Issue 28, 2023, Issue in Progress

High-precision zinc isotopic characterization of twenty soil reference materials from China determined by MC-ICP-MS

Abstract

Zinc isotopic ratios serve as powerful tools for tracing biochemical cycling of metals at Earth's surface, including the distribution, transportation, and enrichment of zinc (Zn) in soil. To conduct such studies and enable inter-laboratory comparisons, high-precision Zn isotopic measurements require the use of soil reference materials (RMs). However, there have been limited reports on the high-precision Zn isotope ratios of soil RMs thus far. In this study, we have developed a two-step Zn chemical separation protocol utilizing Bio-Rad AG MP-1M resin columns. This method has demonstrated excellent reproducibility for measuring the external δ66Zn values (relative to JMC-Lyon) of standard soil reference materials over an extended time period, with a better than 0.06‰ (2SD) precision. Remarkably, this study is the first to report the Zn isotopic compositions of 20 soil reference materials from various soil types in China. With the exception of one sample obtained from a mining area, the Zn isotopic compositions of all the analyzed soil reference materials exhibit remarkable similarity, with an average δ66Zn value of 0.31 ± 0.12‰, which aligns closely with the values observed in igneous rocks. The exceptional sample, with a higher δ66Zn value of 0.61 ± 0.02‰, indicates potential contamination during mining activities.

Graphical abstract: High-precision zinc isotopic characterization of twenty soil reference materials from China determined by MC-ICP-MS

Article information

Article type
Paper
Submitted
29 Jan 2023
Accepted
24 May 2023
First published
28 Jun 2023
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2023,13, 19030-19038

High-precision zinc isotopic characterization of twenty soil reference materials from China determined by MC-ICP-MS

H. Zhai, X. Wang, C. Li, S. A. Wilde, X. Li, B. Xu, X. Zhang and P. Zhang, RSC Adv., 2023, 13, 19030 DOI: 10.1039/D3RA00603D

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