Citation: | HUANG Changhuang. 2018. Zircon U-Pb isotopic geochronology of Tongao schist in Taiwan and its geological significance[J]. Geology in China, 45(1): 81-94. doi: 10.12029/gc20180108 |
Located in the eastern part of Taiwan, the Tongao schist belongs to the northeast part of Tailuko belt and is composed of chlorite epidote schist, chlorite albite schist, mica quartz schist, quartz schist, and mica schist intercalated with graphite mica schist layer. Based on geological survey in combination with petrologic as well as major and trace element analysis, the authors hold that the original rocks were basalt, foidite or alkaline basalts and terrigenous clastic rocks. The rocks are mainly of alkaline series characterized by low Ba, high Sr and Pb, generally low total rare earth, and REE distribution patterns with features of LREE enrichment and no loss of europium. These features are similar to features of terrigenous rifting (magmatic) volcano-sedimentary rock combination. Zircons can be divided into three types, i.e., euhedral or sharply angular, subangular, and rounded ones. LAICP-MS U-Pb zircon ages have multiple peaks, in which there are four 206Pb/238U ratios; the minimum value is (95 ±3)Ma, representing euhedral zircons or sharply angular zircons and indicating late Cretaceous volcanic activity; the remaining three values are 118±2 Ma (Early Cretaceous), 160±5 Ma (Late Jurassic), and (250±3) Ma, Early Triassic), representing subangular and small euhedral zircons and indicating the magma age of corresponding source rock; there are two 207Pb/206Pb surface peak ages, i.e., 1838±41Ma and 2404±27Ma (Paleoproterozoic), representing rounded metamorphic zircons or magmatic zircon and indicating the age of Paleoproterozoic metamorphic basement. The Tongao schist was formed during the late Cretaceous in the Eurasian continental margin tectonic environment, being a product of volcanic-sedimentary activity.
Bureau of geologicaland exploration of Fujian Province. 2015.Regional Geology of Tawan Province[M]. Beijing:Geological Publishing House (in Chinese with English abstract). |
Chai B H T. 1972. Structure and tectonic ovolution of Taiwab. Tour[J]. Sciences, 272:389-422. |
Chen Zaoxia. 1998. Metamorphic rocks of Taiwan[M]. Central Geological Survey, Moea (in Chinese with English abstract). |
Huang Chiyue, Wu Weiyu, Chang Chungpai, Tsao S, Yuan Peter B, Lin Chingweei, Kuan Yuanxia. 1997. Tectonic evolution of accretionary prism in the arc-continent collision terrane of Taiwan[J]. Tectonophysics, 281:31-51. doi: 10.1016/S0040-1951(97)00157-1 |
Huang Changhuang. 2015. Fujian Dongshan late Mesozoic granite LA-ICP-MS zircon isotope dating and its geological significance[J]. Geology of Fujian, 34(4):261-271(in Chinese with English abstract). |
Huang Changhuang. 2016a. Zircon U-Pb isotopic geochronology of metamorphic rock in thr shen' ao area, Longhai, Fujian Province and its geologic significance[J]. East China Geology, 37(1):28-35(in Chinese with English abstract). |
Huang Changhuang. 2016b. Isotopic age of zircon of the Dongshan metamorphic rocks in Fujian Province and its geologic significance[J]. Geology in China, 43(3):738-750(in Chinese with English abstract). |
