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Variation in the carbon isotopic composition of alkanes during shale gas desorption process and its geological significance

机译:页岩气解吸过程中烷烃碳同位素组成的变化及其地质意义

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Taking Chang 7 shale of the Yanchang Formation in the southeastern area of the Yishan slope of the Ordos Basin as our research subject, desorption experiments were performed on more than 30 shale samples that helped this study focus on the variation of carbon isotopic composition of alkanes during the desorption process of shale gas, the possible causes of this phenomenon and its geological significance will also be discussed as follows. It was found that carbon isotopic composition became higher by 9.2‰ (from ?50.1‰ to ?40.9‰) for methane desorbed gas (δ13C1), and it also became higher by 2.8‰ (from ?35.5‰ to ?32.7‰) for ethane (δ13C2), but there's barely any differences for propane during the desorption process. At room temperature or constant temperature, carbon isotopic composition for both methane and ethane (δ13C1& δ13C2) increased continuously. The values of δ13C1and δ13C2were low at first and then it gradually became high whilst the desorption process of shale gas that was optimized with the aid of the increasing temperature. The reason for this phenomenon is most likely due to the main adsorption/desorption of shale gas and diffusion migration fractionation of isotope. Additionally, these variation characteristics of methane and ethane carbon isotope composition of shale gas may be a vital reason for the relatively low carbon isotopic composition of methane compared to δ13C calculated by means of the vitrinite reflectance (RO), and this may be applied to evaluate the remaining amount of shale gas resources.
机译:以鄂尔多斯盆地宜山斜坡东南区延长组长7页岩为研究对象,对30多个页岩样品进行了解吸实验,有助于研究重点关注烷烃碳同位素组成的变化。页岩气的解吸过程,这种现象的可能原因及其地质意义也将在下面讨论。结果发现,甲烷脱附气体(δ13C1)的碳同位素组成增加了9.2‰(从?50.1‰到?40.9‰),乙烷也增加了2.8‰(从?35.5‰到?32.7‰)。 (δ13C2),但在解吸过程中丙烷几乎没有差异。在室温或恒温下,甲烷和乙烷的碳同位素组成(δ13C1和δ13C2)连续增加。 δ13​​C1和δ13C2的值先是低的,然后逐渐变高,同时随着温度的升高,页岩气的解吸过程得以优化。造成这种现象的原因很可能是由于页岩气的主要吸附/解吸和同位素的扩散运移分级。另外,页岩气中甲烷和乙烷碳同位素组成的这些变化特征可能是与通过镜质体反射率(RO)计算的δ13C相比甲烷的碳同位素组成相对较低的重要原因,并且可以将其用于评估页岩气资源的剩余量。

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