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西藏海相三叠系-侏罗系界线及晚三叠世生物绝灭事件研究
引用本文:阴家润,蔡华伟,周志广,张翼翼,段翔,谢尧武.西藏海相三叠系-侏罗系界线及晚三叠世生物绝灭事件研究[J].地学前缘,2006,13(4):244-254.
作者姓名:阴家润  蔡华伟  周志广  张翼翼  段翔  谢尧武
作者单位:中国地质大学(北京),北京,100083;中国科学院南京地质古生物研究所,江苏,南京,210008;西藏地质勘察局,区域地质调查大队,西藏,拉萨,851400
摘    要:1998—2004年间在西藏聂拉木、林周、墨竹工卡和洛扎等地进行的三叠系/侏罗系界线地层研究表明,西藏隆子县和洛扎县尚未发现具有连续菊石层序的三叠系/侏罗系界线地层剖面。拉萨以北地区广泛分布的火山岩时代确定为晚三叠世—早侏罗世早期,这有助于解释晚三叠世末期生物绝灭与晚三叠世岩浆侵入和大规模的火山活动有关,但T/J界线尚待精确限定。聂拉木县格米格剖面是特提斯地区唯一未曾“压缩”的三叠系/侏罗系界线地层剖面,具有瑞替阶MARSHI菊石带、赫塘阶Tibeticum、Callyphyllum和Pleuro-notum菊石带。格米格剖面三叠系/侏罗系界线碳稳定同位素曲线记录了晚三叠世瑞替阶末期(Marshi菊石带)突然的负偏移,它很有可能和晚三叠世末期的由超级温室效应所产生的生物绝灭事件相对应。

关 键 词:西藏  晚三叠世末期生物绝灭  瑞替阶  赫塘阶  菊石带  碳稳定同位素负偏移
文章编号:1005-2321(2006)04-0244-11
收稿时间:2005-10-28
修稿时间:2006-03-14

Study of marine Triassic/Jurassic boundary stratigraphy and the latest Triassic mass extinction in Tibet
YIN Jia-run,CAI Hua-wei,ZHOU Zhi-guang,ZHANG Yi-yi,DUAN Xiang,XIE Yao-wu.Study of marine Triassic/Jurassic boundary stratigraphy and the latest Triassic mass extinction in Tibet[J].Earth Science Frontiers,2006,13(4):244-254.
Authors:YIN Jia-run  CAI Hua-wei  ZHOU Zhi-guang  ZHANG Yi-yi  DUAN Xiang  XIE Yao-wu
Institution:1, China University of Geosciences , Beij ing 100083, China; 2. Nanjing Institute of Geology and Paleontology, CAS, Nanjing 210008,China; 3. Geological Survey Team of Tibetan Geological Exploring Bureau, Lhasa 851400, China
Abstract:Study of the latest Triassic extinction is required to define the Triassic and Jurassic boundary; the field work has recently been carried out in the Nyalam, Linzhou, Muzugongka, Longzi and Lhoza areas, Tibet during the years from 1998-2004. No continuous ammonoid-biostratigraphic sequence across the Triassic and Jurassic boundary has been known from the Longzi and Lhoza areas. Data from the Lhasa block indicate that the late Triassic magmatic and volcanic activities were likely the cause of the mass extinction, however, the Triassic and Jurassic boundary there requires to exactly define. The ammonoid succession from the Germig section which is the only uncondensed Triassic and Jurassic boundary section in the Tethyan realm, allows to the establishment of the latest Triassic Marshi zone of the Rhaetian, the earliest Jurassic Tibeticum zone of the Hettangian, as well as the Hettangian Calliphyllum and Pleuronotum zones; the end-Triassic mass extinction is coupled with a carbon isotope negative excursion. The relationship implies that the biotic crisis is related to the changes in the global carbon cycle. A pronounced negative excursion is recognized at the T-J boundary between Triassic and Jurassic in coincidence with the end-Triassic extinction, caused likely by a “super greenhouse” effect.
Keywords:Tibet  end-Triassic extinction  Rhaetian  Hettangian  arnmonoid zone  carbon isotope negative excursion
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