Huang C Y, Jien C W, Chang C P, Peter B. 2008. The Lichi Melange:A tectonic collision complex originated form sheared forearc in Coastal Range, eastern Taiwan[J]. Bulletin of the Geological Society of America, 436:127-154. |
Liu Y S, Gao S, Hu Z C, Gao C G, Zong K Q, Wang D B. 2010.Continental and oceanic crust recycling-induced melt-peridotite interactions in the Trans-North China Orogen:U-Pb dating, Hf isotopes and trace elements in zircons from mantle xenoliths[J]. Journal of Petrology, 51:537-571. doi: 10.1093/petrology/egp082 |
Mao Jianren, Li Zilong, Ye Min. 2014. Mesozonic tectonic-magmatic activities in South China:Retrospect and prospect[J]. Science China:Earth Sciences, 57:2853-2877(in Chinese with English abstract). doi: 10.1007/s11430-014-5006-1 |
Shu L S, Zhou X M, Deng P. Wang B, Jiang S, Yu J H, Zhao X X. 2009. Mesozoic tectonic evolution of the southeast china block; New insights from basin analysis[J]. Journal of Asian Earth Sciences, 34:376-391. doi: 10.1016/j.jseaes.2008.06.004 |
Shu Liangshu, Zhou Xinmin, Deng Ping, Yu Xinqi Wang Bin, Zhu Puping. 2004. Geological features and tectonic evolution of MesoCenozoic basins in southeastern China[J]. Geological Bulletin of China, 23(9/10):876-884 (in Chinese with English abstract). |
Xu Xianbing, Zhang Yueqiaom, Jia Dong, Shu Liangshu, Wang Ruirui. 2009. Early Mesozoic geotectonic processes in South China[J]. Geology in China, 36(3):573-593 (in Chinese with English abstract). |
Yui T F, Maki K, Lan C Y, Hirata T, Chu H T, Kon Y, Yokoyama T D, Jahn B M, Ernst W G. 2012. Detrital zircons from the Tananao metamorphic complex of Taiwan:Implications for sediment provenance and Mesozoic tectonics[J]. Tectonophysics, 541-543:31-42. doi: 10.1016/j.tecto.2012.03.013 |
陈肇夏. 1998. 台湾的变质岩[M]. 经济部中央地质调查所. |
邓晋福, 刘翠, 冯艳芳, 肖庆辉等. 2015.关于火成岩常用图解的正确使用:讨论与建议[J]..地质论评, 61 (4):717-734. |
冯艳芳, 邓晋福, 肖庆辉, 邢光福. 2013.长乐-南澳构造带花岗岩类年代学岩石组合与构造演化[M].北京:地质出版社. |
福建省地质矿产局. 1992. 台湾省区域地质志[M]. 地质出版社. |
福建省地质调查研究院. 2015. 台湾省区域地质志[M]. 地质出版社. |
黄长煌. 2015.福建东山晚中生代花岗岩的LA-ICP-MS锆石同位素定年及其地质意义[J].福建地质, 34(4):261-271. |
黄长煌. 2016a.福建东山变质岩LA-ICP-MS同位素年龄及其地质意义[J].中国地质, 43(3):738-750. |
黄长煌. 2016b.福建龙海深澳变质岩锆石U-Pb同位素年代学及地质意义[J].华东地质, 37(1):28-35. |
侯可军, 李延河, 田有荣.2009. LA-MC-ICP-MS锆石微区原位UPb定年技术[J].矿床地质, 28(4):481-492. |
李松茂, 曾维军. 1987.台湾地质与板块构造模式[J].海洋地质与第四纪地质, 7(4):29-37. |
林启文, 高铭建. 2009. 1: 5万台湾地质图说明书. 苏澳幅, 第二版[M]. 经济部中央地质调查所. |
毛建仁, 厉子龙, 叶敏. 2014.华南中生代构造-岩浆活动研究:现状与前景[J].中国科学:地球科学, , 44(12):2593-2617. |
舒良树, 周新民, 邓平, 余心起, 王彬, 祖辅平. 2004.中国东南部中、新生代盆地特征与构造演化[J].地质通报, 23 (9-10):876-884. |
徐先兵, 张岳桥, 贾东, 舒良树, 王瑞瑞. 2009.华南早中生代大地构造过程[J].中国地质, 36(3):573-593. |
Simplified geological map (a), tectonic map (b) and geological section (c) of Tongao, Taiwan
TAS diagram of Tongao schist (after Le Maitre et al, 1989; Deng Jinfu et al, 2015)
Primitive mantle-normalized trace elements patterns (a) and chondrite-normalized TREE patterns (b) for Tongao schist
CL characteristics and analyzed spots of zircon from Tongao schist
U-Pb age histograms of the detrital zircons from Tongao schist (sample D0007) (based on Table 2)
Chondrite-normalized REE patterns of the the zircons of Tongao schist (D0007)for Tongao schist (chondrite-normalized data after Sun S S.McDonough W F., 1989)