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密閉環境內固體吸收劑循環凈化CO2反應特性

Reaction characteristics of CO2 circulation purification by solid absorbents in closed environments

  • 摘要: 選取LiOH、Ca(OH) 2 和鈉石灰三種常用固體化學吸收劑,在密閉環境CO2循環凈化模擬裝置上開展了CO2循環凈化實驗研究.三種吸收劑均有吸收CO2的作用,且均存在一個較優空速值,分別為110400、38700和40500 h-1,在該空速值條件下將體積分數2%左右的CO2吸收至0.03%左右所需反應時間最短,反應速率最大.通過函數擬合和數學分析,得出實驗條件下三種吸收劑反應速率與CO2質量濃度的關系式以及最大反應速率的排列次序.進一步的分析表明,三種吸收劑在較優空速值條件下的CO2吸收速率均能達到相關標準的要求,可以實際應用于密閉環境內CO2凈化,且密閉環境中CO2體積分數理論上會在一定的中間值附近波動.

     

    Abstract: By using a simulation device of CO2 circulation purification in a closed environment, CO2 circulation purification experiments were carried out with three kinds of solid chemical absorbents, LiOH, Ca(OH) 2 and soda lime. Experimental results show that all the absorbents can absorb CO2, and there are the optimal space velocity values for the three absorbents, which are 110400, 38700, and 40500 h-1, respectively. Under these space velocity value conditions, the reaction time is the shortest and the reaction rate is the fastest for absorbing the CO2 volume fraction of 2% to 0.03%. The relationships between reaction rate and CO2 mass concentration as well as the maximum reaction rate order of the three absorbents under experimental conditions were obtained by function fitting and mathematical analysis. Further analysis indicates that the CO2 absorption rates of the three absorbents under the optimal space velocity value conditions are able to meet the requirements of relevant standards for actual CO2 purification in closed environments, while the CO2 volume fraction would fluctuate around certain intermediate values in theory.

     

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