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Efficiency of magnesium hydroxide as engineering seal in the geological sequestration of CO2

机译:氢氧化镁作为二氧化碳地质封存工程封闭的效率

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摘要

Injection of CO2 at depth will cause the acidification of groundwater. As a preliminary study for the potential use of MgO as an alternative to Portland cement in injection wells, MgO carbonation has been studied by means of stirred batch experiments under subcritic (pCO(2) of 10 and 50 bar and T of 25, 70 and 90 degrees C) and supercritic (pCO(2) of 74 bar and T of 70 and 90 degrees C) CO2 conditions.; Magnesium oxide reacts with CO2-containing and Ca-rich water nearly equilibrated with respect to calcite. MgO quickly hydrates to brucite (Mg(OH)(2)) which dissolves causing the precipitation of magnesium carbonate phases. Precipitation of these secondary phases (magnesite and/or metastable phases such as nesquehonite (MgCO3 3H(2)O) or hydromagnesite (Mg-5(CO3)(4)(OH)(2) 4(H2O)) depends on pCO(2), temperature and solid/water content. In a constant solid/water ratio, the precipitation of the non-hydrated Mg carbonate is favored by increasing temperature and pCO(2).; The experimental variation of Mg and Ca concentrations and pH over time at the different temperatures and pCO(2) has been simulated using the CrunchFlow reactive transport code. Simulations reproduce the experimental evolution of the aqueous concentrations and indicate a decrease in porosity when increasing temperature and pCO(2). This decrease in porosity would be beneficial for the sealing properties of the cement. These results have been used in the simulation of an application case with a deep borehole surrounded by MgO cement at 90 degrees C.
机译:深度注入二氧化碳会引起地下水酸化。作为在注入井中潜在使用MgO替代波特兰水泥的一项初步研究,已通过在亚临界(pCO(2)为10和50 bar,T为25、70和70 90°C)和超临界(pCO(2)为74 bar,T为70和90°C)的CO2条件。氧化镁与含CO2的水和富含Ca的水(与方解石几乎平衡)反应。 MgO迅速水合成水镁石(Mg(OH)(2)),水镁石溶解,导致碳酸镁相沉淀。这些次生相(菱镁矿和/或亚稳相,如菱镁矿(MgCO3 3H(2)O)或水菱镁矿(Mg-5(CO3)(4)(OH)(2)4(H2O))的沉淀取决于pCO( 2),温度和固/水含量。在固/水比例恒定的情况下,温度和pCO(2)的增加有利于非水合碳酸镁的沉淀;; Mg和Ca浓度以及pH的实验变化在不同温度下的时间,使用CrunchFlow反应性传输代码模拟了pCO(2),该模拟重现了水浓度的实验变化,并表明当温度和pCO(2)升高时孔隙率降低。这些结果已用于模拟在90摄氏度时被MgO水泥包围的深井眼的应用案例。

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