Geochemistry, Mineralogy, and Geochronology of the NYF Pegmatites, Jiaolesayi, Northern Qaidam Basin, China

Author:

Zhang Long12,Pei Xianzhi1,Gao Yongbao2,Li Zuochen1,Liu Ming2,Jing Yongkang2,Wang Yuanwei2,Chen Kang23,Deng Nan2,Zhang Yi2,Wu Junwei2

Affiliation:

1. School of Earth Science and Resources, Chang’an University, Xi’an 710054, China

2. Innovation Center for Gold Ore Exploration, Xi’an Center of Mineral Resources Survey, China Geological Survey, Xi’an 710100, China

3. State Key Laboratory of Continental Dynamics, Department of Geology, Northwest University, Xi’an 710069, China

Abstract

A significant amount of pegmatite has been discovered on the northwest margin of the Qaidam basin. Among this, the Jiaolesayi pegmatite, located in the northwestern margin of the Quanji Massif (Oulongbuluke micro-continent), shows rare element mineralization potential. Detailed field investigations, along with mineralogical, geochemical, and zircon U-Pb geochronological studies, were carried out on the pegmatite. The results show that the Jiaolesayi pegmatite is syenite, without obvious compositional zoning in the outcrop. It exhibits a peraluminous, high-K calc-alkaline nature with strong depletions in Eu, Sr, Ba, Ti, and P, and high contents of Nb, Ta, Y, Ti, U, Th, and heavy rare earth elements (HREEs), which are primarily concentrated in allanite-(Ce), euxenite-(Y), limonite, thorite, and zircon. The geochemical and mineralogical features of the syenite pegmatite indicate it belongs to the euxenite-type in the rare element class (REE) of the NYF family, with the characteristic accessory mineral being euxenite-(Y). Its 10,000 Ga/Al ratios (2.46 to 2.96), Zr + Nb + Ce + Y contents (998 to 6202 ppm), Y/Nb ratios (0.62 to 0.75), and Yb/Ta ratios (0.80 to 1.49) show an affinity with A1-type granite. Zircons from the syenite sample yielded a weighted mean 206Pb/238U age of 413.6 ± 1.4 Ma, while the elevated U and Th concentrations in the zircons and Th/U ratios (0.04 to 0.16) suggest the possible influence of hydrothermal processes in the late-stage fractional crystallization. In the context of the regional tectonic evolution, the syenite pegmatite may have formed from a basic alkaline magma derived from an OIB-like melt with minor crustal contamination, under the post-collisional extension setting.

Funder

Natural Science Basis Research Program of Shaanxi

China Geology Survey project

Youth Innovation Team of Shaanxi Universities

Publisher

MDPI AG

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