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Carbon isotope variability and sedimentology of the Upper Permian carbonate rocks and changes across the Permian-Triassic boundary in the Masore section (Western Slovenia)

机译:上二叠纪碳酸盐岩的碳同位素变异性和沉积学及其在马索尔断层(斯洛文尼亚西部)的二叠纪-三叠纪界线的变化

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摘要

Carbonate and total organic carbon stable isotope analyses of the Upper Permian and Lower Triassic succession in the Masore section in western Slovenia indicate a high storage of organic matter during the Upper Permian, as well as the well known worldwide "light carbon isotope event" across the P/Tr boundary. The per-turbations in the global carbon cycle observed in the investigated section span an approximately 50 cm thick interval (from -11 cm below to +41 cm above the lithostratigraphically determined P/Tr boundary), and coincide more or less with changes in lithology, as well as with an abrupt disappearance of Upper Permian marine fauna. In this section changes in the sedimentary environment are most probably related to Upper Permian-Lower Triassic sea level changes. The carbonate and organic carbon negative peak anomaly could be explained by accelerated changes in the end Permian carbon cycle, due to some co-occurring events, such as pronounced erosion and oxidation of organic carbon, a possible release of methane from stored hydrates, and volcanic activity, as well as by a sudden reduction in primary productivity triggered by not yet completely satisfactorily explained mechanisms.
机译:斯洛文尼亚西部Masore断层上二叠统和下三叠统演替的碳酸盐和总有机碳稳定同位素分析表明,上二叠统期间有机质储量很高,而且整个世界范围内众所周知的“轻碳同位素事件” P / Tr边界。在研究剖面中观察到的全球碳循环的扰动范围大约为50 cm厚(从岩性地层学确定的P / Tr边界以下-11 cm到上方+41 cm以上),并且与岩性的变化或多或少一致,以及上二叠纪海洋动物群突然消失。在本节中,沉积环境的变化很可能与上二叠纪-下三叠纪海平面变化有关。碳酸盐和有机碳负峰值异常可以用二叠纪末期碳循环的加速变化来解释,这是由于一些同时发生的事件,例如有机碳的明显侵蚀和氧化,可能从储存的水合物中释放出甲烷以及火山活动,以及由于尚未完全令人满意地解释机制而导致的初级生产力突然下降。

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