High temperature transformation of iron-bearing minerals in basalt: Mössbauer spectroscopy studies

Q4 Earth and Planetary Sciences
Mineralogia Pub Date : 2022-01-01 DOI:10.2478/mipo-2022-0002
M. Kądziołka-Gaweł, M. Wojtyniak, J. Klimontko
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引用次数: 0

Abstract

Abstract The high temperature decomposition of basalt from Lower Silesia (Poland) was followed by Mössbauer spectroscopy investigation. The Fe content of the sample was ~9.0 at.%. The X-ray diffraction analysis shows that augite (37%) and olivine (12%) are major Fe-bearing mineral components. The sample also contains significant amount of anorthite (22%) and nepheline (17%). The sample was heated at various temperatures between 200°C and 1100°C for three hours. Up to a temperature of 500°C changes in contribution of Fe-bearing minerals are insignificant. Heating in the temperature range from 500°C to 1100°C leads to a systematic increase in contribution of iron oxides at the cost of contribution of silicate minerals, like augite and olivine. Mössbauer spectrum obtained after heating at 1100°C showed hematite as the main iron oxide phase. The ratio of Fe3+/Fetot in the non-heated sample was equal to 0.51 and after heating at 1100°C this ratio amounted to 0.89.
玄武岩中含铁矿物的高温转化:Mössbauer光谱研究
摘要对波兰下西里西亚(Lower Silesia)玄武岩的高温分解进行了Mössbauer光谱研究。样品的铁含量为~9.0 at.%。x射线衍射分析表明,辉长岩(37%)和橄榄石(12%)是主要含铁矿物成分。样品中还含有大量的钙长石(22%)和霞石(17%)。样品在200°C至1100°C的不同温度下加热3小时。在500℃以下,含铁矿物的贡献变化是微不足道的。在500°C至1100°C的温度范围内加热,导致氧化铁的贡献系统地增加,而硅酸盐矿物(如奥辉石和橄榄石)的贡献则减少。1100℃加热后的Mössbauer光谱显示赤铁矿为主要的氧化铁相。未加热样品中Fe3+/Fetot的比值为0.51,1100℃加热后该比值为0.89。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mineralogia
Mineralogia Earth and Planetary Sciences-Geology
CiteScore
0.80
自引率
0.00%
发文量
5
期刊介绍: - original papers in the scope of widely understood mineralogical sciences (mineralogy, petrology, geochemistry, environmental sciences, applied mineralogy etc.) - research articles, short communications, mini-reviews and review articles
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