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沙捞越古晋地区伦杜基性岩的形成时代、地球化学特征及其地质意义
引用本文:房旭东,张爱梅,王岳军,胡祥云,钱鑫,何慧莹,陈敏. 沙捞越古晋地区伦杜基性岩的形成时代、地球化学特征及其地质意义[J]. 地球科学, 2021, 46(6): 2133-2144. DOI: 10.3799/dqkx.2020.048
作者姓名:房旭东  张爱梅  王岳军  胡祥云  钱鑫  何慧莹  陈敏
作者单位:自然资源部第三海洋研究所,福建厦门 361005;中国地质大学地球物理与空间信息学院,湖北武汉 430074;自然资源部第三海洋研究所,福建厦门 361005;中山大学地球科学与工程学院,广东广州 510275;中国地质大学地球物理与空间信息学院,湖北武汉 430074
基金项目:自然资源部第三海洋研究所基本科研业务费海三科2018002国家自然科学基金项目41506050广东省基础与应用基础研究基金2019B1515120019
摘    要:加里曼丹岛作为南海南部最大的岛屿,处于印度-澳大利亚板块、欧亚板块和菲律宾海板块的汇聚带,具有复杂的构造演化史.西加里曼丹岛古晋地区晚白垩世岩浆作用强烈,虽然该期基性岩分布少,但其成因研究对探讨西加里曼丹晚白垩纪构造演化过程具有重要意义.对古晋地区伦杜基性岩开展了详细的岩石学、年代学和地球化学研究,结果表明,该地区基性岩的岩石组成主要为辉绿岩和含橄榄石辉长岩,其中辉绿岩锆石定年显示其结晶年龄为83.4±0.9 Ma,说明岩体侵位于晚白垩世.岩石具有较为均一的SiO2(52.01%~52.38%),大部分样品具有较低的TiO2含量(0.81%~0.92%),K2O含量(0.37%~0.53%)和较高的Al2O3(14.00%~14.54%)、MgO(7.40%~7.86%).微量元素分析结果显示具有较低的稀土元素总量(∑REE=43.96×10-6~48.19×10-6),呈LREE轻度富集的平坦型配分模式,富集大离子亲石元素,亏损Nb...

关 键 词:伦杜基性岩  锆石U-Pb定年  E-MORB  弧后盆地  古太平洋俯冲  岩石学
收稿时间:2019-11-21

Geochronoloy and Geochemical Characteristics of Lundu Mafic Rocks in Kuching Area,Sarawak
Fang Xudong,Zhang Aimei,Wang Yuejun,Hu Xiangyun,Qian Xin,He Huiying,Chen Min. Geochronoloy and Geochemical Characteristics of Lundu Mafic Rocks in Kuching Area,Sarawak[J]. Earth Science-Journal of China University of Geosciences, 2021, 46(6): 2133-2144. DOI: 10.3799/dqkx.2020.048
Authors:Fang Xudong  Zhang Aimei  Wang Yuejun  Hu Xiangyun  Qian Xin  He Huiying  Chen Min
Abstract:Kalimantan Island is the largest island in the south of South China Sea that has undergone complex tectonic evolution, resulting from convergence of the Indian-Australian, Pacific and Philippine Sea plates. The Kuching area of Kalimantan Island has a series of Late Cretaceous magmatic rocks, but the distribution of basic rocks is less. The petrogenesis of basic rocks is significant to reveal the tectonic framework and evolution history in that period. In this study, it presents new petrographic, geochronological and geochemical data for the Lundu gabbroic pluton in the Kuching area. The basic rocks are predominantly made of dolerite and gabbro. Zircon U-Pb dating result shows that the crystallization age of the gabbro is 83.4±0.9 Ma, suggesting that the basic rocks intruded in the Late Cretaceous. These samples have low SiO2 ranging from 52.01% to 52.38%, K2O from 0.37% to 0.53% and TiO2 ranging from 0.81% to 0.92% with high Al2O3 of 14.00%-14.54% and MgO of 7.40%-7.86%. These samples are geochemically characterized by enrichment of light rare earth elements (LREE) and large-ion lithophile elements (LILE) and flat distribution of heavy rare earth elements (HREE) with light low REE abundance (∑REE=43.96×10-6-48.19×10-6). The representative samples show low initial 87Sr/86Sr ratios (0.705 1 to 0.705 3) and positive εNd(t) values (2.1 to 3.3). Combination of trace elemental and isotopic results suggest that the parental magmas were likely derived from the mantle source modified by subduction-related fluid and sediments in the back-arc basin tectonic setting in the response of the subduction of the Paleopacific plate, and may link with Southeast China, Hainan island and Vietnam. 
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