, n=63) of measurements of 87Sr/86Sr, 87Rb/86Sr isotope ratios and concentrations (Rb and Sr) are ±0.0025%, ±1.5%, ±2%, respectively. The uncertainty of a single measurement of the 143Nd/144Nd and 87Sr/86Sr isotope ratio, represented by the standard error of the average single measurement in the sample, does not exceed 0.0025%. Conclusions: the results obtained for the geochemical reference materials are in satisfactory agreement with those provided in the GeoReM database, as well as with the certified values provided by the United States Geological Survey (USGS). The described analytical techniques are used at the “Geoanalitik” shared research facilities of the IGG UB RAS to analyse various rock and mineral samples. The work presents a number of experimental results obtained, which are subsequently used in geochronological applications.
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在集体使用地质分析中心实施岩石样本中 Sm 和 Nd、Rb 和 Sr 同位素组成分析方法并积累经验
研究课题。AGV-2 和 BHVO-2 地球化学参考材料,用于研究 Sm、Nd 和 Rb、Sr 同位素系统以及各种岩石和矿物样品。材料和方法。使用 Neptune Plus 和 Triton Plus 质谱仪分析了 Sm、Nd 和 Rb、Sr 的同位素组成。目的使用两种类型的多收集器质谱仪--电感耦合等离子体 NeptunePlus 和热电离 TritonPlus(Thermo-Fisher)--对各种岩石和矿物样品中的 Sm 和 Nd、Rb 和 Sr 的同位素组成进行分析,并介绍处理实验数据的程序以及 2015-2023 年期间在 IGG UB RAS 的 "Geoanalitik "共享研究设施中使用技术的经验。结果。采用的分析技术包括:(1)使用各种离子交换树脂进行柱层析,并根据人工成本/分析结果质量比进行了优化;(2)使用两种质谱仪测量同位素比;(3)修正同位素比的质量偏差,并使用 149Sm+150Nd 和 85Rb+84Sr 尖峰同位素稀释法测定 Sm 和 Nd、Rb 和 Sr 的浓度。使用 AGV-2 和 BHVO-2 地球化学参考材料对这些技术进行了测试,并介绍了它们的计量特性。使用 TritonPlus 时,143Nd/144Nd、147Sm/144Nd 同位素比值以及 Sm 和 Nd 浓度的测量重现性(BHVO-2,n=60)分别为 ±0.000020、±0.0004、±1.3 和 ±0.4;确定 143Nd/144Nd 和 147Sm/144Nd 比值的正确性指标分别为 0.001%和 0.25%,Sm 和 Nd 的浓度--2%;87Sr/86Sr、87Rb/86Sr 同位素比和浓度(Rb 和 Sr)测量的重现性(BHVO-2,n=63)分别为±0.0025%、±1.5%和±2%。143Nd/144Nd 和 87Sr/86Sr 同位素比值单次测量的不确定性(以样品平均单次测量的标准误差表示)不超过 0.0025%。结论:地球化学参考材料的结果与 GeoReM 数据库提供的结果以及美国地质调查局 (USGS)提供的认证值完全一致。所述分析技术在 IGG UB RAS 的 "Geoanalitik "共享研究设施中用于分析各种岩石和矿物样本。这项工作介绍了所获得的一些实验结果,这些结果随后被用于地质年代应用。
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