Accurate determination of stable silver isotopes in zinc-rich samples through effective separation of silver and zinc

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL Journal of Analytical Atomic Spectrometry Pub Date : 2024-05-30 DOI:10.1039/D4JA00125G
Haotian Gong, Youqiang Qi, Tingguang Lan, Haifeng Fan, Youwei Chen, Ting Zhou and Ruizhong Hu
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Abstract

Silver isotopes have been extensively used in environment, archaeology, and economic geology. Nevertheless, accurate analysis of Ag isotope ratios faces challenges caused by the presence of matrix elements (e.g. Zn, Cu, and Pb) in most sulfide samples due to isobaric and polyatomic interferences during multi-collector inductively coupled plasma mass spectrometry (MC-ICPMS) routines. Most of these elements, such as Cu and Pb, can be effectively removed after the first column through a tandem column setup. However, the complete removal of Zn from Ag remains a significant unresolved issue, particularly given their common coexistence in sulfide minerals. Combining previous studies and the chemical principle of ion exchange resin, we optimized a two-stage ion exchange procedure by meticulously adjusting solution volumes and the column separation process. A condensed Zn-doped NIST SRM (silver international standard reference material) 978a was tested for AG50W-X8 resin following our modified procedure, resulting in distinct elution curves of Ag and Zn. Subsequently, three sphalerite samples were selected for the optimized two-stage ion exchange procedure, and ICP-MS results of silver elution fractions demonstrated complete separation of Ag and Zn. The whole procedure achieved an Ag yield exceeding 98.1 ± 2.3% (2SD, n = 4). NIST SRM 978a and IAEA-S-1 (an in-house standard) were tested for long-term reproducibility with −0.001 ± 0.030‰ (2SD, n = 25) and 0.054 ± 0.023‰ (2SD, n = 22) of δ109Ag, respectively, indicating the high accuracy in MC-ICPMS routines. Zn-doped NIST SRM 978a and sphalerite samples were further subjected to the modified procedure, and they exhibited values of 0.004 ± 0.014‰ (2SD, n = 3) and −0.214 ± 0.033‰ (2SD, n = 12), respectively, for δ109Ag. Moreover, we selected eight sphalerite samples from several hypogene deposits in China and obtained δ109Ag values from −0.229‰ to 2.227‰, indicating the significant Ag isotopic fractionation between Ag-bearing and Zn-rich minerals in hypogene deposits. In conclusion, this study shows the feasibility of accurately measuring Ag isotopes in Zn-rich samples and reveals their application potential in related Ag-bearing and Zn-rich deposits.

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通过有效分离银和锌,准确测定富锌样品中的稳定银同位素
银同位素已被广泛应用于环境、考古和经济地质学领域。然而,在多收集器电感耦合等离子体质谱法(MC-ICPMS)的常规分析过程中,由于基质元素(如锌、铜和铅)的存在,银同位素比率的精确分析面临挑战。这些元素中的大多数,如铜和铅,可以在第一柱之后通过串联柱设置有效去除。然而,从银中完全去除锌仍然是一个重大的未决问题,特别是考虑到它们在硫化物矿物中的共存性。结合以往的研究和离子交换树脂的化学原理,我们通过精心调整溶液体积和柱分离过程,优化了两级离子交换程序。按照我们修改后的程序,用 AG50W-X8 树脂测试了掺杂锌的 NIST SRM 978a(银国际标准参考物质)缩合物,结果发现银和锌的洗脱曲线截然不同。随后,选择了三个闪锌矿样品进行优化的两阶段离子交换程序,银洗脱馏分的 ICP-MS 结果也表明银和锌完全分离。整个过程的银产量超过 98.1 ± 2.3%(2SD,n=4)。对 NIST SRM 978a 和 IAEA-S-1(内部标准)进行了长期重现性测试,δ109Ag 的重现性分别为 -0.001 ± 0.030 ‰(2SD,n = 25)和 0.054 ± 0.023‰(2SD,n = 22),表明 MC-ICPMS 程序具有很高的准确性。对掺锌的 NIST SRM 978a 和闪锌矿样品进一步进行了修改,它们的δ109Ag 值分别为 0.004 ± 0.014‰(2SD,n = 3)和-0.214 ± 0.033‰(2SD,n = 12)。此外,我们还从中国几个下伏矿床中选取了8个闪锌矿样品,得到的δ109Ag值从-0.229‰到2.227‰不等,表明下伏矿床中的含Ag矿物和富Zn矿物之间存在显著的Ag同位素分馏。总之,本研究表明了精确测量富锌样品中银同位素的可行性,并揭示了其在相关含银矿床和富锌矿床中的应用潜力。关键词:银同位素;富锌样品;MC-ICPMS;基质元素;锌矿床
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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.
期刊最新文献
Back cover Evaluation of miniaturized ultrasonic nebulization for high-efficiency sampling in characterization of silver nanoparticles by single particle inductively coupled plasma mass spectrometry† Atomic spectrometry update: review of advances in the analysis of metals, chemicals and materials Assessing the performance of handheld LIBS for predicting soil organic carbon and texture in European soils† Research on a bimodal fusion detection method for surface defects of metal AM components based on LIBS
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