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Effect of bed height on the carbon dioxide capture by carbonation/regeneration cyclic operations using dry potassium-based sorbents

机译:床高对干式钾基吸附剂通过碳化/再生循环操作捕集二氧化碳的影响

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摘要

The effect of bed height on CO_2 capture was investigated by carbonation/regeneration cyclic operations using a bubbling fluidized bed reactor. We used a potassium-based solid sorbent, SorbKX35T5 which was manufactured by the Korea Electric Power Research Institute. The sorbent consists of 35% K_2CO_3 for absorption and 65% supporters for mechanical strength. We used a fluidized bed reactor with an inner diameter of 0.05 m and a height of 0.8 m which was made of quartz and placed inside of a furnace. The operating temperatures were fixed at 70 ℃ and 150 ℃ for carbonation and regeneration, respectively. The carbonation/regeneration cyclic operations were performed three times at four different L/D (length vs diameter) ratios such as one, two, three, and four. The amount of CO_2 captured was the most when L/D ratio was one, while the period of maintaining 100% CO_2 removal was the longest as 6 minutes when L/D ratio was three. At each cycle, CO_2 sorption capacity (g CO_2/g sorbent) was decreased as L/D ratio was increased. The results obtained in this study can be applied to design and operate a large scale CO_2 capture process composed of two fluidized bed reactors.
机译:通过使用鼓泡流化床反应器的碳化/再生循环操作研究了床高度对CO 2捕获的影响。我们使用了由韩国电力科学研究院生产的钾基固体吸附剂SorbKX35T5。吸附剂由35%的K_2CO_3(用于吸收)和65%的载体(用于机械强度)组成。我们使用内径为0.05 m,高度为0.8 m的流化床反应器,该反应器由石英制成,并置于炉内。碳酸化和再生的工作温度分别固定在70℃和150℃。碳酸化/再生循环操作以四种不同的L / D(长度与直径)之比(例如1、2、3和4)进行了三次。当L / D比为1时,捕获的CO_2量最大,而当L / D比为3时,保持100%CO_2去除的时间最长为6分钟。在每个循环中,随着L / D比的增加,CO_2吸附容量(g CO_2 / g吸附剂)降低。这项研究中获得的结果可用于设计和运行由两个流化床反应器组成的大规模CO_2捕集过程。

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