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New Equipment for Complementary Petrophysical Characterization of Rocks for Deep Geological Storage

机译:用于深部地质存储的岩石的互补岩石物理表征的新设备

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摘要

The geological storage of CO2 in coal seams is an emerging option in the portfolio of mitigation actions for reduction of atmospheric greenhouse gas concentrations. A background study focused to the selection of favorable sites for CO2 geological storage are necessary steps, and in the selection of reservoirs for CO2 sequestration a complete petrophysical characterization of the sample is necessary. To complement the classical petrophysical parameters measured on the rocks of the geological formation with potential to be used to store the injected CO2, a new equipment has been designed and constructed to simulate at a laboratory scale the inter-action between the rock and the injected CO2, at different pressure conditions simulating depths of the geological formations up to 1000 m. The design and construction of this equipment allows us to investigate known physical and chemical processes that occur between the rocks store/seal and the fluid injected into geological storage. Essays focused to study the alterability of the rock in contact with CO2 either in subcritical or supercritical state, as well as essays for CO2 injectivity on the rock can be accomplished.
机译:煤层中二氧化碳的地质封存是减少大气温室气体浓度的缓解措施组合中的新兴选择。进行背景研究的重点是选择二氧化碳地质封存的有利地点,这是必不可少的步骤,而在选择用于二氧化碳封存的储层时,必须对样品进行完整的岩石物理表征。为了补充在地质构造岩石上测得的经典岩石物理参数,并有潜力用于存储注入的二氧化碳,设计并构造了一种新设备,可在实验室规模模拟岩石与注入的二氧化碳之间的相互作用在不同的压力条件下,模拟高达1000 m的地质构造深度。该设备的设计和构造使我们能够研究岩石存储/密封与注入地质存储的流体之间发生的已知物理和化学过程。着重研究亚临界或超临界状态下与CO2接触的岩石的易变性的散文,以及关于在岩石上注入CO2的论文都可以完成。

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