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Assessment of CO2 adsorption capacity on activated carbons by a combination of batch and dynamic tests

机译:分批和动态测试相结合的方法评估活性炭对二氧化碳的吸附能力

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摘要

In this work, batch and dynamic adsorption tests are coupled for an accurate evaluation of CO2 adsorption performance for three different activated carbons obtained from olives stones by chemical activation followed by physical activation with CO2 at varying times, i.e. 20, 40 and 60 h. Kinetic and thermodynamic CO2 adsorption tests from simulated flue-gas at different temperature and CO2 pressure are carried out both in batch (a manometric equipment operating with pure CO2) and dynamic (a lab-scale fixed-bed column operating with CO2/N2 mixture) conditions. The textural characterization of the activated carbon samples shows a direct dependence of both micropore and ultramicropore volume on the activation time, hence AC60 has the higher contribution. The adsorption tests conducted at 273 and 293 K showed that, when CO2 pressure is lower than 0.3 bar, the lower the activation time the higher CO2 adsorption capacity and a ranking ωeq(AC20)>ωeq(AC40)>ωeq(AC60) can be exactly defined when T= 293 K. This result can be likely ascribed to a narrower pore size distribution of the AC20 sample, whose smaller pores are more effective for CO2 capture at higher temperature and lower CO2 pressure, the latter representing operating conditions of major interest for decarbonation of a flue-gas effluent. Moreover, the experimental results obtained from dynamic tests confirm the results derived from the batch tests in terms of CO2 adsorption capacity. It is important to highlight that the adsorption of N2 on the synthesized AC samples can be considered negligible. Finally, the importance of a proper analysis of characterization data and adsorption experimental results is highlighted for a correct assessment of CO2 removal performances of activated carbons at different CO2 pressure and operating temperature.
机译:在这项工作中,分批和动态吸附测试相结合,可以通过化学活化,然后在不同的时间(即20、40和60小时)用CO2进行物理活化,来准确评估从橄榄石中获得的三种不同活性炭的CO2吸附性能。从模拟烟气在不同温度和CO2压力下进行动力学和热力学CO2吸附测试,分批(使用纯CO2的压力测量设备)和动态(使用CO2 / N2混合物的实验室规模固定床色谱柱)进行条件。活性炭样品的组织表征表明,微孔和超微孔的体积都直接取决于活化时间,因此AC60的贡献更大。在273和293 K上进行的吸附试验表明,当CO2压力低于0.3 bar时,活化时间越短,则CO2的吸附能力越高,等级ωeq(AC20)>ωeq(AC40)>ωeq(AC60)可以达到在T = 293 K时精确定义。此结果可能归因于AC20样品的孔径分布较窄,其较小的孔径在较高的温度和较低的CO2压力下更能有效捕获CO2,后者代表了人们最关注的工作条件用于烟气废水的脱碳。此外,从动态测试获得的实验结果证实了从分批测试得出的关于CO2吸附量的结果。重要的是要强调,可以认为N2在合成AC样品上的吸附微不足道。最后,强调了正确分析表征数据和吸附实验结果对于正确评估活性炭在不同CO2压力和工作温度下的CO2去除性能的重要性。

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