Precambrian Research2022,Vol.36815.DOI:10.1016/j.precamres.2021.106482

Neoproterozoic protracted arc basaltic magmatism in the southern margin of the Yangtze Block, south China: New constraints from mafic-ultramafic intrusive rocks

Zhou, Yi Zhong, Hong Zhu, Wei-Guang Bai, Zhong-Jie Li, Chusi
Precambrian Research2022,Vol.36815.DOI:10.1016/j.precamres.2021.106482

Neoproterozoic protracted arc basaltic magmatism in the southern margin of the Yangtze Block, south China: New constraints from mafic-ultramafic intrusive rocks

Zhou, Yi 1Zhong, Hong 2Zhu, Wei-Guang 2Bai, Zhong-Jie 2Li, Chusi3
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作者信息

  • 1. Southwest Petr Univ
  • 2. Chinese Acad Sci
  • 3. Indiana Univ
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Abstract

Mantle plume activity and subduction are two popular geodynamic models that have been used to explain the widespread Neoproterozoic basaltic magmatism in the Jiangnan Orogenic Belt along the southern margin of the Yangtze Block, South China. We have evaluated the competing hypotheses using new geochronological, petrological and geochemical data of two mafic-ultramafic intrusions in the Yuanbaoshan (YBS) area of this orogenic belt, namely the YBS south and west intrusions. Zircons from the YBS south intrusion yielded a U-Pb age of 835 +/- 3 Ma. This new age and the previously reported age for another mafic-ultramafic intrusion situated < 10 km to the northwest (the YBS west intrusion) reveal a protracted (12-20 Myr) episode of mafic magmatism in a very small area. Such temporal-spatial relationship is more consistent with the style of subduction-related magmatism than that of mantle plume-related magmatism. The YBS south and west intrusions are characterized by arc-like geochemical features such as light REE enrichments and pronounced negative Nb-Ta anomalies in whole rocks. Olivine Mn/Fe and Ca contents, clinopyroxene Al-z/TiO2 and Cr-spinel TiO2/Al2O3 of these intrusions are similar to those of some undisputed subduction-related mafic-ultramafic intrusions elsewhere in the world. Zircons from the YBS south intrusion have mantle-like Hf-O isotope compositions, with epsilon(Hf)(t) varying from + 3.3 to + 8.7 and delta O-18 of 5.32 +/- 0.29 parts per thousand. The whole rock samples yielded epsilon(Nd)(t) from + 5.2 to + 8.8 and (Sr-87/Sr-86); from 0.7034 to 0.7051 for the YBS south intrusion, and epsilon(Nd)(t) from + 1.7 to + 5.2 and (Sr-87/Sr-86); from 0.7036 to 0.7051 for the YBS west intrusion. The Sr-Nd isotope compositions of these intrusions are similar to those of global Cenozoic arc basalts, but are also consistent with mantle plume-derived magma with < 5% of crustal contamination. However, the lack of correlation between Th/Nb and epsilon(Nd)(t) or (Sr-87/Sr-86); for the intrusive rocks is inconsistent with the contamination model. The results from this study support for a popular view that northward oceanic subduction beneath the southern margin of the Yangtze Block took place in the Neoproterozoic.

Key words

SHRIMP zircon U-Pb dating/Mineral chemistry/Sr-Nd-Hf-O isotopes/Mafic-ultramafic intrusion/Jiangnan Orogenic Belt/Neoproterozoic arc magmatism/LARGE IGNEOUS PROVINCE/OXYGEN-ISOTOPE RATIOS/PB ZIRCON AGES/JIANGNAN OROGEN/PERALUMINOUS GRANITOIDS/SULFIDE MINERALIZATION/CATHAYSIA BLOCKS/NORTHERN GUANGXI/WESTERN SEGMENT/MANTLE PLUME

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出版年

2022
Precambrian Research

Precambrian Research

SCI
ISSN:0301-9268
被引量2
参考文献量65
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