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Major Element Chemical Heterogeneity in Geo2 Olivine Micro-Beam Reference Material: A Spatial Approach to Quantifying Heterogeneity in Primary Reference Materials

机译:Geo2橄榄石微束参考材料中的主要元素化学异质性:量化主要参考材料中非均匀性的空间方法

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摘要

A 270 spot-analysis study was conducted across a large (ca. 1200 μm x 1200 μm) chip of Geo2 olivine from a commercially available GEO Mk2 block (P and H Developments 2016) which revealed a 8.7% relative range in FeO abundance. Interleaved and overlapping grids of different resolutions were measured sequentially to prove spatial patterns are not due to drift or other external sources of error. Results were mapped and interpolated using commercially available geographical information system software, such that composition could be predicted according to location with high accuracy. The simple, systematic zonation pattern observed demonstrates that useful-sized regions of acceptable homogeneity do exist for some elements. This knowledge allows a user to target individual regions of a characterised chip for use as distinct measurement standards. As analysis times decrease and datasets grow, this approach may maximise laboratory efficiency by characterising large chips and extending time between standard block re-polish and coating, particularly in those cases where the avoidance of prior beam damage is a key concern.
机译:一项270点分析研究是对来自商用GEO Mk2区块(P and H Developments 2016)的一个较大的Geo2橄榄石芯片(约1200μmx 1200μm)进行的(P and H Developments 2016),显示FeO丰度的相对范围为8.7%。依次测量了不同分辨率的交错和重叠网格,以证明空间图案不是由于漂移或其他外部误差源引起的。使用可商购的地理信息系统软件对结果进行映射和插值,从而可以根据位置准确预测组成。观察到的简单,系统的分区模式表明,某些元素确实存在有用的均质性可接受大小的区域。该知识使用户可以将特征化芯片的各个区域作为目标,以用作不同的测量标准。随着分析时间的减少和数据集的增加,这种方法可以通过表征大切屑并延长标准块重抛光和涂层之间的时间来最大化实验室效率,尤其是在避免先前光束损坏是关键问题的情况下。

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