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作 者:鄢全树[1] 石学法[1] 王昆山[1] 柳小明[2]
机构地区:[1]海洋沉积与环境地质国家海洋局重点实验室,国家海洋局第一海洋研究所,山东青岛266061 [2]西北大学大陆动力学国家重点实验室,西北大学地质系,西安710069
出 处:《地质学报》2008年第8期1057-1067,共11页Acta Geologica Sinica
基 金:青岛市科技将才专项计划项目(编号05-2-JC-79);科技基础性工作和社会公益研究专项项目(编号2003DIB3J114)资助成果
摘 要:南沙微地块一直被作为华南大陆的一部分,但缺乏基底岩石学证据的支持。本文首次报道了南沙微地块花岗质岩石岩浆锆石年龄。测年方法为激光剥蚀等离子体质谱(LA-ICPMS)测年技术。在站位S08-18获得2个斜长花岗岩样品年龄:分别为159.1±1.6Ma和157.8±1.0Ma,在站位S08-32获得两个二长花岗岩样品年龄:分别为153.6±0.3Ma和127.2±0.2Ma,表明它们为燕山期晚侏罗世—早白垩世岩浆事件的产物。其中153~159Ma年龄值可与南岭燕山期花岗岩年龄比较,而127Ma年龄值可与浙闽沿海燕山期花岗岩年龄对比。一个样品中存在一个年龄为656.7Ma的残余锆石核,结合中西沙发现的前寒武纪基底岩石资料,表明南海内散落的微地块可能广泛存在前寒武纪结晶基底,本区中生代花岗岩为古老陆壳重熔形成的。这一新的资料,对研究燕山期岩浆作用在中国南部的影响范围、南海微陆块前寒武纪地质及微陆块的裂离动力学都具有重要意义。The Nansha micro block in South China Sea has long been regarded as part of South China block, but no any petrologic evidence supports this idea. Using LA-ICPMS, this study firstly reports magmatic zircon ages for granitic rocks from the Nansha micro-block, South China Sea. The ages for two plagiogranite samples from sampling location S08-18 are 159. 1±1. 6Ma and 157. 8 ± 1. 0Ma, and those for two adamellite samples from sampling location S08-32 are 153. 6±0. 3Ma and 127. 2±0. 2Ma. The dating results suggest that these granitic rocks are the products of late Jurassic to early Cretaceous tectono-thermal events during the Yanshanian era, the ages for 153 to 159Ma are comparable to those of the Yanshanian ganite in the Nanling region, and that for 127Ma is comparable to those of the Yanshanian ganite in the Zhejiang-Fujian coastal region. Of them, a relic zircon core with an age of 656.7Ma combined with petrologic data of for the Precambrian crystalline basement in the Zhongsha-Xisha micro-blocks, suggest that these micro-blocks distributed within the South China Sea are likely to be the Precambrian basement. Mesozoic granite in these micro-blocks may be the product of crustal remehing of the old Precambrian basement. The new data obtained in this study is of great significance in studying impact of Yanshanian magmatism on southern China, tectonic evolution of the South China Sea since late Mesozoic era, and rifting dynamics of micro-blocks in the South China Sea.
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