巴基斯坦晚中新世喜马拉雅前陆盆地中siwalik沉积物有机质来源与古环境重建[j]

Abbas R. Ali, Pan Jiayong, Y. Jie, Ahmad Nabi
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引用次数: 0

摘要

研究了喜玛拉雅西北前陆褶皱冲断带苏尔格尔—辛加尔山脉中siwalik组Dhok Pathan组砂岩岩心样品的稳定碳同位素(8c)和有机质来源特征。这些沉积物记录了有关古植被类型和古环境/沉积环境的宝贵信息。稳定碳同位素分析结果为-24.50 ~ -28.43%,平均值为-26.56%。这些值对应于冷生长期C3植被,支持晚中新世C3生物量在该区生态系统中占主导地位的假设。植物碎屑的特征为腐殖/镜质组,来源于陆生植物,被称为iii型干酪根。细菌活性的真菌攻击、剥蚀和蚀变、黄铁矿的生化降解、替代/成岩发育等特征表明,该砂岩是在缺氧条件下沉积的,属于原生还原性砂岩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Source of Organic Matter and Paleo-Environmental Reconstruction 13 Using 8 C Isotope from Mid-Siwalik Sediments of a Late Miocene Himalayan Foreland Basin, Pakistan
This study examined the stable carbon isotope13 (8 C) and characterization of sources of organic matter from core samples of sandstones of mid-Siwalik group Dhok Pathan Formation from Surghar- Shingar Range of NW Himalayan foreland Fold-and-Thrust-Belt. These sediments have recorded valuable information regarding the palaeo-vegetation type and paleo-environment/depositional environments. The analytical results of stable carbon isotope range from -24.50 to -28.43% with an average value of -26.56%. These values correspond to C3 vegetation of cool growing season and support the hypothesis of the dominance of C3 biomass in the ecosystem during the late-Miocene in this area. The phytoclasts are  characterized as huminite/vitrinite, derived from terrestrial plants and referred to as type-III kerogen. The fungal attack, scaring and pitting of bacterial activity, biochemical degradation, replacement/diagenetic development of pyrite suggest that these sandstones of Dhok Pathan Formation were deposited under dyoxic conditions and thus these sandstones are primary reduced sandstones.
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