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Integrated mineral carbonation reactor technology for sustainable carbon dioxide sequestration: ‘CO2 Energy Reactor’

机译:集成的矿物碳酸化反应器技术可实现可持续的二氧化碳隔离:“ CO2能源反应器”

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摘要

To overcome the limitations of mineral carbonation that thus far have prevented it from becoming an acceptable route to sustainable CO2 sequestration, a novel reactor technology that makes use of a Gravity Pressure Vessel is developed. The ‘CO2 Energy Reactor’ applies the principles of process integration and process intensification to achieve the technological leap needed to make mineral carbonation industrially feasible. Its autothermicity, hydrostatic pressurization, vertical plug flow design and underground installation make it an appealing alternative to other CCS techniques. This work reports the technical details of the conceptual design, and studies the effect of process parameters on reaction characteristics (kinetics and conversion) and energy balances by means of mathematical modeling. The parameter sets (particle size, solids loading, pumping rate, and reactor dimensions) that ensure autothermic behavior, maximize carbonation efficiency and enable recoverable heat generation are identified.
机译:为了克服迄今为止无法使矿物碳酸化成为可持续封存二氧化碳的可接受途径的矿物碳酸化的局限性,开发了一种利用重力压力容器的新型反应器技术。 “ CO2能源反应堆”采用过程集成和过程强化的原理,以实现使矿物碳化在工业上可行所需的技术飞跃。它的自热性,静水压力,垂直塞流设计和地下安装使其成为其他CCS技术的理想替代品。这项工作报告了概念设计的技术细节,并通过数学建模研究了工艺参数对反应特性(动力学和转化率)和能量平衡的影响。确定了确保自热行为,最大化碳化效率并实现可再生热量生成的参数集(粒度,固体负载,泵送速率和反应器尺寸)。

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