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南盘江盆地中部西林断隆南翼中-下三叠统沉积学特征及其大地构造意义 被引量:3
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作者 夏文静 闫全人 +5 位作者 向忠金 夏磊 江文 卫巍 李晓剑 周斌 《岩石学报》 SCIE EI CAS CSCD 北大核心 2018年第7期2119-2139,共21页
印支造山带对华南地质演化具有重要影响,南盘江盆地作为华南与印支造山带相关的最大的盆地,其构造演化过程备受关注,然而对于盆地由伸展到挤压的构造转换时限还存在争议。西林县位于南盘江盆地的中部,古生界和中-下三叠统出露良好,是进... 印支造山带对华南地质演化具有重要影响,南盘江盆地作为华南与印支造山带相关的最大的盆地,其构造演化过程备受关注,然而对于盆地由伸展到挤压的构造转换时限还存在争议。西林县位于南盘江盆地的中部,古生界和中-下三叠统出露良好,是进行沉积大地构造学研究的理想地区。为进一步明确南盘江盆地的构造演化过程,本文选取南盘江盆地中部西林县一带中-下三叠统进行了详细的沉积相分布和演化、古水流以及碎屑组成分析。结果表明,空间上,下三叠统自下而上自北向南依次出露:(1)泥岩、泥灰岩、砂屑灰岩和凝灰岩构成的潮坪-泻湖相沉积;(2)砾岩、含砾砂岩、细砂岩和粉砂岩构成的块体搬运沉积(MTD,Mass-transport deposit)与浊积扇相沉积互层;(3)中粗砂岩、粉砂岩、泥岩组成的浊积扇相沉积,构成向上水体急剧加深的沉积序列。中三叠统为一套浊积扇相沉积,由粗砂岩、细砂岩、粉砂岩和泥岩组成。古水流和碎屑组成分析结果显示,西林县一带下三叠统碎屑物主要来自北侧西林-隆林一带的碳酸盐岩台地,而中三叠统碎屑除来自北侧相邻碳酸盐岩台地外,还可能来自江南造山带、康滇古陆、云开地块和峨眉山玄武岩。沉积相的垂向变化记录了西林一带由古生代孤立碳酸盐岩台地向三叠纪半深海浊积岩盆地的演化过程,而早三叠世MTD是盆地张开过程中的直接沉积记录,以上地质事实暗示了南盘江盆地在早三叠世受控于区域伸展体制,西林一带的古生代孤立碳酸盐岩台地则是伸展过程中形成的断隆。盆地内的基性岩墙侵位(258~248Ma)以及西林一带早三叠世晶屑沉凝灰岩的锆石U-Pb年代学分析结果(249.4±1.2Ma)表明南盘江盆地在晚二叠世至早三叠世处于伸展构造背景之下,中三叠统为半深海浊积岩沉积则表明这一伸展过程至少持续至中三叠世。由于在时间上和空间上,南盘江盆地的张开都与古特提斯分支洋盆的俯冲消减有关,因而我们认为南盘江盆地也是晚二叠世到中三叠世古特提斯洋岩石圈俯冲体系的一部分。由于南盘江盆地及其邻近区缺失上三叠统沉积,这可能说明古特提斯洋俯冲结束于中三叠世。 展开更多
关键词 西林断隆 南盘江盆地 中-下三叠统 块体搬运沉积
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黔西北及邻区安尼阶底界锆石U-Pb定年及对生物复苏的启示 被引量:1
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作者 任光明 朱同兴 +6 位作者 庞维华 王立全 金灿海 卢君勇 文俊 张鹏 周洋 《地质学报》 EI CAS CSCD 北大核心 2019年第11期2770-2784,共15页
我国西南地区广泛分布着中-下三叠统海相(包括盆地相、斜坡相及台地相)沉积地层和多层凝灰岩。通过采用锆石LA-ICP-MS U-Pb测年方法,对黔西地区沙窝剖面和彝良柳溪剖面中/下三叠统界线上凝灰岩首次进行了锆石微区同位素定年,分别获得界... 我国西南地区广泛分布着中-下三叠统海相(包括盆地相、斜坡相及台地相)沉积地层和多层凝灰岩。通过采用锆石LA-ICP-MS U-Pb测年方法,对黔西地区沙窝剖面和彝良柳溪剖面中/下三叠统界线上凝灰岩首次进行了锆石微区同位素定年,分别获得界线年龄为247.2±2.4Ma(2σ,MSWD=0.85)和247.4±1.4Ma(2σ,MSWD=0.51),界定了"黔中隆起"及北部坳陷区中/下三叠统界线时限,此年龄结果与国际地层年代表(2018版)建议的奥伦尼克阶/安尼阶(Olenekian-Anisian)界线年龄247.2Ma以及贵州关刀剖面Olenekian-Anisian界线附近凝灰岩锆石TIMS年龄247.2±0.1Ma高度吻合。凝灰岩岩石地球化学特征显示出富集K2O、MgO,具明显负铕异常的特征,其物源可能来自古特提斯洋俯冲作用形成的大陆岩浆弧。幕式的火山活动可能是导致早-中三叠世生态环境间歇性恶化和生物迟滞复苏的重要原因,而深化对三叠纪幕式岩浆活动的认识,为我国西南地区三叠纪地层划分对比、构造演化以及探索三叠纪生物复苏-辐射与生态系统协同演化等提供依据。 展开更多
关键词 安尼阶 中-下三叠统 锆石U-PB定年 凝灰岩 生物复苏
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Formation mechanism of reservoir oolitic dolomite in Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China 被引量:5
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作者 陈培元 谭秀成 +5 位作者 刘宏 马腾 罗冰 姜兴福 于洋 靳秀菊 《Journal of Central South University》 SCIE EI CAS 2014年第8期3263-3274,共12页
