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Boron isotope ratio determination in carbonates /via/ LA-MC-ICP-MS using soda-lime glass standards as reference material

机译:以钠钙玻璃标准液为基准,测定碳酸盐/ via / LA-MC-ICP-MS中的硼同位素比

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摘要

A new in situ method using LA-MC-ICP-MS (193 nm excimer laser) for the determination of stable boron isotope ratios (δ11B) in carbonates was developed. Data were acquired via a standard sample standard bracketing procedure typically providing a reproducibility of 0.5‰ (SD) for samples containing 35 ppm of boron. A single ablation interval consumed about 5 µg of sample corresponding to about 0.2 ng of boron. The major finding was the similar instrumental fractionation behaviour of carbonates, soda-lime glass and sea salt with respect to boron isotopes. As no matrix induced offset was detectable between these distinct materials we propose the use of NIST glasses as internal standards for boron isotope ratio measurements via LA-MC-ICP-MS. This finding overcomes the problem of a missing matrix matched carbonate standard for in situ boron isotope studies. As a first application a set of coral samples from a culturing experiment was analysed. δ11B values range from 19.5 to 25‰ depending on the pH of the water used in the particular treatment. This is in good agreement with the results of earlier studies.
机译:建立了一种使用LA-MC-ICP-MS(193 nm受激准分子激光)测定碳酸盐中稳定硼同位素比(δ11B)的新方法。数据是通过标准样品标准包围程序获得的,对于含35 ppm硼的样品,其典型重现性为0.5‰(SD)。一个烧蚀间隔消耗了约5 µg的样品,相当于约0.2 ng的硼。主要发现是碳酸盐,钠钙玻璃和海盐相对于硼同位素的相似的仪器分馏行为。由于在这些不同的材料之间没有检测到基质引起的偏移,因此我们建议使用NIST玻璃作为通过LA-MC-ICP-MS进行硼同位素比测量的内标。这一发现克服了原位硼同位素研究缺少基质匹配碳酸盐标准的问题。作为首次应用,分析了一组来自培养实验的珊瑚样品。 δ11B值的范围从19.5到25‰,具体取决于在特定处理中使用的水的pH值。这与早期研究的结果非常吻合。

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