地质学
地球化学
俯冲
地幔(地质学)
部分熔融
岩石圈
橄榄岩
锆石
结壳
岩浆作用
金云母
岩石学
构造学
古生物学
作者
Bin Liu,Youjun Tang,Lü-Ya Xing,Yu Xu,Shaoqing Zhao,Yang Sun,Jian Huang
出处
期刊:Geological Magazine
[Cambridge University Press]
日期:2021-11-24
卷期号:159 (3): 407-420
被引量:2
标识
DOI:10.1017/s001675682100100x
摘要
Abstract Primitive lamprophyres in orogenic belts can provide crucial insights into the nature of the subcontinental lithosphere and the relevant deep crust–mantle interactions. This paper reports a suite of relatively primitive lamprophyre dykes from the North Qiangtang, central Tibetan Plateau. Zircon U–Pb ages of the lamprophyre dykes range from 214 Ma to 218 Ma, with a weighted mean age of 216 ± 1 Ma. Most of the lamprophyre samples are similar in geochemical compositions to typical primitive magmas (e.g. high MgO contents, Mg no. values and Cr, with low FeOt/MgO ratios), although they might have experienced a slightly low degree of olivine crystallization, and they show arc-like trace-element patterns and enriched Sr–Nd isotopic composition (( 87 Sr/ 86 Sr) i = 0.70538–0.70540, ϵ Nd ( t ) = −2.96 to −1.65). Those geochemical and isotopic variations indicate that the lamprophyre dykes originated from partial melting of a phlogopite- and spinel-bearing peridotite mantle modified by subduction-related aqueous fluids. Combining with the other regional studies, we propose that slab subduction might have occurred during Late Triassic time, and the rollback of the oceanic lithosphere induced the lamprophyre magmatism in the central Tibetan Plateau.
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