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Experimental mineral dissolution in Berea Sandstone reacted with CO2 or SO2-CO2 in NaCl brine under CO2 sequestration conditions

机译:在二氧化碳封存条件下,Narea盐水中的CO2或SO2-CO2与Berea砂岩中的矿物溶解实验

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摘要

A comparison of the geochemical changes induced in sandstone by either pure or impure CO2 at geological CO2 storage conditions was investigated. Samples of Berea Sandstone were batch reacted in 1% w/v NaCl brine saturated with pure CO2 or mixed SO2-CO2 gas for 360 h at 50 degrees C and 10 MPa. Geochemical analysis of incremental water samples showed increases in the concentrations of elements such as calcium, magnesium, iron, manganese, and silicon throughout experiments, likely being the products of carbonate and reactive silicate dissolution. Scanning electron microscope images taken of specific points of interest before and after batch reactions confirmed dissolution of carbonates, but showed no reaction for minerals such as K-feldspar. The magnitude of apparent mineral reaction was higher for the mixed gas SO2-CO2-brine experiment, with geochemical modelling also indicating greater dissolution of reactive silicates such as chlorite, and potential precipitation of amorphous silica. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了在地质二氧化碳储存条件下,纯净或不纯净二氧化碳引起的砂岩地球化学变化的比较。将Berea砂岩样品在1%w / v NaCl盐水中饱和,然后用纯CO2或混合的SO2-CO2气体在50摄氏度和10 MPa下分批反应360小时。对不断增加的水样进行地球化学分析表明,在整个实验过程中,钙,镁,铁,锰和硅等元素的浓度增加了,很可能是碳酸盐和活性硅酸盐溶解的产物。在批反应之前和之后对特定关注点进行的扫描电子显微镜图像确认了碳酸盐的溶解,但未显示对诸如钾长石等矿物质的反应。对于混合气体SO2-CO2-盐水实验,表观矿物反应的幅度更高,地球化学模型还表明,反应性硅酸盐(如亚氯酸盐)的溶解性更大,并且可能会沉淀出无定形二氧化硅。 (C)2014 Elsevier B.V.保留所有权利。

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