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不同碳材料中的 CO2 捕获。

CO2 capture in different carbon materials.

机构信息

Facultad de Ciencias Químicas/Escuela Técnica Agrícola, Departamento de Ingeniería Química, Universidad de Castilla-La Mancha, 13071 Ciudad Real, Spain.

出版信息

Environ Sci Technol. 2012 Jul 3;46(13):7407-14. doi: 10.1021/es2046553. Epub 2012 Jun 20.

Abstract

In this work, the CO(2) capture capacity of different types of carbon nanofibers (platelet, fishbone, and ribbon) and amorphous carbon have been measured at 26 °C as at different pressures. The results showed that the more graphitic carbon materials adsorbed less CO(2) than more amorphous materials. Then, the aim was to improve the CO(2) adsorption capacity of the carbon materials by increasing the porosity during the chemical activation process. After chemical activation process, the amorphous carbon and platelet CNFs increased the CO(2) adsorption capacity 1.6 times, whereas fishbone and ribbon CNFs increased their CO(2) adsorption capacity 1.1 and 8.2 times, respectively. This increase of CO(2) adsorption capacity after chemical activation was due to an increase of BET surface area and pore volume in all carbon materials. Finally, the CO(2) adsorption isotherms showed that activated amorphous carbon exhibited the best CO(2) capture capacity with 72.0 wt % of CO(2) at 26 °C and 8 bar.

摘要

在这项工作中,测量了不同类型的碳纳米纤维(血小板、鱼骨和带状)和无定形碳在 26°C 下不同压力下的 CO(2)捕获能力。结果表明,石墨化程度越高的碳材料吸附的 CO(2)越少。然后,目的是通过在化学活化过程中增加孔隙率来提高碳材料的 CO(2)吸附能力。化学活化后,无定形碳和血小板 CNF 的 CO(2)吸附能力分别提高了 1.6 倍,鱼骨和带状 CNF 的 CO(2)吸附能力分别提高了 1.1 倍和 8.2 倍。所有碳材料的 BET 比表面积和孔体积的增加导致了化学活化后 CO(2)吸附能力的增加。最后,CO(2)吸附等温线表明,在 26°C 和 8 巴下,活化无定形碳表现出最佳的 CO(2)捕获能力,CO(2)的含量为 72.0wt%。

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