Post-combustion CO2 capturing by KOH solution: An experimental and statistical optimization modeling study

Shokooh Ghavamipour, Leila Vafajoo, Gilava Pourhossein, P. Parthasarathy, Gordon McKay
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Abstract

A pilot-scale bubble column contactor has been utilized for carbon dioxide chemisorption from simulated flue gas in the temperature range 30°C to 50°C. The influence of the most important operating parameters has been investigated. A total of 25 experiments were designed using the response surface methodology (RSM) and were then carried out in the bubble contact column. The results revealed that the liquid volume in the column, the alkaline concentration, and the temperature had a positive effect, while the gas hold-up had a negative effect on the CO2 removal efficiency. A statistical model has been developed using the RSM D-optimal experimental design method. To achieve the highest CO2 chemisorption, several operating conditions have been optimized. The model predicted that the maximum percentage of carbon dioxide removal would be 86.64%, and under the same operating conditions the experimental removal efficiency was 87.12%.
利用 KOH 溶液进行燃烧后二氧化碳捕集:实验和统计优化模型研究
在 30°C 至 50°C 的温度范围内,利用中试规模的气泡塔接触器对模拟烟气中的二氧化碳进行化学吸附。研究了最重要的操作参数的影响。采用响应面方法(RSM)设计了总共 25 项实验,然后在气泡接触柱中进行了实验。结果表明,塔中液体体积、碱浓度和温度对二氧化碳去除效率有积极影响,而气体截留对二氧化碳去除效率有消极影响。利用 RSM D-优化实验设计法建立了一个统计模型。为了获得最高的二氧化碳化学吸附率,对几个操作条件进行了优化。根据模型预测,二氧化碳的最大去除率为 86.64%,而在相同的操作条件下,实验去除率为 87.12%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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