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In situ Sr isotope analyses by LA-MC-ICP-MS of igneous apatite and plagioclase from magmatic rocks at the CPGeo-USP

机译:通过LA-MC-ICP-MS对CPGeo-USP岩浆岩中的火成磷灰石和斜长石进行Sr同位素原位分析

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This contribution describes the successful implementation of in situ Sr isotope analyses by LA-MC-ICP-MS at the CPGeo-USP. The choice for an analytical configuration using measurements of half-masses allows the accurate assessment of lanthanide interferences, permitting the determination of Sr isotopes in important REE-rich accessory phases, such as apatite. Likewise, the on-peak-zero method effectively corrects the background contribution (both from Kr and residual Sr contributions from previous ablations) to the signals of the unknown samples. The analytical campaigns resulted in an accuracy, in respect to reference TIMS values, better than 57 ppm (~ ?±0.000057 2?? SD) for a modern coral and the Batjberg clinopyroxene which impart significant quality to our data. Similarly, the majority of the stable Sr isotope ratios are close to the accepted values, which also confirms the effectiveness of the method. The achieved accuracy allows the identification and investigation of spatially-controlled isotopic heterogeneities on the micrometric scale in several Sr-rich minerals (apatite, carbonates, plagioclase, and clinopyroxene) with important implications to the understanding of relevant geochemical processes, particularly AFC, source geochemical heterogeneities and magma-mixing.
机译:该文稿描述了在CPGeo-USP上通过LA-MC-ICP-MS成功实施原位Sr同位素分析的过程。选择使用半质量测量的分析配置可以准确评估镧系元素的干扰,从而可以确定富含稀土元素的重要辅助相(如磷灰石)中的Sr同位素。同样,零峰方法有效地将背景贡献(来自Kr和来自先前烧蚀的残留Sr贡献)校正为未知样本的信号。通过分析,对于现代珊瑚和Batjberg斜柏提供了显着质量的数据,相对于TIMS参考值,其准确度优于57 ppm(〜?±0.000057 2 ?? SD)。同样,大多数稳定的Sr同位素比都接近可接受的值,这也证实了该方法的有效性。达到的精度允许在微米级范围内识别和研究几种富Sr矿物(磷灰石,碳酸盐,斜长石和斜辉石)的空间控制同位素异质性,这对理解相关地球化学过程(特别是AFC,源地球化学)具有重要意义异质性和岩浆混合。

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