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Preparation and water vapor adsorption of 'green' walnut-shell activated carbon by CO2 physical activation

机译:CO2物理活化的“绿色”核桃 - 壳活性炭的制备和水蒸气吸附

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摘要

In this study, activated carbons without any chemical residue were prepared from walnut shells. The preparation method in a tube furnace included a pyrolysis carbonization process and a CO2 activation process. The influences of activation temperature and holding time on the specific surface area, yield, and pore structure were investigated. Adsorption performance of water vapor was also examined in details. Thermogravimetric analysis, N2 adsorption- desorption isotherm, and scanning electron microscope were used to characterize samples. The result shows that the activation energy at different heating rates varies from 30.16 to 64.86 kJ/mol. The highest water vapor adsorption capacity of the sample is 0.3824 g/g and it takes only 30min to realize regeneration. And the maximum Brunauer-Emmett-Teller specific surface area of 1228m2/g also occurs in this optimal preparation condition. CO2 physical activation method was found to have a positive effect on pore structure development of activated carbon for water vapor adsorption.
机译:在该研究中,从核桃壳制备没有任何化学残留物的活性炭。管炉中的制备方法包括热解碳化过程和CO 2活化过程。研究了活化温度和保持时间对特定表面积,产率和孔结构的影响。还检查了水蒸气的吸附性能。热重分析,N2吸附 - 解吸等温和扫描电子显微镜用于表征样品。结果表明,不同加热速率下的激活能量从30.16变化到64.86 kJ / mol。样品的最高水蒸气吸附能力为0.3824g / g,只需30分钟即可实现再生。在这种最佳制剂条件下,最大的Brunauer-Emmett-excer-experter特定表面积也会发生1228m2 / g。发现CO 2物理活化方法对水蒸气吸附的活性炭的孔结构发育具有积极影响。

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