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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Effects of thermal cracking of hydrocarbons on the homogenization temperature of fluid inclusions from the Niigata oil and gas fields, Japan
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Effects of thermal cracking of hydrocarbons on the homogenization temperature of fluid inclusions from the Niigata oil and gas fields, Japan

机译:碳氢化合物热裂解对日本新泻油气田流体包裹体均质温度的影响

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摘要

The changes of the homogenization temperature (Th), when hydrocarbons in inclusions were cracked thermally, were experimentally evaluated. In the experiments, the hydrocarbon-inclusions in quartz were heated in an autoclave, and the Th between before and after heating were compared. In the experiments, the Th decreased after heating. The amount of decrease became greater as the heating temperature or the duration time or both increased. The experiments also revealed that the samples with higher Th showed a greater decrease after heating. Because the experiments have been performed in a closed system, mass transfer between inclusions and the enclosing medium was impossible. No volumetric changes in the hydrocarbon inclusions were observed after heating. Therefore, the temperature depression after heating should be caused by the pyrolysis of the hydrocarbons in the inclusions.In the Shin-Kumoide SK-1D well of the Niigata oil and gas field in Japan, the Th of hydrocarbon inclusions decreases from 73 to 30 degreesC between 4040 and 4810 m in depth successively. This temperature range is lower than the present formation temperature by from 60 to 140 degreesC, and shows a trend opposite to the normal geothermal gradient. Therefore, it should reflect the degree of the thermal cracking after trapping rather than the trapping temperature. (C) 2004 Elsevier Ltd. All rights reserved.
机译:实验评估了夹杂物中的碳氢化合物热裂解时的均质温度(Th)的变化。在实验中,在高压釜中加热石英中的碳氢化合物夹杂物,并比较加热前后的Th值。在实验中,加热后Th降低。随着加热温度或持续时间或两者的增加,减少量变得更大。实验还显示,具有较高Th的样品在加热后显示出更大的降低。由于实验是在封闭系统中进行的,因此不可能在夹杂物和封闭介质之间进行质量传递。加热后未观察到烃夹杂物的体积变化。因此,加热后的温度下降应该是由于夹杂物中的碳氢化合物的热解所致。在日本新泻油气田的Shin-Kumoide SK-1D井中,碳氢化合物夹杂的Th从73降低到30摄氏度。深度在4040至4810 m之间。该温度范围比当前的地层温度低60至140摄氏度,并显示出与正常地热梯度相反的趋势。因此,它应反映捕集后的热裂程度而不是捕集温度。 (C)2004 Elsevier Ltd.保留所有权利。

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