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Determination of lithium, beryllium and boron at trace levels by laser ablation-inductively coupled plasma-sector field mass spectrometry

机译:激光烧蚀-电感耦合等离子体扇区质谱法测定痕量锂,铍和硼

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The analytical capabilities of laser ablation (LA)-ICP-AAS in determining Li, Be and B at trace levels in geological samples have been tested on a series of glass reference materials and natural samples. The LA-ICP-MS instrument used consisted of a sector-field ICP-MS coupled with a laser ablation microprobe operating at either 266 or 213 nm wavelength. Reference glasses from NIST (SRM 612, 614 and 616) and MPI-DING (KL2-G, MOB-G, StHs6/80-G, GOR128-G, GOR132-G, T1-G and ATHO-G) were selected to develop the analytical method and to assess the best instrumental configuration. A series of calcic amphiboles with different Li, Be and B concentrations were also analysed using both LA-ICP-MS and SIMS to test the applicability of the method to natural minerals. Results indicated that with a spot size of 40 mu m the agreement between measured and reference values of Li, Be and B is generally better than 10% for NIST SRM 612 and 20% for NIST SRM 614. Average reproducibility at the 2s level was 10% for Li, 20% for Be and 15% for B. Limits of detection were approximately 100 ng g(-1) for Be and B and 200 ng g(-1) for Li. These results were confirmed by analyses carried out on natural amphiboles and compared well in terms of precision and accuracy with those commonly achieved by SIMS.
机译:在一系列玻璃参考材料和天然样品上测试了激光烧蚀(LA)-ICP-AAS测定痕量水平的Li,Be和B的分析能力。所用的LA-ICP-MS仪器由扇形场ICP-MS和在266或213 nm波长下运行的激光烧蚀微探针组成。选择来自NIST(SRM 612、614和616)和MPI-DING(KL2-G,MOB-G,StHs6 / 80-G,GOR128-G,GOR132-G,T1-G和ATHO-G)的参考眼镜开发分析方法并评估最佳仪器配置。还使用LA-ICP-MS和SIMS分析了一系列Li,Be和B浓度不同的钙质闪石,以测试该方法对天然矿物的适用性。结果表明,光斑尺寸为40μm时,Li,Be和B的测量值与参考值之间的一致性通常优于NIST SRM 612的10%和NIST SRM 614的20%。2s水平的平均重现性为10 Li的浓度为%,Be的浓度为20%,B的浓度为15%。Be和B的检测限约为100 ng g(-1),Li的检测限约为200 ng g(-1)。通过对天然闪石进行的分析证实了这些结果,并在准确性和准确性方面与SIMS通常获得的结果进行了很好的比较。

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