High-Mg andesites and Nb-enriched basalts in the Dulate arc, East Junggar (NW China): Evidence of ocean ridge subduction

Author:

Qin Zhen123ORCID,Tao Huifei13,Qu Yongqiang4,Wu Tao5,Li Zhongping1

Affiliation:

1. 1Oil and Gas Research Center, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China

2. 2University of Chinese Academy of Sciences, Beijing 100049, China

3. 3National Engineering Research Center of Offshore Oil and Gas Exploration, Beijing 100027, China

4. 4Northwest Branch of PetroChina Research Institute of Petroleum Exploration and Development, Lanzhou 730000, China

5. 5Research Institute of Exploration and Development, Petrochina Xinjiang Oilfield Company, Karamay 834000, China

Abstract

Abstract The Dulate arc, located in East Junggar (NW China) in the southern Central Asian orogenic belt, records a Devonian magmatic arc evolution, offering a window to understanding the orogenic processes of the Central Asian orogenic belt. Here we present new geochemical and isotopic data for Late Devonian high-Mg andesite (HMA) and Nb-enriched basalt (NEB) suites from the Qiakuerte area, East Junggar. The HMA samples are typical subduction-related volcanic rocks. They have SiO2 contents ranging from 53.30 to 54.59 wt%, high MgO (5.0–5.26 wt%), and high Mg# values (~55) and show enrichments in large ion lithophile elements (LILEs) and depletions in high field strength elements (HFSEs). The HMA samples have high (La/Yb)N ratios and Sr/Y (~6.5 and 50–59, respectively) with no Eu anomalies. The HMA samples have high Na2O (~3.3 wt%) and low K2O (~2.5 wt%) and Th (~2.4 ppm) contents, combined with positive εNd(t) and low (87Sr/86Sr)i values. These characteristics suggest that the samples were formed mainly through interactions between subducted oceanic melts and mantle peridotites. Compared to normal arc basalts, the NEB samples have higher concentrations of Nb (~20 ppm), higher primitive mantle–normalized Nb/La (0.50–0.58), and higher ratios of Nb/U (9.4–14.6). The NEB samples also have positive εNd(t) and low (87Sr/86Sr)i values, indicating that their source was mantle wedge that had been metasomatized by slab melt. Considering the widespread presence of A-type granites, the abnormally high heat flow, and the tectonic characteristics of East Junggar, we conclude that a slab window created by the subduction of an ocean ridge was responsible for the melting of slab and the formation of the NEB-HMA suites. These processes may have also played a key role in the tectonic evolution processes of East Junggar during the Late Devonian.

Publisher

Geological Society of America

Reference162 articles.

1. Late Miocene adakites and Nb-enriched basalts from Vizcaino Peninsula, Mexico: Indicators of East Pacific Rise subduction below southern Baja California?;Aguillón-Robles;Geology,2001

2. Petrogenetic evolution of late Cenozoic, post-collision volcanism in western Anatolia, Turkey;Aldanmaz;Journal of Volcanology and Geothermal Research,2000

3. An, R. , 2021, Paleozoic tectonic evolution in the northern margin of East Junggar, NW China: Constraints from volcanic rocks in the Qiakurtu-Ertai area [Ph.D. thesis]: Xian, China, Northwest University, 183 p.

4. Subduction erosion related to spreading-ridge subduction: Taitao peninsula (Chile margin triple junction area);Bourgois;Geology,1996

5. Geochemical characteristics and tectonic settings for basalts in Takezhale ophiolite in East Junggar, Xinjiang;Bu;Geotectonica et Metallogenia,2005

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