Adakitic rocks associated with the Shilu copper–molybdenum deposit in the Yangchun Basin,South China,and their tectonic implications

被引:17
作者
Lipeng Zhang [1 ,2 ]
Yongbin Hu [1 ]
Jinlong Liang [3 ]
Trevor Ireland [4 ]
Youliang Chen [3 ]
Rongqing Zhang [1 ]
Saijun Sun [1 ]
Weidong Sun [5 ,6 ]
机构
[1] CAS Key Laboratory of Mineralogy and Metallogeny,Guangzhou Institute of Geochemistry,Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
[3] Department of Geochemistry,Chengdu University of Technology
[4] Research School of Earth Sciences,The Australian National University,Bldg Mills Road Acton ACT
[5] Center of Deep Sea Research,Institute of Oceanography,Chinese Academy of Sciences
[6] CAS Center for Excellence in Tibetan Plateau Earth Sciences,Chinese Academy of Science
关键词
Shilu deposit; Adakitic rocks; Cretaceous; Neo-Tethys; South China;
D O I
暂无
中图分类号
P618.41 [铜]; P618.65 [钼];
学科分类号
0709 ; 081803 ;
摘要
South China is famous for the extensive magmatism and polymetallic mineralization that took place there in the Mesozoic. Shilu is a large porphyry–skarn Cu–Mo deposit in the Yangchun Basin, South China. The lithology of the Shilu intrusion is granodiorite and quartz diorite, both of which are high-K calc-alkaline series, with high Sr([400 ppm) content along with low Y and Yb contents. Most of the samples have characteristics of adakite except for a few samples that have slightly higher Y and Yb contents, which may be plausibly explained by crustal contamination. Laser Ablation Inductively Coupled Plasma Mass Spectrometry zircon U–Pb dating revealed ages between 106.6 ± 1.3 and 103.9 ± 0.5 Ma, with multiple magmatic pulses. Molybdenite Re–Os isochron age of 102.2 ± 2.9 Ma(MSWD = 9.4) was determined, which is identical to the youngest zircon U–Pb age(103.9 ± 0.5 Ma) within error.The Shilu intrusion has high oxygen fugacity as indicated by high zircon Ce4+/Ce3+ and EuN/EuN* ratios. Considering the geochemical characteristics(high Sr, and low Y and Yb contents), high oxygen fugacity, and copper mineralization of the Shilu intrusion, it was most likely formed by partial melting of a subducted young oceanic slab. Whole-rock Sr–Nd isotope-, zircon Hf isotope-, and whole-rock trace element analyses show that Shilu adakitic magmas may have interacted with type II enriched mantle and/or crustal materials during ascent. South China was affected by the Pacific tectonic regime to the east and the Neo-Tethys tectonic regime to the south in the Cretaceous. Based on the Pacific Plate drifting and rotation history, it is hard to explain how the Pacific Plate would have subducted and melted, forming adakitic rocks in the Shilu region. Considering the tectonic history of Southeast Asia and the South China Sea, the Neo-Tethys trench should have been much closer to the South China Block in the Cretaceous, and thus have had a greater impact on the South China Block. Based on the subduction direction, time of subduction,and distance between the Neo-Tethys subduction zone and the Shilu deposit, subduction of the Neo-Tethys ridge is the best mechanism for explaining the Shilu adakitic rocks and Cu–Mo mineralization.
引用
收藏
页码:132 / 150
页数:19
相关论文
共 52 条
[1]  
Initiation and evolution of the South China Sea: an overview[J]. Weidong Sun.Acta Geochimica. 2016(03)
[2]   西藏南木林晚白垩世辉绿岩与花岗质脉岩成因及其揭示的伸展背景 [J].
叶丽娟 ;
赵志丹 ;
刘栋 ;
朱弟成 ;
董国臣 ;
莫宣学 ;
胡兆初 ;
刘勇胜 .
岩石学报, 2015, 31 (05) :1298-1312
[3]   广东阳春盆地石菉铜矿床U-Pb年代学及其地质意义 [J].
段瑞春 ;
杨红梅 ;
张利国 ;
刘重芃 ;
蔡应雄 ;
张富铁 ;
林伟鹏 ;
梅玉萍 .
大地构造与成矿学, 2013, 37 (04) :754-764
[4]   广东阳春锡山钨锡矿床成岩成矿年代学研究 [J].
梅玉萍 ;
杨红梅 ;
段瑞春 ;
张利国 ;
蔡应雄 ;
童喜润 ;
谭娟娟 ;
刘重芃 ;
卢山松 .
地质学报, 2013, 87 (09) :1370-1376
[5]   广东天堂铜铅锌多金属矿床Rb-Sr等时线年龄及其地质意义 [J].
郑伟 ;
陈懋弘 ;
徐林刚 ;
赵海杰 ;
凌世彬 ;
吴越 ;
胡耀国 ;
田云 ;
吴晓东 .
矿床地质, 2013, 32 (02) :259-272
[6]   粤西石菉铜钼矿床Re-Os同位素年龄及其地质意义 [J].
赵海杰 ;
郑伟 ;
余长发 ;
胡耀国 ;
田云 .
中国地质, 2012, 39 (06) :1604-1613
[7]   广东省阳春市南山崩坑—石屋铅锌铜锡矿床地质特征 [J].
吴剑 ;
曾小华 .
资源环境与工程, 2011, 25 (03) :201-202+208
[8]   西藏南部冈底斯带东段晚白垩世埃达克岩:新特提斯洋脊俯冲的产物? [J].
管琪 ;
朱弟成 ;
赵志丹 ;
张亮亮 ;
刘敏 ;
李小伟 ;
于枫 ;
莫宣学 .
岩石学报, 2010, 26 (07) :2165-2179
[9]  
Ridge subduction and porphyry copper-gold mineralization:An overview[J]. SUN WeiDong1,2, LING MingXing1,3, YANG XiaoYong2, FAN WeiMing1, DING Xing1 & LIANG HuaYing41 CAS Key Laboratory of Isotope Geochronology and Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China;2 Research Center for Mineral Resources, School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China;3 Graduate University of Chinese Acade
[10]  
Cretaceous volcanic-intrusive magmatism in western Guangdong and its geological significance[J]. S. Y. O’Reilly.Science in China(Series D:Earth Sciences). 2006(07)