期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
辽东五龙金矿区成矿期构造过程与岩脉就位机制 被引量:21
1
作者 肖世椰 朱光 +5 位作者 张帅 刘程 苏楠 尹浩 吴晓冬 李云剑 《科学通报》 EI CAS CSCD 北大核心 2018年第28期3022-3036,共15页
五龙金矿是华北克拉通东部辽东矿集区的典型代表,属于石英脉型金矿.但是,对于其构造控矿机制长期没有明确的认识.本次构造与年代学研究表明,该区在早白垩世初经历了近南北向挤压,形成了多条北东走向左行平移断裂,及其派生的共轭剪破裂.... 五龙金矿是华北克拉通东部辽东矿集区的典型代表,属于石英脉型金矿.但是,对于其构造控矿机制长期没有明确的认识.本次构造与年代学研究表明,该区在早白垩世初经历了近南北向挤压,形成了多条北东走向左行平移断裂,及其派生的共轭剪破裂.在随后的早白垩世期间(约131~113Ma),该区遭受了西北西-东南东向拉张,形成了北东至北北东走向正断层,并且使得前期构造复活.在此早白垩世伸展期,五龙金矿区南部侵位了三股流岩体(131~120 Ma),北部侵位了五龙背岩体(127~126 Ma),而矿区内侵位了一系列闪长岩脉、花岗岩脉、花岗伟晶岩脉、煌斑岩脉、辉绿岩脉等,前两者与含金石英脉紧密伴生.本次锆石U-Pb定年,指示区内闪长岩脉与花岗岩脉的侵位时间为127~113Ma,属于伸展活动中的同构造侵位岩脉.这些早白垩世岩脉,一方面沿着新生的北东至北北东向张裂面就位,另一方面沿着复活的早期构造就位,从而导致了区内多方位岩脉的共生现象.五龙金矿含金石英脉与这些同期岩脉具有类似的形成机制,两者常呈伴生关系,推断区内金成矿发生127~113Ma期间,属于华北克拉通破坏峰期形成的金矿.但是,五龙金矿具体成矿时间还需矿石矿物直接定年的证据. 展开更多
关键词 五龙金矿 伸展活动 岩脉就位 锆石U-Pb年龄 早白垩世
原文传递
Oceanic plate subduction history in the western Pacific Ocean:Constraint from late Mesozoic evolution of the Tan-Lu Fault Zone 被引量:48
2
作者 Guang ZHU Cheng LIU +4 位作者 Chengchuan GU Shuai ZHANG Yunjian LI Nan SU shiye xiao 《Science China Earth Sciences》 SCIE EI CAS CSCD 2018年第4期386-405,共20页
The NE-to NNE-striking Tan-Lu Fault Zone(TLFZ) is the largest fault zone in East China, and a typical representative for the circum-Pacific tectonics. Its late Mesozoic evolution resulted from subduction of the Paleo-... The NE-to NNE-striking Tan-Lu Fault Zone(TLFZ) is the largest fault zone in East China, and a typical representative for the circum-Pacific tectonics. Its late Mesozoic evolution resulted from subduction of the Paleo-Pacific Plate,and can be used for indication to the subduction history. The TLFZ reactivated at the end of Middle Jurassic since its origination in Middle Triassic. This phase of sinistral motion can only be recognized along the eastern edge of the Dabie-Sulu orogenis,and indicates initiation of the Paleo-Pacific(Izanagi) Plate subduction beneath the East China continent. After the Late Jurassic standstill, the fault zone experienced intense sinistral faulting again at the beginning of Early Cretaceous under N-S compression that resulted from the NNW-ward, low-angle, high-speed subduction of the Izanagi Plate. It turned into normal faulting in the rest of Early Cretaceous, which was simultaneous with the peak destruction of the North China Craton caused by backarc extension that resulted from rollback of the subducting Izanagi Plate. The TLFZ was subjected to sinistral, transpressive displacement again at the end of Early Cretaceous. This shortening event led to termination of the North China Craton destruction. The fault zone suffered local normal faulting in Late Cretaceous due to the far-field, weak backarc extension. The late Mesozoic evolution of the TLFZ show repeated alternation between the transpressive strike-slip motion and normal faulting. Each of the sinistral faulting event took place in a relatively short period whereas every normal faulting event lasted in a longer period, which are related to the subduction way and history of the Paleo-Pacific Plates. 展开更多
关键词 中生代 历史 进化 太平洋 早白垩纪 海洋 西方
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部