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Sensitivity analysis of CO2 capture process in cyclic fluidized-bed with regeneration of solid sorbent

机译:固体吸附剂再生循环流化床中CO2捕获过程的敏感性分析

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In cyclic CO2 capture processes using dry sorbents, the regeneration of sorbents is a key factor that determines the overall performance and energy efficiency. In this study, the sensitivity of capture performance and energy consumption was determined using a dynamic model for a cyclic fluidized-bed system circulating a K2CO3-based sorbent. The sensitivity study focused on the sorbent properties, operating conditions, and regenerating conditions. The performance was more sensitive to the operating conditions than the physical properties of sorbent. For the carbonator, the inlet velocity of feed gas was the most critical parameter for assessing the capture efficiency, and the CO2 content in feed gas was crucial for determining the energy efficiency. A slight increase in the regeneration temperature led to a steep increase in CO2 removal performance as well as energy consumption. To achieve CO2 removal of over 78.5%, high energy consumption in the regenerator was expected. Additionally, a high capital cost would be required to procure a large-sized regenerator or compressor. Thus, at the designing stage, the target of CO2 removal should be carefully decided for the given sorbent. By varying the sorbent properties, improved CO2 removal performance was accompanied with reduced energy consumption in the regenerator. Meanwhile, the adjustment of operating conditions led to an increase in both CO2 removal and energy consumption. Therefore, a delicate control of operating conditions was required to achieve high CO2 capture performance with reasonable energy efficiency.
机译:在使用干疱疹的环状二氧化碳捕获过程中,吸附剂的再生是确定整体性能和能量效率的关键因素。在该研究中,使用循环基于K2CO3的吸附剂的循环流化床系统的动态模型确定捕获性能和能量消耗的灵敏度。敏感性研究重点是吸附剂性质,操作条件和再生条件。比吸附剂的物理性质更敏感性能比吸附剂的物理性质更敏感。对于碳酸碳,进料气体的入口速度是评估捕获效率的最关键参数,并且饲料气中的CO 2含量对于确定能量效率至关重要。再生温度略有增加导致CO 2去除性能的陡峭增加以及能量消耗。为了达到超过78.5%的二氧化碳,预计再生器中的高能耗。此外,需要高资本成本来采购大型再生器或压缩机。因此,在设计阶段,应仔细地为给定的吸附剂仔细决定CO 2去除的靶。通过改变吸附剂性能,改善的CO 2去除性能伴随着再生器能耗降低。同时,操作条件的调整导致二氧化碳去除和能耗增加。因此,需要精细控制操作条件,以实现具有合理的能量效率的高二氧化碳捕获性能。

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