Assessment of Time-Gated Raman Spectroscopy for Online Mineralogy of a Spodumene Ore

IF 1.9 3区 化学 Q2 SPECTROSCOPY
Teemu Laitinen, Marc Legault, Satu Ojala, Jean-François Boulanger
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Abstract

This paper investigates the applicability of time-gated Raman spectroscopy (TRS) for online mineralogy identification, focusing on a Li-bearing spodumene ore. The study provides an overview of existing online mineralogy tools and points out some limitations of elemental analysis techniques. Dense media separation concentrate and tailing samples used originated from a deposit in Quebec, Canada. Various techniques, including ICP-AES, XRD, laser diffraction, and specific gravity determination, were used for detailed sample characterization. Samples and their mixtures at known ratios were prepared as powder and slurries, before being analyzed using TRS, followed by spectrum quantitative analysis. Results show a linear correlation between spodumene percentage by weight and the main Raman peak height or area, in both dry and slurry form, with a higher determination coefficient in slurry form. TRS also provided indications as to the gangue minerals present in the samples. This study shows the potential for TRS as a tool for online mineralogical assessment of spodumene ores, and further work should target the determination of detection limits and quantification of both valuable and gangue minerals.

Abstract Image

某锂辉石矿石在线矿物学的时间门控拉曼光谱评价
本文以某含锂锂辉石矿石为研究对象,探讨了时间门控拉曼光谱(TRS)在在线矿物学鉴定中的适用性,综述了现有在线矿物学工具,并指出了元素分析技术的一些局限性。使用的重介质分离精矿和尾矿样品来自加拿大魁北克的一个矿床。采用ICP-AES、XRD、激光衍射、比重测定等技术对样品进行了详细表征。将已知比例的样品及其混合物制备成粉末和浆料,然后使用TRS进行分析,然后进行光谱定量分析。结果表明,在干态和浆态下,锂辉石重量百分比与主拉曼峰高度或面积呈线性相关,浆态下的决定系数较高。TRS还提供了样品中存在的脉石矿物的指示。这项研究表明,TRS作为锂辉石矿石在线矿物学评估工具的潜力,进一步的工作应以确定有价矿物和脉石矿物的检出限和定量为目标。
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来源期刊
CiteScore
5.40
自引率
8.00%
发文量
185
审稿时长
3.0 months
期刊介绍: The Journal of Raman Spectroscopy is an international journal dedicated to the publication of original research at the cutting edge of all areas of science and technology related to Raman spectroscopy. The journal seeks to be the central forum for documenting the evolution of the broadly-defined field of Raman spectroscopy that includes an increasing number of rapidly developing techniques and an ever-widening array of interdisciplinary applications. Such topics include time-resolved, coherent and non-linear Raman spectroscopies, nanostructure-based surface-enhanced and tip-enhanced Raman spectroscopies of molecules, resonance Raman to investigate the structure-function relationships and dynamics of biological molecules, linear and nonlinear Raman imaging and microscopy, biomedical applications of Raman, theoretical formalism and advances in quantum computational methodology of all forms of Raman scattering, Raman spectroscopy in archaeology and art, advances in remote Raman sensing and industrial applications, and Raman optical activity of all classes of chiral molecules.
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