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Influence of regeneration conditions on the cyclic performance of amine-grafted mesoporous silica for CO_2 capture: An experimental and statistical study

机译:再生条件对胺接枝介孔二氧化硅吸附CO_2的循环性能的影响:实验和统计研究

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摘要

This work deals with the behavior of amine-grafted mesoporous silica (referred to as TRI-PE-MCM-41) throughout adsorption-desorption cycles in the presence of 5% CO_2/N_2 using various regeneration conditions in batch experiments. The criteria proposed to determine the optimum regeneration conditions are the working adsorption capacity, the rate of desorption and the change of adsorption capacity between consecutive cycles. Using a 2~3 factorial design of experiments, the impact on the performance of the adsorbent of different levels of temperature, pressure, and flow rate of purge gas during desorption was determined. It was found that all the parameters under study have a statistically significant influence on the working adsorption capacity, but only temperature is influential with respect to desorption rate. Regeneration using temperature swing was found to be attractive, as the highest CO_2 adsorption capacity (1.95 mmol g~(-1)) and the fastest desorption rate (9.82×10~(-4) mmol g~(-1) s~(-1)) occurred when desorption was carried out at 150 °C. However, if vacuum is applied, regeneration can be achieved at a temperature as low as 70 °C with only a 13% penalty in terms of working adsorption capacity. It was also demonstrated that under the proper regeneration conditions, TRI-PE-MCM-41 is stable over 100 adsorption-desorption cycles.
机译:这项工作处理了在5%CO_2 / N_2存在下,采用分批实验的各种再生条件,在整个吸附-解吸循环中胺接枝的介孔二氧化硅(称为TRI-PE-MCM-41)的行为。建议的确定最佳再生条件的标准是工作吸附容量,解吸速率和连续循环之间吸附容量的变化。使用2〜3个因子设计的实验,确定了在解吸过程中,不同温度,压力和吹扫气体流速对吸附剂性能的影响。已经发现,所有正在研究的参数对工作吸附容量具有统计学上的显着影响,但只有温度对解吸速率有影响。发现通过变温进行再生具有吸引力,因为其最高的CO_2吸附容量(1.95 mmol g〜(-1))和最快的脱附速率(9.82×10〜(-4)mmol g〜(-1)s〜(当在150°C进行解吸时发生-1))。但是,如果施加真空,则可在低至70°C的温度下实现再生,而对工作吸附能力的影响仅为13%。还证明了在适当的再生条件下,TRI-PE-MCM-41在100个吸附-解吸循环中是稳定的。

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