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用于对富含铁的矿床中富集的稀土矿物进行分类的穆斯堡尔谱、红外光谱和激光诱导发光光谱研究。

Spectroscopic Studies of Mössbauer, Infrared, and Laser-Induced Luminescence for Classifying Rare-Earth Minerals Enriched in Iron-Rich Deposits.

作者信息

Aoyagi Noboru, Nguyen Thuy T, Kumagai Yuta, Nguyen Tung V, Nakada Masami, Segawa Yukari, Nguyen Hung T, Ba Le Thuan

机构信息

Advanced Science Research Center, Japan Atomic Energy Agency (JAEA), 2-4 Shirakata, Tokai-mura Naka-gun, Ibaraki 319-1195, Japan.

Institute for Technology of Radioactive and Rare Elements (ITRRE) VINATOM-MOST, 48 Lang Ha, Dong Da, Hanoi 94027, Vietnam.

出版信息

ACS Omega. 2020 Mar 30;5(13):7096-7105. doi: 10.1021/acsomega.9b03247. eCollection 2020 Apr 7.

Abstract

Rare-earth (RE) phosphates often appear as an accessory phase in igneous or metamorphic rocks; however, these rocks are composed of myriad chemical elements and nuclides that interfere with the qualitative or quantitative analyses of the RE phosphates over a range of concentrations in the absence of a pretreatment. In addition, the limit of each analytical methodology constrains the approach as well as the usefulness of the results in geoscience applications. Here, we report the specific mineral characterization of RE-containing ores from Yen Phu mine, Vietnam, using a range of state-of-the-art spectroscopic techniques in conjunction with microscopy: Mössbauer spectroscopy, infrared microspectroscopy, time-resolved laser-induced fluorescence spectroscopy (TRLFS), and scanning electron microscopy with energy-dispersive X-ray spectroscopy. Because the distribution of each element in the deposit differs, such combinatorial works are necessary and could lead to more plausible answers to questions surrounding the point of origin of RE elements. The results of our Mössbauer spectroscopic analysis indicate that the three ores sampled at different locations all contain magnetite-like, hematite-like, and iron(III) salts other than hematite. In addition, we confirmed the presence of phosphate around the grain boundary in the magnetite-like mineral phase by infrared microspectroscopic analysis. The present analytical findings of trace amounts of europium(III) using TRLFS suggest that the europium ions generate identical luminescence spectra despite being embedded in three different matrices of iron minerals. This demonstration highlights the benefits of combinatorial spectroscopic analyses to gain insights into the effects of the environment of REs on their solid-state chemistry and shows the potential utility of TRLFS as a resource mining tool. Further applications of this approach in the analytical screening of rocks and minerals are feasible.

摘要

稀土(RE)磷酸盐在火成岩或变质岩中常作为副相出现;然而,这些岩石由无数化学元素和核素组成,在未经预处理的情况下,在一定浓度范围内会干扰稀土磷酸盐的定性或定量分析。此外,每种分析方法的局限性也限制了其在地球科学应用中的方法及结果的实用性。在此,我们报告了使用一系列先进的光谱技术结合显微镜对越南延富矿含稀土矿石进行的具体矿物表征:穆斯堡尔光谱、红外显微光谱、时间分辨激光诱导荧光光谱(TRLFS)以及配备能量色散X射线光谱的扫描电子显微镜。由于矿床中各元素的分布不同,这种组合研究是必要的,并且可能为围绕稀土元素起源点的问题提供更合理的答案。我们的穆斯堡尔光谱分析结果表明,在不同位置采集的三种矿石除赤铁矿外,还均含有类磁铁矿、类赤铁矿和铁(III)盐。此外,我们通过红外显微光谱分析证实了在类磁铁矿矿物相的晶界周围存在磷酸盐。利用TRLFS对痕量铕(III)的当前分析结果表明,尽管铕离子嵌入三种不同的铁矿物基质中,但仍产生相同的发光光谱。这一实例突出了组合光谱分析在深入了解稀土元素环境对其固态化学影响方面的优势,并展示了TRLFS作为一种资源开采工具的潜在用途。这种方法在岩石和矿物分析筛选中的进一步应用是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36b1/7143416/1945e97893c6/ao9b03247_0001.jpg

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