V oxidation state in Fe–Ti oxides by high-energy resolution fluorescence-detected X-ray absorption spectroscopy

被引:2
作者
Amélie Bordage
Etienne Balan
Johan P. R. de Villiers
Robert Cromarty
Amélie Juhin
Claire Carvallo
Georges Calas
P. V. Sunder Raju
Pieter Glatzel
机构
[1] Institut de Minéralogie et de Physique des Milieux Condensés,Department of Materials Science and Metallurgical Engineering
[2] UMR CNRS 7590,undefined
[3] Université Pierre et Marie Curie,undefined
[4] Université Paris Diderot,undefined
[5] IRD UMR 206,undefined
[6] IPGP,undefined
[7] KFKI Research Institute for Particle and Nuclear Physics,undefined
[8] University of Pretoria,undefined
[9] National Geophysical Research Institute (Council of Scientific and Industrial Research),undefined
[10] European Synchrotron Radiation Facility,undefined
来源
Physics and Chemistry of Minerals | 2011年 / 38卷
关键词
Vanadium; Impurity; Oxidation state; V; edge HERFD-XAS; Fe–Ti oxides;
D O I
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中图分类号
学科分类号
摘要
The oxidation state of vanadium in natural and synthetic Fe–Ti oxides is determined using high-energy resolution fluorescence-detected X-ray absorption spectroscopy (HERFD-XAS). Eleven natural magnetite-bearing samples from a borehole of the Main Magnetite Layer of the Bushveld Complex (South Africa), five synthetic Fe oxide samples, and three natural hematite-bearing samples from Dharwar supergroup (India) are investigated. V K edge spectra were recorded on the ID26 beamline at the European Synchrotron Radiation Facility (Grenoble, France), and the pre-edge features were used to determine the local environment and oxidation state of vanadium. In the case of the magnetite samples (natural and synthetic), we show that vanadium is incorporated in the octahedral site of the spinel structure under two oxidation states: +III and +IV. The variations of the pre-edge area are interpreted as various proportions in V3+ and V4+ (between 9.5 and 16.3% of V4+), V3+ being the main oxidation state. In particular, the variations of the V4+/V3+ ratio along the profile of the Main Magnetite Layer seem to follow the crystallization sequence of the layer. In the case of the hematite samples from India, the pre-edge features indicate that vanadium is substituted to Fe and mainly incorporated as V4+ (between 40 and 72% of V4+). We also demonstrate the potentiality of HERFD-XAS for mineralogical studies, since it can filter out the unwanted fluorescence and give better resolved spectra than conventional XAS.
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页码:449 / 458
页数:9
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