华北克拉通跨华北造山带2.7 ga基性岩脉及其构造意义

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Acta Geochimica Pub Date : 2023-09-19 DOI:10.1007/s11631-023-00638-2
Haiyan Liu, Chong Peng
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引用次数: 0

摘要

我们研究了华北克拉通横贯华北造山带的一个太古宙镁铁质岩脉,其岩浆年龄为2701年 ± 83Ma,是目前华北克拉通最古老的镁铁质岩脉。这样古老的堤防在世界上极为罕见。镁铁质岩脉的存在表明华北克拉通在2.7Ga处于张性构造环境中。地球化学特征表明该镁铁质岩堤属于大陆拉斑玄武岩。Hf同位素分析结果表明,镁铁质脉源于贫地幔。华北陆块的板块组合是在太古宙(2.7Ga)时期实现的,形成了厚而稳定的大陆地壳。因此,华北克拉通的第一次克拉通作用是在2.7Ga之前完成的。2.7Ga年龄的镁铁质岩脉从大陆深岩石圈地幔侵入,表明华北克拉通经历了一段伸展构造活动。这一事件标志着华北克拉通化后发生的一次重大伸展事件。
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2.7-Ga-old mafic dike in the Trans-North China Orogen of the North China Craton and its tectonic significance

We studied an Archean mafic dike in the Trans-North China Orogen of the North China Craton, which has a magmatic age of 2701 ± 83 Ma and is currently the oldest mafic dike in the North China Craton. Such an old dike is extremely rare in the world. The presence of mafic dikes indicates that the North China Craton was in a tensional tectonic environment at 2.7 Ga. Geochemical characteristics reveal that this mafic dike belongs to continental tholeiitic basalt. Results from Hf isotope analysis reveal that the mafic dike originates from a depleted mantle. The plate assembly in the North China landmass was realized during the Archean era (2.7 Ga), and a thick and stable continental crust was formed. Therefore, the first cratonization of the North China Craton was completed before 2.7 Ga. The intrusion of the 2.7-Ga-old mafic dike from the deep lithospheric mantle of the continent indicates that the North China Craton has undergone a period of extensional tectonic activity. This event marks a significant extensional event that occurred after the cratonization of the North China Craton.

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来源期刊
Acta Geochimica
Acta Geochimica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
2.80
自引率
6.20%
发文量
1134
期刊介绍: Acta Geochimica serves as the international forum for essential research on geochemistry, the science that uses the tools and principles of chemistry to explain the mechanisms behind major geological systems such as the Earth‘s crust, its oceans and the entire Solar System, as well as a number of processes including mantle convection, the formation of planets and the origins of granite and basalt. The journal focuses on, but is not limited to the following aspects: • Cosmochemistry • Mantle Geochemistry • Ore-deposit Geochemistry • Organic Geochemistry • Environmental Geochemistry • Computational Geochemistry • Isotope Geochemistry • NanoGeochemistry All research articles published in this journal have undergone rigorous peer review. In addition to original research articles, Acta Geochimica publishes reviews and short communications, aiming to rapidly disseminate the research results of timely interest, and comprehensive reviews of emerging topics in all the areas of geochemistry.
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