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首页> 外文期刊>Journal of CO2 Utilization >Dissolution of heat activated serpentine for CO2 sequestration: The effect of silica precipitation at different temperature and pH values
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Dissolution of heat activated serpentine for CO2 sequestration: The effect of silica precipitation at different temperature and pH values

机译:热活化蛇形的溶解二氧化碳封存:二氧化硅沉淀在不同温度和pH值下的影响

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The dissolution of magnesium silicate minerals such as serpentine in aqueous solutions saturated or near saturated with carbon dioxide (CO2) enables its subsequent reaction to form magnesium carbonate, a process called aqueous mineral carbonation. The dissolution rate of magnesium ions (Mg2+) from thermally activated serpentine and the factors influencing the rate and extent of dissolution have been studied in our research group. The current contribution focuses on the effect of temperature and pH on the dissolution of heat activated lizardite (a polymorph of serpentine). The extent of dissolution of thermally activated lizardite was measured experimentally as a function of temperature (25 degrees C <= T <= 75 degrees C) and pH (1.2 <= pH <= 9.8). It was found that at higher temperatures the level of Mg extraction is greater during the initial stage of dissolution but is then hindered by the re-precipitation of amorphous silica. Thermodynamic modelling was used to assess the susceptibility of solid phase formation and confirmed the likelihood of re-precipitation of amorphous silica from the solutions. For the first time, in this work, the crackling core model (CCM) was used to model experimental data at different pH values.
机译:硅酸镁矿物如六烷酮在饱和或接近二氧化碳饱和(CO2)的水溶液中的溶解使其随后的反应形成碳酸镁,一种称为含水碳酸化的方法。研究组研究了镁离子(Mg2 +)的溶解速率和影响溶解速率和程度的因素。目前的贡献侧重于温度和pH对热活性蜥蜴(蛇纹石多晶型物)的影响。作为温度的函数(25摄氏度25℃)和pH(1.2 <= pH <= 9.8),通过实验测量热活化的蜥蜴的溶解程度。发现在较高温度下,在溶解的初始阶段期间Mg提取的水平更大,但是通过重新沉淀无定形二氧化硅的再沉淀来阻碍。热力学建模用于评估固相形成的易感性,并证实了来自溶液中无定形二氧化硅再析出的可能性。在这项工作中,第一次,噼啪声核模型(CCM)用于在不同pH值下模拟实验数据。

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