激光诱导击穿光谱的首次应用:拉脱维亚深孔地质样本中元素定向搜索的快速分析技术

IF 0.5 Q4 PHYSICS, APPLIED Latvian Journal of Physics and Technical Sciences Pub Date : 2024-03-30 DOI:10.2478/lpts-2024-0010
R. A. Ganeev, V. V. Kim, D. Vorobyov, U. Gross, A. Ubelis, D. Ozols, J. Butikova, J. Grube, A. Sarakovskis
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引用次数: 0

摘要

激光诱导击穿光谱(LIBS)可以对地质样本进行快速、经济、超灵敏的分析,从而对矿石中是否存在痕量有价元素做出初步结论。我们首次介绍了利用 LIBS 对拉脱维亚两个钻孔(深度范围为 794-802 米的 Staicele 1 和深度范围为 1102-1103 米的 Garsene (Subate) 2A)的地质矿石岩心样品进行高灵敏度定性分析的结果。我们利用该技术进行的测量确认了铁含量较高,并显示了来自 Staicele 的样本中稀有和高需求金属(如钛、钒、钴、钐等)的踪迹,重新激发了对拉脱维亚各地钻孔进行研究的兴趣。所介绍的试点研究表明,使用 LIBS 方法对来自古老但仍有价值的钻孔岩心的矿石样本进行非常灵敏和省时的定性分析是有效和独特的。我们将这些测量结果与其他样品分析方法进行了比较。
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The First Application of Laser-Induced Breakdown Spectroscopy: A Fast-Analytical Technique in Targeted Search for Elements in Geological Samples from Deep Boreholes in Latvia
Laser-induced breakdown spectroscopy (LIBS) provides a rapid, cost-effective, and extra-sensitive analysis of geological samples to make preliminary conclusions about the presence of valuable elements up to the trace levels in the ore. We present the first results of a highly sensitive qualitative analysis of the core samples of geological ore from two boreholes in Latvia (Staicele 1, from a depth range of 794–802 m, and Garsene (Subate) 2A, from a depth range of 1102–1103 m) using LIBS. Our measurements using this technique confirmed the high iron content and indicated traces of rare and high in-demand metals (such as Ti, V, Co, Sm, etc.) in the sample from Staicele, renewing interest in studying boreholes across Latvia. The presented pilot studies demonstrated effectiveness and unique possibility in performing a very sensitive and time-saving qualitative analysis of the composition of samples of ores from the old but still valuable borehole cores by using the LIBS method. We compare these measurements with other methods of sample analysis.
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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