Atomic-scale environment of niobium in ore minerals as revealed by XANES and EXAFS at the Nb K-edge

IF 1.8 3区 地球科学 Q2 MINERALOGY European Journal of Mineralogy Pub Date : 2024-01-08 DOI:10.5194/ejm-36-55-2024
Quentin Bollaert, Mathieu Chassé, Guillaume Morin, Benoît Baptiste, Alexandra Courtin, L. Galoisy, Gautier Landrot, Cécile Quantin, Georges Calas
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Abstract

Abstract. The mineralogy of niobium (Nb) is characterized by multicomponent oxides such as AB2O6, A2B2O7, ABO4, and ABO3 in which Nb is incorporated in the B site. Such complex crystal-chemistry prevents their unambiguous identification in ore deposits such as hydrothermal rocks and laterites which exhibit complex and fine-grained textures. The understanding of the processes controlling Nb ore deposit formation in various geological settings is therefore limited, although Nb is a critical element. In this study, we use X-ray absorption spectroscopy (XAS) at the Nb K-edge to investigate the local atomic-scale structure around Nb in a large set of natural and synthetic minerals of geological and technological importance. Our X-ray absorption near-edge structure (XANES) data at the Nb K-edge show three major features of variable position and intensity and then can be related to the local distortion and coordination number of the Nb site. Shell-by-shell fits of the extended X-ray absorption fine structure (EXAFS) data reveal that the NbO6 octahedra are distorted in a variety of pyrochlore species. At least two distinct first shells of O atoms are present while reported crystallographic data yield regular octahedra in the same minerals. Next-nearest Nb–Nb distances in pyrochlore and Nb-bearing perovskite mirror a corner-sharing NbO6 network, whereas the two Nb–Nb distances in columbite are typical of edge- and corner-sharing NbO6 octahedra. Such a resolution on the Nb site geometry and the intersite relationships between the next-nearest NbO6 octahedra is made possible by collecting EXAFS data under optimal conditions at 20 K and up to 16 Å−1. The local structure around substituted Nb5+ in Fe3+, Ti4+, and Ce4+ oxides suffers major changes relative to the unsubstituted structures. The substitution of Nb5+ for Ti4+ in anatase leads to the increase in the interatomic distances between Nb and its first and second Ti4+ neighbors. The substitution of Nb5+ for Ce4+ in cerianite reduces the coordination number of the cation from eight to four, and the Nb–O bonds are shortened compared to Ce–O ones. In hematite, Nb5+ occupies a regular site, whereas the Fe3+ site is strongly distorted suggesting major site relaxation due to charge mismatch. The sensitivity of XANES and EXAFS spectroscopies at the Nb K-edge to the local site geometry and next-nearest neighbors demonstrated in this study would help decipher Nb speciation and investigate mineralogical reactions of Nb minerals in deposit-related contexts such as hydrothermal and lateritic deposits.
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铌 K 边 XANES 和 EXAFS 揭示的矿石矿物中铌的原子尺度环境
摘要。铌(Nb)矿物学的特点是多组分氧化物,如 AB2O6、A2B2O7、ABO4 和 ABO3,其中铌掺杂在 B 位。这种复杂的晶体化学性质阻碍了它们在热液岩和红土等矿床中的明确识别,因为这些矿床呈现出复杂的细粒纹理。因此,尽管铌是一种关键元素,但人们对各种地质环境中控制铌矿床形成过程的了解仍然有限。在本研究中,我们利用铌 K 边的 X 射线吸收光谱 (XAS) 来研究大量具有地质和技术重要性的天然和合成矿物中铌周围的局部原子尺度结构。我们在铌 K 边的 X 射线吸收近边结构 (XANES) 数据显示了位置和强度可变的三大特征,这些特征与铌位点的局部畸变和配位数有关。扩展 X 射线吸收精细结构(EXAFS)数据的逐壳拟合显示,NbO6 八面体在各种火成岩中都发生了变形。至少存在两个不同的 O 原子第一壳,而报告的晶体学数据则显示相同矿物中存在规则的八面体。辉绿岩和含铌的透辉石中最邻近的 Nb-Nb 间距反映了共角 NbO6 网络,而铌铁矿中的两个 Nb-Nb 间距则是典型的共边和共角 NbO6 八面体。通过在 20 K 和高达 16 Å-1 的最佳条件下收集 EXAFS 数据,可以对铌位点的几何形状和最邻近的 NbO6 八面体之间的位点间关系进行这样的解析。与未取代的结构相比,Fe3+、Ti4+ 和 Ce4+ 氧化物中取代的 Nb5+ 周围的局部结构发生了重大变化。锐钛矿中 Nb5+ 对 Ti4+ 的取代导致 Nb 与其第一和第二 Ti4+ 邻域之间的原子间距增大。在铈镧矿中,Nb5+取代Ce4+后,阳离子的配位数从8个减少到4个,Nb-O键比Ce-O键更短。在赤铁矿中,Nb5+占据了一个规则的位点,而 Fe3+ 位点则强烈扭曲,这表明电荷失配导致了主要的位点松弛。本研究中展示的铌 K 边 XANES 和 EXAFS 光谱对局部位点几何形状和近邻位点的敏感性,将有助于破译铌的种类,并研究热液矿床和红土矿床等矿床相关环境中铌矿物的矿物学反应。
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来源期刊
CiteScore
2.80
自引率
9.50%
发文量
40
审稿时长
6-12 weeks
期刊介绍: EJM was founded to reach a large audience on an international scale and also for achieving closer cooperation of European countries in the publication of scientific results. The founding societies have set themselves the task of publishing a journal of the highest standard open to all scientists performing mineralogical research in the widest sense of the term, all over the world. Contributions will therefore be published primarily in English. EJM publishes original papers, review articles and letters dealing with the mineralogical sciences s.l., primarily mineralogy, petrology, geochemistry, crystallography and ore deposits, but also biomineralogy, environmental, applied and technical mineralogy. Nevertheless, papers in any related field, including cultural heritage, will be considered.
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