晚震旦世至早寒武世扬子地台北缘碳同位素研究
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引用本文:郭庆军,刘丛强,Harald Strauss,Tatiana Goldberg.2004.晚震旦世至早寒武世扬子地台北缘碳同位素研究[J].地球学报,25(2):151-156.
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作者单位E-mail
郭庆军 中国科学院地球化学研究所环境地球化学国家重点实验室贵州贵阳550002 gqjowen@sohu.com;gqjowen@sina.com 
刘丛强 中国科学院地球化学研究所环境地球化学国家重点实验室贵州贵阳550002  
Harald Strauss Geologisch-Pal?ontologisches InstitutWestf?lische Wilhelms-Universitt Münster48148 MünsterGermany  
Tatiana Goldberg Geologisch-Pal?ontologisches InstitutWestf?lische Wilhelms-Universitt Münster48148 MünsterGermany  
基金项目:国家自然科学基金项目(40072047、40303001)
中文摘要:震旦-寒武交变期是地史上一个重大转折期,亦是一个具有特殊意义的过渡时期。运用碳同位素地球化学方法,探讨扬子地台北缘四川南江地区晚震旦世-早寒武世交变期,碳同位素地球化学异常与环境变化和生物演化的相互联系。南江剖面沉积岩有机碳同位素组成在-35.8‰~-30.1‰间变化;碳酸盐碳同位素组成从-3.5‰~ 0.5‰。在灯影组顶部、牛蹄塘组下部和上部,变化的碳、硫同位素组成和不同的黄铁矿与有机碳含量反映了有机碳埋藏量和环境的变化。下寒武统富有机碳和黄铁矿的黑色页岩沉积,暗示了早寒武世早期缺氧环境的存在。
中文关键词:晚震旦世至早寒武世  碳同位素组成  环境变化  扬子地台  四川南江
 
Isotopic Investigation of Late Neoproterozoic and Early Cambrian Carbon Cycle on the Northern Yangtze Platform, South China
Abstract:The Precambrian-Cambrian transition is one of the critical time intervals in Earth history. Profound geotectonic climatic and biological changes occurred during late Neoproterozoic and the period of its transition into early Cambrian. This paper has studied paired carbonate and organic carbon isotope determinations of samples from Nanjiang of Sichuan Province on the northern Yangtze Platform, and provided a preliminary geochemical explanation for environmental changes in relation to bio-events on the northern Yangtze Platform during the Precambrian-Cambrian transitional interval. Organic carbon isotopic compositions of sediments vary from -35.8‰ to -30.1‰ and carbonate carbon isotopic compositions change between -3.5‰ and +0.5‰ along the Nanjiang section. Varied carbon and sulfur isotopic compositions and different contents of pyrite and organic materials reflect the changing environment and the burial of organic matter in the Dengying Formation and the lower and upper parts of Niutitang Formation. The anoxic conditions result in the widespread preservation of organic-rich sediments and pyrites in the black shale on the Yangtze Platform.
keywords:Late Sinian to Early Cambrian  carbon isotope composition  environmental change  Yangtze platform  Nanjiang in Sichuan
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