有机质成因、沉积环境与保存研究——以加劳组为例

M. Hemmati, Y. Ahmadi
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引用次数: 0

摘要

了解亲油烃源岩的适宜沉积环境特征,有利于油气勘探和油田开发。利用元素分析、肉眼干酪根分析和Rock-Eval热解数据,研究了伊朗西南部Lurestan省(High Zagros)不同露头剖面Garau组的有机质性质和沉积环境条件。地球化学参数表明,加劳组为ⅰ型和ⅱ型干酪根组成的优质亲油烃源岩。氧指数(OI)很低,表明有机质沉积于缺氧沉积环境,适合有机质保存和生烃。烃源岩分离干酪根的目视分析表明,暗无定形有机质(AOM)丰富,植物碎屑和黄铁矿含量少,无孢晶。在快速海侵期间,沉积作用似乎发生在碳酸盐岩盆地的深部和凹陷部分。此外,由于热成熟的影响,无定形有机物的颜色变暗。元素分析和Van-Krevelen图显示了有机质类型,揭示了油窗的热成熟度。计算了黄铁矿硫含量(Sp)和有机硫含量(So),揭示了高含量的有机硫是有机质结构的关键元素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of origin, sedimentary environment and preservation of organic matter: A case study in Garau Formation
Knowing the characteristics of suitable environments for precipitation of oil prone source rocks facilitates oil explorations and leads to development of oil fields. The current study investigates the organic matter properties and sedimentary environment conditions of the Garau Formation in various outcrop sections in Lurestan province from south-west of Iran (High Zagros) with using elemental analysis, visual kerogen analysis and Rock-Eval pyrolysis data. The geochemistry parameters indicate that the Garau Formation is an excellent oil prone source rock and composed of kerogen type I and II. The oxygen index (OI) is very low which reveals that organic matter deposited in an anoxic sedimentary environment and suitable for the preservation of organic matter and hydrocarbon generation. The visual analysis of isolated kerogens from source rock samples indicates the abundance of dark amorphous organic matter (AOM) with small amounts of phytoclasts and pyrite with no palynomorphs. Sedimentation seems to have occurred in deep and reduced parts of a carbonate basin during a rapid transgression. In addition, due to the effect of thermal maturation, the color of amorphous organic matter has darkened. The elemental analysis and Van-Krevelen diagram was shown that the type of organic matter and reveals the thermal maturity of the oil window. Moreover, amount of pyritic sulfur (Sp) and organic sulfur (So) contents have been calculated, and it was reveals that the high content of organic sulfur is a key element in the structure of organic matter.
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