A series of marine natural gas fields were recently discovered in oolitic dolomites of the Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China. The mechanism forming these reservoir dolom... A series of marine natural gas fields were recently discovered in oolitic dolomites of the Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China. The mechanism forming these reservoir dolomites is debatable, limiting the ability to characterize these reservoir successfully. Based on the investigation of the representative Dukouhe, Luojiazhai, and Puguang areas, this issue was addressed by examining the distribution, petrology, and geochemistry of the dolomites, the most comprehensive study to date was provided. Dolomitization occurred at a very early stage of diagenesis, as shown by the petrological features of the rock fabric. Vadose silt, which is composed primarily of dolomitic clasts, is found in the primary and secondary pores of the oolitic dolomite. This indicates that the overlying strata were subjected to dolomitization when the Feixianguan formation was located in the vadose zone. Therefore, it may be inferred that the dolomitization which occurred before the formation was exposed to meteoric conditions. The spatial distribution and geochemical characteristics of the dolomite indicate that dolomitization occurred as a result of seepage reflux. The degree of dolomitization decreases with increasing distance from the evaporative lagoon. Furthermore, the type and porosity of the dolomite vary in different zones of the upward-shoaling sequence, with the porosity gradually decreasing from the highest layer to the lowest layer. This reflects a close relationship between dolomitization and seawater evaporation during the formation of the dolomite. Geochemical analysis provided further evidence for the relationship between the dolomitization fluid and the coeval seawater. The 87Sr/86Sr and 813C isotopes, as well as the abundances of trace elements, Fe and Mn, indicate that seawater concentrated by evaporation acted as the dolomitization fluid. These results also show that dolomitization most likely occurred in a semi-closed diagenetic environment. Therefore, the main mechanism of oolitic dolomite formation is seepage reflux, which occurred at an early stage of diagenesis. 展开更多
关键词 Lower Triassic Feixianguan formation early exposure seepage reflux DOLOMITIZATION Sichuan Basin northeastern Sichuan
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