青藏高原东南部腾冲火山群热液挥发物的时空特征:板内火山活动成因的可能制约因素

IF 2.4 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Yingchun Wang , Xiaocheng Zhou , Jiao Tian , Haoxin Jia , Xiaoyi Zhu , Jiang Li , Miao He , Zhaojun Zeng , Yucong Yan , Bingyu Yao , Yuwen Wang , Gaoyuan Xing , Shihan Cui , Liwu Li , Zhongping Li , Chunhui Cao , Lantian Xing
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引用次数: 0

摘要

确定活火山和休眠火山的母岩浆源对于了解其形成和地球动力学过程至关重要。腾冲火山群位于青藏高原东南部,是一个板内火山群,与印度板块向东俯冲造成的地幔扰动有关。该研究通过对TCV温泉中氦和碳同位素的综合分析,揭示了TCV内的挥发性脱气主要来源于地幔。挥发性脱气历史与氦岩浆老化模型相结合,证实母岩浆中的氦与大洋岛屿玄武岩中的氦相似,可能来自地幔过渡带上方停滞的大洋板块脱水,首次为深厚地幔物质的上涌提供了令人信服的地球化学证据。这项研究不仅阐明了板内火山神秘的地热行为,而且加深了我们对青藏高原东南部构造动力学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatiotemporal characteristics of hydrothermal volatiles from the Tengchong volcanic field in the southeastern Tibetan Plateau: A probable constraint on the genesis of intraplate volcanism
Determining parent magmatic sources of active and dormant volcanoes is crucial for understanding their formation and geodynamic processes. The Tengchong volcanic field (TCV), an intraplate volcanic group located in the southeastern part of the Qinghai–Tibet Plateau, is linked to mantle disturbances through the eastward subduction of the Indian plate. By comprehensive analysis helium and carbon isotopes in hot springs in the TCV, this study revealed that volatile degassing within the TCV predominantly originated from the mantle. Volatile degassing history, coupled with a helium magma aging model, corroborated that the helium of the parent magma was similar to that found in oceanic island basalts, probable sourced from stagnant oceanic slab dehydration above the mantle transition zone, firstly providing compelling geochemical evidence for the upwelling of profound mantle materials. This research not only elucidates the enigmatic geothermal behaviors of intraplate volcanoes but also enhances our understanding of the tectonic dynamics of SE Tibetan Plateau.
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来源期刊
CiteScore
5.90
自引率
13.80%
发文量
183
审稿时长
19.7 weeks
期刊介绍: An international research journal with focus on volcanic and geothermal processes and their impact on the environment and society. Submission of papers covering the following aspects of volcanology and geothermal research are encouraged: (1) Geological aspects of volcanic systems: volcano stratigraphy, structure and tectonic influence; eruptive history; evolution of volcanic landforms; eruption style and progress; dispersal patterns of lava and ash; analysis of real-time eruption observations. (2) Geochemical and petrological aspects of volcanic rocks: magma genesis and evolution; crystallization; volatile compositions, solubility, and degassing; volcanic petrography and textural analysis. (3) Hydrology, geochemistry and measurement of volcanic and hydrothermal fluids: volcanic gas emissions; fumaroles and springs; crater lakes; hydrothermal mineralization. (4) Geophysical aspects of volcanic systems: physical properties of volcanic rocks and magmas; heat flow studies; volcano seismology, geodesy and remote sensing. (5) Computational modeling and experimental simulation of magmatic and hydrothermal processes: eruption dynamics; magma transport and storage; plume dynamics and ash dispersal; lava flow dynamics; hydrothermal fluid flow; thermodynamics of aqueous fluids and melts. (6) Volcano hazard and risk research: hazard zonation methodology, development of forecasting tools; assessment techniques for vulnerability and impact.
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