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Isotopic evolution of the terminal Neoproterozoic and early Cambrian carbon cycle on the northern Yangtze Platform, South China
作者姓名:GUO Qingjun  LIU Congqiang  Harald STRAUSS  Tatiana GOLDBERG
作者单位:Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China;Graduate School, Chinese Academy of Science, Beijing 100018, China,Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China,Geologisch-Palaontologisches Institut, Westfalische Wilhelms-Universitat Münster, 48148 Münster, Germany,Geologisch-Palaontologisches Institut, Westfalische Wilhelms-Universitat Münster, 48148 Münster, Germany
基金项目:Supported by the National Natural Science Foundation of China (Grant Nos. 40072047, 40232020) and DFG (Grant No. Str 281/16-1)
摘    要:Profound geotectonic, climatic and biological changes occur during the terminal Neoproterozoic and its transition into the early Cambrian. These are reflected in temporal variations of the chemical and isotopic composition of seawater. We are studying a sequence of sedimentary rocks at the Shatan section, northern Yangtze Platform, Sichuan Province of China. This succession comprises, in ascending stratigraphic order, predominantly calcareous sediments of the Sinian upper Dengying Formation and black shales of the lower Cambrian Guojiaba Formation (time equivalent of Niutitang Fm.). Paleoenvironmental setting represents shallow-water shelf deposits. The objective of our study is to provide temporal records for the isotopic compositions of organic and carbonate carbon throughout this time interval. Organic carbon isotope values display a range between -35.8‰ and -30.1‰ with clear stratigraphic variations. Carbonate carbon isotope data vary between -3.5‰ and +0.5‰. These secular variations are interpreted to reflect perturbations of the global carbon cycle, specifically changes in the fractional burial of organic carbon. However, local conditions have further affected the isotopic signals.

关 键 词:terminal  Neoproterozoic    Early  Cambrian    carbonate  and  organic  carbon  isotopic  composition    Yangtze

Isotopic evolution of the terminal Neoproterozoic and early Cambrian carbon cycle on the northern Yangtze Platform, South China
GUO Qingjun,LIU Congqiang,Harald STRAUSS,Tatiana GOLDBERG.Isotopic evolution of the terminal Neoproterozoic and early Cambrian carbon cycle on the northern Yangtze Platform, South China[J].Progress in Natural Science,2003,13(12):942-945.
Authors:GUO Qingjun  LIU Congqiang  Harald Strauss  Tatiana Goldberg
Institution:1. Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China;Graduate School, Chinese Academy of Science, Beijing 100018, China
2. Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China
3. Geologisch-Palaontologisches Institut, Westfalische Wilhelms-Universitat Münster, 48148 Münster, Germany
Abstract:Profound geotectonic, climatic and biological changes occur during the terminal Neoproterozoic and its transition into the early Cambrian. These are reflected in temporal variations of the chemical and isotopic composition of seawater. We are studying a sequence of sedimentary rocks at the Shatan section, northern Yangtze Platform, Sichuan Province of China. This succession comprises, in ascending stratigraphic order, predominantly calcareous sediments of the Sinian upper Dengying Formation and black shales of the lower Cambrian Guojiaba Formation (time equivalent of Niutitang Fm.). Paleoenvironmental setting represents shallow-water shelf deposits. The objective of our study is to provide temporal records for the isotopic compositions of organic and carbonate carbon throughout this time interval. Organic carbon isotope values display a range between -35.8‰ and -30.1‰ with clear stratigraphic variations. Carbonate carbon isotope data vary between -3.5‰ and +0.5‰. These secular variations are interpreted to reflect perturbations of the global carbon cycle, specifically changes in the fractional burial of organic carbon. However, local conditions have further affected the isotopic signals.
Keywords:terminal Neoproterozoic  Early Cambrian  carbonate and organic carbon isotopic composition  Yangtze
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