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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Lacustrine source rock deposition in response to co-evolution of environments and organisms controlled by tectonic subsidence and climate, Bohai Bay Basin, China
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Lacustrine source rock deposition in response to co-evolution of environments and organisms controlled by tectonic subsidence and climate, Bohai Bay Basin, China

机译:渤海湾盆地构造沉降与气候控制下环境与生物共同演化对湖相烃源岩沉积的响应

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摘要

Three Paleogene syn-rift intervals from the Bohai Bay Basin, the most petroliferous basin in China, were analyzed with sedimentological and geochemical techniques to characterize the lateral source rock heterogeneities, to reveal the environmental and ecological changes through geologic time and to construct depositional models for lacustrine source rocks under different tectonic and climatic conditions. The third (Es3) and first (Es1) members of the Eocene Shahejie Formation and the Oligocene Dongying Formation (Ed) display widely variable total organic carbon contents, hydrogen indices and visual kerogen compositions, suggesting changes in organic facies from deep to marginal sediments. Carefully selected deep-lake facies samples from any interval, however, display fairly uniform biomarker composition. These three intervals have distinctly different biomarker assemblages, which indicate weakly alkaline, freshwater lakes with a moderately deep thermocline during Es3 deposition, alkaline-saline lakes with shallow chemocline during Es1 deposition and acidic, freshwater lakes with deep, unstable thermocline during the deposition of the Dongying Formation. Such environmental changes corresponded to changes in subsidence rate and paleoclimate, from rapid subsidence and wet climate during Es3 deposition, through slow subsidence and arid climate during Es1 deposition to rapid subsidence and wet climate during Ed deposition and resulted in synchronous changes in terrigenous organic matter input, phytoplankton community and primary productivity. The co-evolution of environments and organisms controlled by tectonic subsidence and climate accounted for the deposition and distribution of high quality lacustrine source rocks with distinctly different geochemical characteristics. Most rift basins experienced changes in subsidence rates and possibly changes in climates during their syn-rift evolutions. The models constructed in this paper may have important implications for source rock prediction in other lacustrine rift basins.
机译:运用沉积学和地球化学技术分析了渤海湾盆地(中国石油最多的盆地)的三个古近纪同分裂间隔,以表征横向烃源岩的非均质性,通过地质时间揭示环境和生态变化,并建立了沉积模型。在不同构造和气候条件下的湖相烃源岩。始新世沙河街组和渐新世东营组(Ed)的第三(Es3)和第一(Es1)成员显示总有机碳含量,氢指数和可见的干酪根组成变化很大,表明有机相从深到边缘沉积物都有变化。但是,从任何间隔中精心选择的深湖相样品均显示出相当均匀的生物标志物成分。这三个间隔具有明显不同的生物标志物组合,表明在Es3沉积过程中弱碱性的淡水湖泊具有中等深度的温跃层,在Es1沉积过程中的碱性盐湖具有较浅的趋化层,而酸性淡水湖泊在沉积过程中具有深而不稳定的温跃层。东营组。这些环境变化对应于沉降速率和古气候的变化,从Es3沉积期间的快速沉降和潮湿气候,到Es1沉积期间的缓慢沉降和干旱气候,到Ed沉积期间的快速沉降和潮湿气候,导致陆源有机质输入量同步变化。 ,浮游植物群落和初级生产力。受构造沉降和气候控制的环境和生物体的共同演化解释了具有明显不同地球化学特征的优质湖相烃源岩的沉积和分布。大多数裂谷盆地在同裂谷演化过程中经历了沉降速率的变化,并且可能经历了气候变化。本文构建的模型可能对其他湖相裂谷盆地的烃源岩预测具有重要意义。

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