Early Cretaceous Metasomatized Lithospheric Mantle beneath the Central Jiangnan Orogen in South China: Geochemical and Sr-Nd Isotope Evidence from the Tuanshanbei Dolerite

IF 3.5 3区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Acta Geologica Sinica ‐ English Edition Pub Date : 2023-10-28 DOI:10.1111/1755-6724.15129
Cheng WANG, Hantao WEI, Qingquan LIU, Zhao YANG
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Abstract

It is well established that Cretaceous magmatism in the South China Block (SCB) is related to the Paleo-Pacific subduction. However, the starting time and the associated deep crust-mantle processes are still debatable. Mafic dike swarms carry important information on the deep earth (including mantle) geodynamics and geochemical evolution. In the Jiangnan Orogen (South China), there is no information on whether the Mesozoic magmatic activities in this region are also directly related to the Pacific subduction or not. In this study, we present detailed zircon U-Pb geochronological, whole-rock element and Sr-Nd isotope data for Early Cretaceous Tuanshanbei dolerite dikes, and provide new constraints on the condition of the lithospheric mantle and mantle dynamics of the SCB during that time. LA-ICP-MS zircon U-Pb dating suggests that this dolerite erupted in the Early Cretaceous (∼145 Ma). All samples have alkaline geochemical affinities with K2O + Na2O = 3.11–4.04 wt%, K2O/Na2O = 0.50–0.72, and Mg# = 62.24–65.13. They are enriched in LILE but depleted in HFSE with higher initial 87Sr/86Sr ratio (0.706896–0.714743) and lower εNd(t) (–2.61 to –1.67). They have high Nb/U, Nb/La, La/Sm and Rb/Sr, and low La/Nb, La/Ta, Ce/Pb, Ba/Rb, Tb/Yb and Gd/Yb ratios. Such geochemical signatures suggest that the fractional crystallization is obvious but crustal contamination play a negligible role during magmatic evolution. Tuanshanbei dolerite were most likely derived from low-degree (2%–5%) partial melting of a phlogopite-bearing mantle material consisted of ∼85% spinel peridotite and ∼15% garnet peridotite previously metasomatized by asthenosphere-derived fluids/melts with minor subduction-derived fluids/melts. Slab-rollback generally lead to the upwelling of the hot asthenosphere. The upwelling of asthenosphere consuming the lithospheric mantle by thermo-mechanical-chemical erosion. The lithospheric mantle may have partially melted due to the heating by the upwelling asthenosphere and lithospheric extension. It is inferred that the Tuanshanbei dolerite might be associated with the initial slab rollback and corresponding lithospheric extension occurred potentially at ca. 145 Ma.

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华南中江南造山带下的早白垩世变质岩石圈地幔:来自团山北辉绿岩的地球化学和Sr-Nd同位素证据
华南地块白垩纪岩浆活动与古太平洋俯冲有关,这一点已得到公认。然而,其起始时间和相关的地壳-地幔深部过程仍有争议。岩浆岩堤群蕴含着地球深部(包括地幔)地球动力学和地球化学演化的重要信息。在江南造山带(华南),中生代岩浆活动是否也与太平洋俯冲直接相关,目前尚无资料。本研究详细介绍了早白垩世团山北辉长岩岩洞的锆石U-Pb地质年代、全岩元素和Sr-Nd同位素数据,为研究该时期华南板块岩石圈地幔状况和地幔动力学提供了新的约束。LA-ICP-MS锆石U-Pb年代测定表明,该辉绿岩爆发于早白垩世(∼145 Ma)。所有样品的地球化学性质均为碱性,K2O + Na2O = 3.11-4.04 wt%,K2O/Na2O = 0.50-0.72, Mg# = 62.24-65.13。它们富含 LILE,但贫乏 HFSE,初始 87Sr/86Sr 比率较高(0.706896-0.714743),εNd(t) 较低(-2.61 至 -1.67 )。它们的Nb/U、Nb/La、La/Sm和Rb/Sr比率较高,而La/Nb、La/Ta、Ce/Pb、Ba/Rb、Tb/Yb和Gd/Yb比率较低。这些地球化学特征表明,岩浆演化过程中,分块结晶作用明显,但地壳污染作用微乎其微。团山北辉绿岩很可能是由含辉绿岩的地幔物质低度(2%-5%)部分熔融而成,地幔物质由85%的尖晶橄榄岩和15%的石榴石橄榄岩组成,之前被来自星体层的流体/熔融体和少量来自俯冲的流体/熔融体所变质。板岩后滚一般会导致热的星体层上涌。星体层的上涌通过热-机械-化学侵蚀消耗岩石圈地幔。岩石圈地幔可能因上涌的星体层加热和岩石圈延伸而部分熔化。据此推断,团山北辉绿岩可能与最初的板块后退有关,相应的岩石圈延伸可能发生在大约 145 Ma。145 Ma。
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来源期刊
Acta Geologica Sinica ‐ English Edition
Acta Geologica Sinica ‐ English Edition 地学-地球科学综合
CiteScore
3.00
自引率
12.10%
发文量
3039
审稿时长
6 months
期刊介绍: Acta Geologica Sinica mainly reports the latest and most important achievements in the theoretical and basic research in geological sciences, together with new technologies, in China. Papers published involve various aspects of research concerning geosciences and related disciplines, such as stratigraphy, palaeontology, origin and history of the Earth, structural geology, tectonics, mineralogy, petrology, geochemistry, geophysics, geology of mineral deposits, hydrogeology, engineering geology, environmental geology, regional geology and new theories and technologies of geological exploration.
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