使用Nu蓝宝石仪器对低含量的铁同位素进行高精度分析

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Kai Yang, Hongfu Zhang, Jinjun Zhou, Qiwen Ying, Shenghua Zhou, Yishan Cheng, Xiping Wei, Xiaoyan Gu, Qunke Xia and Jia Liu
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引用次数: 0

摘要

铁(Fe)同位素是研究行星演化、岩浆过程、氧化还原条件、生物活动和其他关键地质过程的有力示踪剂。然而,稳定铁同位素在贫铁样品中的应用受到传统多收集器电感耦合等离子体质谱(MC-ICP-MS)中普遍存在的氩相关等压干扰的显著限制。本研究在Nu蓝宝石仪器的低分辨率模式下,使用碰撞细胞途径对不同铁浓度的岩石样品进行了纯化,并精确测量了铁同位素比率。系统评价了溶液中总铁浓度、样品与标准品铁信号强度失配、HNO3摩尔浓度差异对测量精度和准确度的影响。使用蓝宝石进行精确的铁同位素比值测量,必须满足严格的分析条件:(1)样品与支撑标准之间的硝酸浓度匹配(1%的偏差导致0.2‰的铁同位素偏移);(2)铁信号强度一致(浓度错配5%,偏差0.05‰);(3)抑制基质干扰,使同位素分馏最小化。结果表明,Nu蓝宝石可以在低至1 μg铁的情况下实现精确测量,与传统仪器相比提高了10倍。13个地质参考资料的铁同位素数据与前人的研究结果吻合较好。因此,Nu蓝宝石的特殊灵敏度有助于对缺铁样品进行高精度的铁同位素比测量,具有广阔的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

High-precision Fe isotope analysis for low contents using a Nu Sapphire instrument†

High-precision Fe isotope analysis for low contents using a Nu Sapphire instrument†

Iron (Fe) isotopes serve as a powerful tracer for studying planetary evolution, magmatic processes, redox conditions, biological activities, and other key geological processes. However, the application of stable Fe isotopes in depleted-Fe samples has been significantly constrained by pervasive argon-related isobaric interferences inherent to conventional multi-collector inductively coupled plasma mass spectrometry (MC-ICP-MS). This study purified rock samples with varying Fe concentrations and precisely measured Fe isotope ratios using the collision cell pathway in the low-resolution mode of the Nu Sapphire instrument. We systematically evaluated the effects of total Fe concentration in solution, Fe signal intensity mismatch between samples and standards, and HNO3 molarity differences on measurement precision and accuracy. For precise Fe isotope ratio measurements using sapphire, strict analytical conditions must be met: (1) matched nitric acid concentrations between samples and bracketing standards (1% deviation induces 0.2‰ Fe isotope offset); (2) consistent Fe signal intensities (5% concentration mismatch introduces 0.05‰ bias); and (3) suppression of matrix interferences to minimize isotopic fractionation. The results demonstrate that the Nu Sapphire can achieve precise measurements with as little as 1 μg of Fe, representing a tenfold improvement relative to conventional instruments. The Fe isotopic data obtained for 13 geological references show good agreement with previous studies. Therefore, the exceptional sensitivity of Nu Sapphire facilitates high-precision Fe isotope ratio measurements for iron-depleted samples, offering broad application potential.

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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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