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Flue gas CO2 mineralization using thermally activated serpentine: From single-to double-step carbonation

机译:使用热活化的蛇形烟气二氧化碳矿化:从单次到双步碳酸化

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This communication explores the carbonation potential of activated serpentine at flue gas conditions. A first series of single-step batch experiments was performed varying the temperature and the slurry density to systematically assess the precipitation regime of the relevant Mg-carbonates and the fate of the Si species in solution. The results suggested that the reaction progress was hindered by apassivating layer of re-precipitated silica, quartz, or carbonates, as well as by equilibrium limitations. Among several strategies that were tested to overcome these limitations, a simple double-step process that is driven by a temperature swing in combination with a low-level CO2 pressure swing is presented. Exploratory experiments are shown that prove the viability of our process, first by applying a discontinuous method, and secondly by implementing a methodology to cycle the liquid phase continuously between a dissolution reactor and a precipitator. In this way, it was possible to produce highly pure Mg-carbonates that may serve various industries.
机译:该通信探讨了烟道气条件下活化蛇形的碳化电位。第一系列单步批量实验改变温度和浆料密度,以系统地评估相关Mg-碳酸盐的沉淀制度和溶液中Si种类的命运。结果表明,通过沉淀二氧化硅,石英或碳酸盐的偶联层,以及平衡限制来阻碍反应进程。在克服这些限制的几种策略中,提出了一种简单的双步骤,其由温度摆动与低水平CO 2压力摆动的组合驱动。示出了探索性实验,证明了我们的方法的可行性,首先通过施加不连续方法,其次是通过实施方法来连续地在溶解反应器和除尘器之间循环液相。以这种方式,可以生产可提供各种行业的高纯锰碳酸盐。

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