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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Geographical analysis of 'conflict minerals' utilizing laser-induced breakdown spectroscopy
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Geographical analysis of 'conflict minerals' utilizing laser-induced breakdown spectroscopy

机译:利用激光诱导击穿光谱法对“冲突矿物”进行地理分析

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摘要

Laser-induced breakdown spectroscopy (LIBS) offers a means of rapidly distinguishing different geographic sources for a mineral because the LIBS plasma emission spectrum provides information on the chemical composition (i.e. geochemical fingerprint) of a geomaterial. An application of this approach with potentially significant commercial and political importance is the spectral fingerprinting of "conflict minerals" such as columbite-tantalite ("coltan"). Following a successful pilot study of a columbite-tantalite suite from North America, a more geographically diverse set of 57 samples from 37 locations around the world was analyzed using a commercially available LIBS system. The LIBS spectra were analyzed using advanced multivariate statistical signal processing techniques. Partial least squares discriminant analysis (PLSDA) resulted in a correct place-level geographic classification at success rates above 90%. The possible role of rare-earth elements (REEs) as a factor contributing to the high levels of sample discrimination was explored. These results provide additional evidence that LIBS has the potential to be utilized in the field as a real-time screening tool to discriminate between columbite-tantalite ores of different provenance.
机译:激光诱导击穿光谱法(LIBS)提供了一种快速区分矿物的不同地理来源的方法,因为LIBS等离子体发射光谱提供了有关地球材料化学成分(即地球化学指纹)的信息。这种方法具有潜在的重大商业和政治意义,其应用是“冲突矿物”(例如co钴钽铁矿(“ coltan”))的光谱指纹图谱。在成功地对来自北美的钴锰矿-钽铁矿套件进行了试点研究之后,使用可商购的LIBS系统对来自全球37个地点的57个样品进行了地理上更多样化的分析。 LIBS光谱使用先进的多元统计信号处理技术进行了分析。偏最小二乘判别分析(PLSDA)得出正确的地方级别地理分类,成功率超过90%。探索了稀土元素(REEs)作为导致高水平样品歧视的因素的可能作用。这些结果提供了额外的证据,表明LIBS有潜力在现场用作实时筛选工具,以区分不同出处的co钽铁矿石。

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