4.7 Article

An efficient Li dual-column system and high-precision Li isotope measurement of high matrix and low-Li samples by MC-ICP-MS

Journal

JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY
Volume 38, Issue 8, Pages 1602-1610

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d3ja00054k

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There has been a growing interest in using lithium isotopes in marine carbonates to trace chemical weathering and clay formation. However, it is technically challenging to determine the Li isotope composition in carbonate samples due to the imperfect Li separation and low Li concentration in carbonates. A dual-column chromatography system for Li purification is presented, which has a large loading capacity, complete Li recovery, and efficient elution time. The procedure is validated with certified reference materials and the precision of Li isotope measurement is high.
Over the last decade, there has been a growing interest in using lithium (Li) isotopes in marine carbonates to trace chemical weathering and clay formation in the Earth's history. Yet it remains technically challenging to precisely and efficiently determine the Li isotope composition in carbonate samples due to the imperfect Li separation led by the matrix effect and the extremely low Li concentration in carbonates relative to the analytical threshold of sample size. For such high matrix and low-Li samples, here we present an efficient dual-column chromatography system for Li purification. The dual-column system has a large loading capacity, fixed Li elution range of merely 12 mL, complete Li recovery (>99.5%) and relatively efficient total elution time (7 hours). The procedural blank is 0.036 & PLUSMN; 0.002 ng accounting for sample dissolution and chemical purification, and the Na/Li mass ratio of the Li cut is below 0.5. High precision and accurate Li isotope measurement is performed efficiently with a small sample-sized protocol developed on a MC-ICP-MS (Neptune plus) connected with an APEX 2-IR desolvator. The whole procedure is validated by analyzing a series of certified reference materials. The long-term external precision of & delta;Li-7 determined based on L-SVEC and a high-purity Li solution is 0.6 & PTSTHOUSND; (2SD) and 0.9 & PTSTHOUSND; (2SD) for a minimum sample size of 7.5 ng.

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