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Trace element microanalysis in iron meteorites by laser ablation ICPMS

机译:激光烧蚀ICPMS对铁陨石中微量元素的微分析

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A laser ablation microanalysis system has been developed that can analyze trace elements with a sensitivity in time ppb range, using a CETAC LSX-200 laser ablation system with a Finnigan Element. This capability has been applied to a set of iron meteorites to demonstrate the laser microprobe's analytical capability for the determination of platinum group elements (PGEs) with a spatial resolution of similar to 20 mu m, comparable to that of dynamic secondary ion mass spectrometry (SIMS), The laser is shown to provide an accurate means of solid sampling for magnetic sector inductively coupled plasma mass spectrometry (ICPMS), allowing the determination of bulk metal composition, chemical zoning within the sample, and depth profiling. Recovery of the chemical zoning in taenite lamellae was achieved for Ru, Rh, and Pd, which was not previously possible using SIMS, The methods presented here show that magnetic sector ICPMS can be successfully coupled to a laser ablation system, providing the advantages of higher sensitivity of the sector instrument, low background count rates (<0.1 counts/s), and flat-topped spectral peaks, while minimizing tradeoff against the speed of data acquisition required to handle the transient signals from the laser ablation system. [References: 44]
机译:已经开发出了一种激光烧蚀微分析系统,该系统可以使用带有Finnigan元素的CETAC LSX-200激光烧蚀系统来分析时间ppb范围内的痕量元素。此功能已应用到一组铁陨石上,以证明激光微探针的测定能力可用于测定铂族元素(PGE),其空间分辨率约为20微米,可与动态二次离子质谱(SIMS)媲美),表明该激光器为磁性扇形电感耦合等离子体质谱(ICPMS)提供了一种准确的固体采样方法,从而可以确定大块金属成分,样品中的化学分区以及深度分布图。对于Ru,Rh和Pd,可以实现taenite薄片中化学分区的恢复,这是以前使用SIMS不可能实现的。此处介绍的方法表明,磁区ICPMS可以成功地与激光烧蚀系统耦合,具有更高的优势。扇区仪器的灵敏度高,背景计数率低(<0.1个计数/秒)和平坦的光谱峰,同时最大程度地降低了与处理激光烧蚀系统瞬态信号所需的数据采集速度之间的权衡。 [参考:44]

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