宝鸡浴成岩中的早侏罗世A型花岗岩和闪长岩:对中国秦岭造山带从碰撞后延伸至造山运动后延伸的构造转变的影响

IF 2 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Frontiers in Earth Science Pub Date : 2024-07-03 DOI:10.3389/feart.2024.1428055
Xiangkuan Gong, Nijiati Abuduxun, Xiaoliang Jia, Yuanfeng Cheng, Hongming Cai, Xueqian Wu, Haodong Yang
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引用次数: 0

摘要

引言秦岭造山带早侏罗世花岗岩在理解中国地质演化的构造影响方面起着至关重要的作用。为阐明秦岭造山带早侏罗世构造背景,我们对秦岭造山带西部宝鸡浴成岩中的早侏罗世单斜花岗岩和长石花岗岩进行了锆石U-Pb年龄、全岩地球化学和原位锆石Lu-Hf同位素的综合分析:侵入体的锆石 U-Pb 年龄分别为 186 ± 2 Ma 和 188 ± 2 Ma:单斜岩的特点是氧化镁、Rb、Th、U 和 LREE 含量相对较高,而 P、Ti 和 HREE 含量较低。它们还表现出较高的 Nb/Ta 比率(20.6-23.4)。闪长岩样品的锆石εHf(t)值在-4.36到6.47之间,表明来自肥沃的大陆岩石圈地幔的贡献很大,地壳成分也参与其中。K长石花岗岩富含K2O+ Na2O、Rb、Zr、Hf和Nb,而Ba、Sr、Ti和P含量较低。它们的地球化学特征显示出与 A 型花岗岩的亲缘关系,锆石饱和温度较高(848°C-900°C)。此外,K长石花岗岩表现出的稀土元素和痕量元素形态与在单斜辉长岩中观察到的相似。然而,锆石的εHf(t)值范围很广(-4.72至3.98),与单斜岩的εHf(t)值不同,这表明K长石花岗岩的母岩经历了单斜岩浆和地壳源长石岩浆之间的岩浆混合:讨论:这些研究结果表明,A型K长石花岗岩和闪长岩都可能是在后成因过程中形成的。此外,QOB在侏罗纪早期就开始了后成因演化,成为一个伸展构造环境。
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Early Jurassic A-type granite and monzodiorite from the Baoji batholith: Implication for tectonic transition from post-collision to post-orogenic extension in the Qinling Orogenic Belt, China
Introduction: The early Jurassic granitoids in the Qinling Orogenic Belt (QOB) play a crucial role in understanding the tectonic implications for the geological evolution of China. To elucidate the early Jurassic tectonic setting of QOB, we performed a comprehensive analysis of zircon U-Pb ages, whole-rock geochemistry, and in situ zircon Lu-Hf isotopes from early Jurassic monzodiorite and Kfeldspar granite within the Baoji batholith in western QOB.Geochronology Method and Results: The intrusions yielded zircon U-Pb ages of 186 ± 2 Ma and 188 ± 2 Ma, respectively.Geochemistry Results: The monzodiorites are characterized by relatively high MgO, Rb, Th, U, and LREE contents, as well as low P, Ti, and HREE contents. They also exhibit high Nb/Ta ratios (20.6–23.4). The zircon εHf(t) values for the monzodiorite sample range from −4.36 to 6.47, indicating significant contributions from a fertile continental lithospheric mantle with the involvement of crustal components. The K-feldspar granites are enriched in K2O+ Na2O, Rb, Zr, Hf, and Nb, and lower Ba, Sr, Ti, and P. They exhibit high Nb/Ta and Ga/Al ratios but low Y/Nb and Yb/Ta ratios. Their geochemical characteristics reveal an A-type granite affinity with elevated zircon saturation temperatures (848°C–900 °C). Additionally, the K-feldspar granite exhibits REE and trace element patterns similar to those observed in the monzodiorite. However, a wide range of zircon εHf(t) values (−4.72 to 3.98), differing from those of the monzodiorite, indicate that the parental magma of the K-feldspar granite experienced magma mixing between a monzodioritic magma and a crustal-derived felsic magma.Discussion: These findings suggest that both A-type K-feldspar granite and monzodiorite likely formed during post-orogenic processes. Additionally, the QOB commenced its postorogenic evolution as an extensional tectonic environment during the early Jurassic period.
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来源期刊
Frontiers in Earth Science
Frontiers in Earth Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
3.50
自引率
10.30%
发文量
2076
审稿时长
12 weeks
期刊介绍: Frontiers in Earth Science is an open-access journal that aims to bring together and publish on a single platform the best research dedicated to our planet. This platform hosts the rapidly growing and continuously expanding domains in Earth Science, involving the lithosphere (including the geosciences spectrum), the hydrosphere (including marine geosciences and hydrology, complementing the existing Frontiers journal on Marine Science) and the atmosphere (including meteorology and climatology). As such, Frontiers in Earth Science focuses on the countless processes operating within and among the major spheres constituting our planet. In turn, the understanding of these processes provides the theoretical background to better use the available resources and to face the major environmental challenges (including earthquakes, tsunamis, eruptions, floods, landslides, climate changes, extreme meteorological events): this is where interdependent processes meet, requiring a holistic view to better live on and with our planet. The journal welcomes outstanding contributions in any domain of Earth Science. The open-access model developed by Frontiers offers a fast, efficient, timely and dynamic alternative to traditional publication formats. The journal has 20 specialty sections at the first tier, each acting as an independent journal with a full editorial board. The traditional peer-review process is adapted to guarantee fairness and efficiency using a thorough paperless process, with real-time author-reviewer-editor interactions, collaborative reviewer mandates to maximize quality, and reviewer disclosure after article acceptance. While maintaining a rigorous peer-review, this system allows for a process whereby accepted articles are published online on average 90 days after submission. General Commentary articles as well as Book Reviews in Frontiers in Earth Science are only accepted upon invitation.
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