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首页> 外文期刊>Journal of Materials Science >Experimental evaluation of interactions in supercritical CO2/water/rock minerals system under geologic CO2 sequestration conditions
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Experimental evaluation of interactions in supercritical CO2/water/rock minerals system under geologic CO2 sequestration conditions

机译:地质封存条件下超临界CO2 /水/岩石矿物体系相互作用的实验评估

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摘要

The hydrothermal autoclave experiments were conducted to simulate the interactions in the scCO(2)/water/rock minerals (quartz, biotite and granite) reaction systems using a Hastelloy C reaction cell at 100 degrees C. The dissolution characteristics of rock minerals and their surface texture alternation after hydrothermal treatment were examined by ICP-AES and SEM/EDX investigation, respectively. The results suggested that the hydrolysis of plagioclase phase should be mainly responsible for the elements dissolved from the Iidate granite samples. The dissolution was encouraged by the introduction of CO2 in the water/granite system, and generated an unknown aluminosilicate. No distinct chemical alternations occurred in the water-free scCO(2)/granite system, which indicated that rock minerals should be chemically stable in the water-free scCO(2) fluids under the current mild experimental conditions. Both the highest concentration of Ca existing in the scCO(2)/vapor/granite system and the SEM observation results of calcite deposit, suggested that a meaningful CO2 minerals trapping process should be potential in the CO2-rich field during a short physicochemical interaction period.
机译:进行了水热压热器实验,以模拟在100摄氏度下使用Hastelloy C反应池在scCO(2)/水/岩石矿物(石英,黑云母和花岗岩)反应系统中的相互作用。岩石矿物的溶解特性及其表面ICP-AES和SEM / EDX分别研究了水热处理后的织构变化。结果表明,斜长石相的水解应主要负责从Iidate花岗岩样品中溶解的元素。在水/花岗岩系统中引入二氧化碳会促进溶解,并生成未知的硅铝酸盐。在无水scCO(2)/花岗岩系统中没有发生明显的化学变化,这表明在当前温和的实验条件下,岩石矿物在无水scCO(2)流体中应具有化学稳定性。 scCO(2)/蒸气/花岗岩系统中存在的最高Ca浓度和方解石沉积物的SEM观察结果均表明,在短的理化相互作用期间,有意义的CO2矿物捕集过程应该在富含CO2的油田中具有潜力。

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