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A model on an entrained bed-bubbling bed process for CO_2 capture from flue gas

机译:烟气中CO_2捕集的鼓泡床过程模型

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摘要

A simplified model has been developed to investigate effects of important operating parameters on performance of an entrained-bed absorber and bubbling-bed regenerator system collecting CO2 from flue gas. The particle population balance was considered together with chemical reaction to determine the extent of conversion in both absorber and regenerator. The calculated CO2 capture efficiency agreed with the measured value reasonably well. Effects of absorber parameters - temperature, gas velocity, static bed height, moisture content of feed gas on CO2 capture efficiency - have been investigated in a laboratory scale process. The CO2 capture efficiency decreased as temperature or gas velocity increased. However, it increased with static bed height or moisture concentration. The CO2 capture efficiency was exponentially proportional to each parameter. Based on the absolute value of exponent of the parameter, the effect of gas velocity, static bed height, and moisture content was one-half, one-third, and one-fourth as strong as that of temperature, respectively.
机译:已开发出简化模型,以研究重要操作参数对从烟气中收集二氧化碳的夹带床吸收器和鼓泡床再生器系统性能的影响。考虑了粒子总数的平衡以及化学反应,以确定吸收器和再生器中的转化程度。计算出的二氧化碳捕集效率与测量值相当吻合。在实验室规模的过程中研究了吸收器参数的影响-温度,气体速度,静态床高度,进料气的水分含量对CO2捕集效率的影响。随着温度或气体速度的增加,CO2捕集效率降低。但是,它随床高或湿度的增加而增加。 CO2捕集效率与每个参数成指数比例。根据该参数的指数绝对值,气体速度,静态床高度和水分含量的影响分别是温度的一半,三分之一和四分之一。

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