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Impact of CO2-indueed geochemical reactions on the mechanical integrity of carbonate rocks

机译:二氧化碳诱导地球化学反应对碳酸盐岩机械完整性的影响

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In a CO2 storage site, carbonate rocks might be good reservoir rocks or good seals depending on their porosity and permeability. However, these properties may change in time due to deformation processes related to CO2 injections and/or withdraws. In this pilot study, we investigate at the laboratory scale the influence of CO2-induced geochemical reactions on the mechanical integrity of carbonate rocks. To achieve this target, we have performed an experimental HP-HT test on brine saturated oolitic limestone samples that were exposed to 230 bar CO2 pressure and 37.5°C reaction temperature (supercritical conditions) for a period of 2 weeks. Although changes in fluid chemistry have been identified via ICP-OES analysis, we have observed no particular differences in terms of ooids and cement deformation and/or calcite dissolution when comparing ESEM images of pre-arid post-treatment samples. We are currently performing more experiments under different conditions (particularly longer exposure and higher brine-rock ratios that can be linked to higher dissolution of calcite) in order to better understand the dominant CO2 sequestration mechanisms in oolitic limestone-containing reservoirs.
机译:在二氧化碳储存场所,碳酸盐岩石可能是良好的储层岩石或良好的密封,这取决于它们的孔隙率和渗透性。然而,由于与CO2注射和/或退出相关的变形过程,这些特性可能随着时间的变形过程而变化。在这项试点研究中,我们在实验室规模调查了CO2诱导的地球化学反应对碳酸盐岩石机械完整性的影响。为了达到该靶,我们在盐水饱和鲕粒石灰石样品上进行了实验HP-HT试验,其暴露于230巴CO2压力和37.5℃的反应温度(超临界条件),为2周。尽管通过ICP-OES分析鉴定了流体化学的变化,但是当比较预治疗预处理样品的ESEM图像时,我们已经观察到OIOIDS和水泥变形和/或方解石溶解的特定差异。我们目前在不同的条件下进行更多实验(特别更长的曝光和较高的盐水岩比可以与方解石溶解)相关),以便更好地理解含鲕粒石灰石的储存器中的显性CO2螯合机制。

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