Geochemistry and Sr–Nd isotopes of the Late Mesozoic lamprophyres in the Chaohu area, eastern China: Petrogenesis and tectonic implications

IF 1 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Island Arc Pub Date : 2022-01-06 DOI:10.1111/iar.12438
Mo Chen, Longming Li, Tianxiang Kan, Hang Liu, Xilin Zhao, Jiahao Li, Xu Han
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Abstract

Late Mesozoic lamprophyres are widespread in the Chaohu area of the Lower Yangtze region, eastern China. These mantle-derived rocks are of great significance for understanding the characteristics of mantle source and tectonic environment of eastern China during the Late Mesozoic. The lamprophyres from the Chaohu area can be divided into two types. The type-I lamprophyres have low SiO2 (43.8–44.5 wt.%) and TiO2 (1.06–1.14 wt.%), high MgO (13.5–17.5 wt.%) and high contents of compatible elements, and are enriched in LREE and LILE but depleted in HFSE. They have high initial 87Sr/86Sr (0.70767–0.70904) and negative εNd (t) (−4.8 to −4.4). The type-II lamprophyres are characterized by low contents of SiO2 (43.0–45.4 wt.%), high TiO2 (1.74–2.55 wt.%), MgO (9.17–15.4 wt.%), and compatible elements. They are also enriched in LREE and LILE but depleted in HFSE. They show enriched Sr-Nd isotopic compositions with initial 87Sr/86Sr values (0.70773–0.70886) and εNd (t) values (−8.6 to −7.8). The type-I lamprophyres show higher Mg# and MgO contents but significant lower TiO2 than the type-II lamprophyres. In addition, the type-I lamprophyres have relatively similar initial 87Sr/86Sr ratios but higher εNd(t) values than the type-II lamprophyres. The difference of geochemical characteristics between the type-I and type-II lamprophyres may be caused by different degrees of partial melting of an amphibole-bearing garnet lherzolite mantle. The lithospheric mantle was metasomatised by the fluids caused by the rollback of the Paleo-Pacific plate subduction during the Late Cretaceous.

中国东部巢湖地区晚中生代煌斑岩的地球化学和Sr-Nd同位素:岩石成因和构造意义
晚中生代煌斑岩广泛分布于中国东部长江下游巢湖地区。这些地幔源岩对了解中国东部晚中生代地幔源岩特征和构造环境具有重要意义。巢湖地区的煌斑岩可分为两类。I型煌斑岩的SiO2(43.8–44.5 wt.%)和TiO2(1.06–1.14 重量%)、高MgO(13.5–17.5重量%)和高含量的相容元素,富含LREE和LILE,但贫含HFSE。它们具有高初始87Sr/86Sr(0.70767–0.70904)和负εNd(t)(−4.8至−4.4)。II型煌斑岩的特征是SiO2含量低(43.0–45.4 wt.%),TiO2含量高(1.74–2.55 重量%)、MgO(9.17–15.4重量%)和相容元素。它们也富含LREE和LILE,但缺乏HFSE。它们显示出富集的Sr-Nd同位素组成,初始87Sr/86Sr值(0.70773–0.70886)和εNd(t)值(−8.6至−7.8)。I型煌斑岩的Mg#和MgO含量较高,但TiO2明显低于II型煌斑岩。此外,I型煌斑岩的初始87Sr/86Sr比值相对相似,但εNd(t)值高于II型煌斑岩。I型和II型煌斑岩地球化学特征的差异可能是由含角闪石石榴石二辉橄榄岩地幔的不同程度的部分熔融引起的。岩石圈地幔被晚白垩世古太平洋板块俯冲回滚引起的流体交代。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Island Arc
Island Arc 地学-地球科学综合
CiteScore
2.90
自引率
26.70%
发文量
32
审稿时长
>12 weeks
期刊介绍: Island Arc is the official journal of the Geological Society of Japan. This journal focuses on the structure, dynamics and evolution of convergent plate boundaries, including trenches, volcanic arcs, subducting plates, and both accretionary and collisional orogens in modern and ancient settings. The Journal also opens to other key geological processes and features of broad interest such as oceanic basins, mid-ocean ridges, hot spots, continental cratons, and their surfaces and roots. Papers that discuss the interaction between solid earth, atmosphere, and bodies of water are also welcome. Articles of immediate importance to other researchers, either by virtue of their new data, results or ideas are given priority publication. Island Arc publishes peer-reviewed articles and reviews. Original scientific articles, of a maximum length of 15 printed pages, are published promptly with a standard publication time from submission of 3 months. All articles are peer reviewed by at least two research experts in the field of the submitted paper.
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