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Experimental investigation of thermal maturation on shale reservoir properties from hydrous pyrolysis of Chang 7 shale, Ordos Basin

机译:鄂尔多斯盆地长7页岩含水热解对页岩储层物性的热成熟实验研究

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摘要

Thermal maturity has a significant impact on hydrocarbon generation and the storage capacity within shales, but explicit and quantitative characterization of that impact on continental shales is scarce. To better understand how thermal maturation affects the organic and inorganic changes of the continental shale reservoirs, hydrous pyrolysis was performed to simulate the maturation process. TOC, Rock-Eval and adsorption isotherms tests were used to obtain various geochemical parameters of the shale solid residues. The results indicate that with pyrolysis temperature increasing from ambient temperature to 550 degrees C, the vitrinite reflectance increases from 0.5% to 2.5% Ro and the TOC (total organic carbon) loss weight reaches 25%. Regarding porosity, the fraction of micro-to meso-pores in the shale increases with an increase in the pyrolysis temperature, whereas the macro-pores do not change significantly. The total amount of gas adsorption does not necessarily increase as the TOC is consumed, but the gas adsorption capacity per unit of TOC increases with increasing thermal maturity. Our finding provides theoretical modelling for identifying shale gas development prospective zones according to thermal maturity mapping and for predicting quantitatively the geochemical and inorganic changes that occur with thermal evolution. (C) 2015 Elsevier Ltd. All rights reserved.
机译:热成熟度对页岩中的碳氢化合物的产生和存储能力有重大影响,但对陆相页岩的影响缺乏明确和定量的表征。为了更好地了解热成熟如何影响陆相页岩储层的有机和无机变化,进行了含水热解以模拟成熟过程。使用TOC,岩石评估和吸附等温线测试获得了页岩固体残留物的各种地球化学参数。结果表明,随着热解温度从环境温度增加到550摄氏度,镜质体反射率从0.5%Ro增加到2.5%Ro,TOC(总有机碳)损失重量达到25%。关于孔隙率,页岩中微孔至中孔的比例随热解温度的升高而增加,而大孔则没有明显变化。气体吸附的总量不一定随TOC的消耗而增加,但是每单位TOC的气体吸附能力随热成熟度的增加而增加。我们的发现提供了用于根据热成熟度图识别页岩气开发前景带以及定量预测随着热演化而发生的地球化学和无机变化的理论模型。 (C)2015 Elsevier Ltd.保留所有权利。

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