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Adsorption Kinetics for CO2 Capture using Cerium Oxide Impregnated on Activated carbon

机译:使用氧化铈浸渍在活性炭上的CO2捕获的吸附动力学

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Various metal oxides of CeO 2 , ZnO, and Co 3 O 4 impregnated on activated carbon (AC) were synthesized to determine the CO 2 capture efficiency and analyse with adsorption kinetics model. Batch kinetic studies showed that CeO 2 /AC is the most efficient adsorbent with an equilibrium time of 10 minutes that was needed to obtain adsorption capacity of 52.68 mg/g. CO 2 adsorption at 30 °C exhibits the optimum temperature with only 6.53% loss in adsorption capacity after 5 cycles of CO 2 adsorption-desorption. The CeO 2 on AC was detected through X-ray diffraction and the scanning electron microscope image shows well-distributed CeO 2 particles on AC surfaces. CO 2 adsorption at 30 °C is best fitted with the pseudo-second-order kinetics with R 2 = 0.9994 and the relative error between calculated and experimental adsorption capacity only 1.32%. The adsorption considering chemisorption is responsible for improving adsorption capacity. The addition of CeO 2 on AC enhanced the adsorption capacity by providing active sites to attract CO 2 .
机译:合成CeO 2,ZnO和CO 3 O 4的各种金属氧化物浸渍在活性炭(AC)上,以确定CO 2捕获效率并用吸附动力学模型分析。批量动力学研究表明,CEO 2 / AC是最有效的吸附剂,其平衡时间为10分钟,以获得52.68mg / g的吸附能力。 CO 2在30℃下吸附在CO 2吸附 - 解吸的5个循环后,在5次循环后,吸附能力仅为6.53%。通过X射线衍射检测AC上的CEO 2,扫描电子显微镜图像显示在AC表面上分布良好的CEO 2颗粒。 CO 2在30℃下吸附最佳配备伪二阶动力学,伪二阶动力学,R 2 = 0.9994,计算和实验吸附能力之间的相对误差仅为1.32%。考虑化学吸附的吸附是有责任提高吸附能力。通过提供活性位点以吸引CO 2,增加CEO 2的CEO 2增强了吸附能力。

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