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K-feldspar composition as an exploration tool for pegmatite-type rare metal deposits in Altay, NW China
Yong Tang;  Hong Wang;  Hui Zhang;  Zheng-Hang Lv
2018
发表期刊Journal of Geochemical Exploration
卷号185页码:130-138
摘要

Trace elements of potassium feldspar (Kfs) from pegmatite veins in the Keketuohai pegmatite district were determined in situ by LA-ICP-MS. As the K/Rb ratio decreases, the contents of compatible Ba and Sr decrease, while the contents of incompatible Li, Cs and Ga increase. The K/Rb ratios and above mentioned trace element contents of Kfs from the Be-Nb-Ta mineralized pegmatite veins match those of Kfs from barren pegmatite veins. In contrast, the mineralized pegmatites are characterized by having K-feldspars with high phosphorus contents, mostly above 0.1 wt% P2O5, which is the boundary separating mineralized pegmatites and barren pegmatites. The high P2O5 content in Kfs indicates high concentration of this element in the melt from which these pegmatites crystallized. The P2O5 content in K-feldspar can be used as an exploration tool for LCT type Be-Nb-Ta deposit.

关键词K-feldspar Trace Elements P2o5 Pegmatite Altay
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/8644
专题地球内部物质高温高压实验室
作者单位1.Key Laboratory for High Temperature and High Pressure Study of the Earth's Interior, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, PR China.
2.University of Chinese Academy of Sciences, Beijing 100049, PR China
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Yong Tang;Hong Wang;Hui Zhang;Zheng-Hang Lv. K-feldspar composition as an exploration tool for pegmatite-type rare metal deposits in Altay, NW China[J]. Journal of Geochemical Exploration,2018,185:130-138.
APA Yong Tang;Hong Wang;Hui Zhang;Zheng-Hang Lv.(2018).K-feldspar composition as an exploration tool for pegmatite-type rare metal deposits in Altay, NW China.Journal of Geochemical Exploration,185,130-138.
MLA Yong Tang;Hong Wang;Hui Zhang;Zheng-Hang Lv."K-feldspar composition as an exploration tool for pegmatite-type rare metal deposits in Altay, NW China".Journal of Geochemical Exploration 185(2018):130-138.
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