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首页> 外文期刊>International Journal of Earth Sciences >Modeling of gas generation from the Alam El-Bueib formation in the Shoushan Basin, northern Western Desert of Egypt
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Modeling of gas generation from the Alam El-Bueib formation in the Shoushan Basin, northern Western Desert of Egypt

机译:埃及西部沙漠北部寿山盆地Alam El-Bueib地层的天然气生成模型

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摘要

The Shoushan Basin is an important hydrocarbon province in the northern Western Desert, Egypt, but the burial/thermal histories for most of the source rocks in the basin have not been assigned yet. In this study, subsurface samples from selected wells were collected to characterize the source rocks of Alam El-Bueib Formation and to study thermal history in the Shoushan Basin. The Lower Cretaceous Alam El-Bueib Formation is widespread in the Shoushan Basin, which is composed mainly of shales and sandstones with minor carbonate rocks deposited in a marine environment. The gas generative potential of the Lower Cretaceous Alam El-Bueib Formation in the Shoushan Basin was evaluated by Rock-Eval pyrolysis. Most samples contain sufficient type III organic matter to be considered gas prone. Vitrinite reflectance was measured at eight stratigraphic levels (Jurassic-Cretaceous). Vitrinite reflectance profiles show a general increase of vitrinite reflectance with depth. Vitrinite reflectance values of Alam El-Bueib Formation range between 0.70 and 0.87 VRr %, indicating a thermal maturity level sufficient for hydrocarbon generation. Thermal maturity and burial histories models predict that the Alam El-Bueib source rock entered the mid-mature stage for hydrocarbon generation in the Tertiary. These models indicate that the onset of gas generation from the Alam El-Bueib source rock began in the Paleocene (60 Ma), and the maximum volume of gas generation occurred during the Pliocene (3-2 Ma).
机译:寿山盆地是埃及西部沙漠北部的重要油气省,但该盆地大多数烃源岩的埋藏/热史尚未确定。在这项研究中,从选定的井中收集了地下样品,以表征Alam El-Bueib组的烃源岩并研究寿山盆地的热史。下白垩统Alam El-Bueib组广泛分布于寿山盆地,主要由页岩和砂岩组成,少量碳酸盐岩沉积在海洋环境中。通过Rock-Eval热解法评价了寿山盆地下白垩统Alam El-Bueib组的天然气成藏潜力。大多数样品含有足够的III型有机物,被认为容易产生气体。在八个地层水平(侏罗纪-白垩纪)测量玻璃体反射率。玻璃陶瓷反射率曲线显示,随着深度的增加,镜质体反射率总体增加。 Alam El-Bueib组的玻璃体反射率值在0.70至0.87 VRr%之间,表明足以形成烃的热成熟度水平。热成熟度和埋藏历史模型预测,Alam El-Bueib烃源岩进入了第三纪烃源岩的成熟期。这些模型表明,Alam El-Bueib烃源岩的生气始于古新世(60 Ma),而最大的生气量发生在上新世(3-2 Ma)。

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