Molecular Sieve Properties for $CH_4/CO_2$ of Activated Carbon Fibers Prepared by Benzene Deposition

벤젠 증착에 의해 제조된 활성탄소섬유의 $CH_4/CO_2$ 분자체 성질

  • Published : 2005.06.30

Abstract

The activated carbon fibers of different surface area and pore structures were modified by carbon deposition from the pyrolysis of benzene, in an attempt to obtain carbon molecular sieves of high adsorption capacity and selectivity for the separation of $CO_2/CH_4$ gas mixtures. The ACFs molecular sieves prepared from different temperature and time were tested by the static adsorption of $CO_2$ and $CH_4$ gas, and their pore structures were characterized by the $N_2$ adsorption isotherms. We are able to prepare ACF molecular sieve with good selectivity for $CO_2/CH_4$ separation and showing acceptable adsorption capacities from the change of porosity by carbon deposition of pyrolyzed benzene.

[ $CO_2$ ]와 $CH_4$의 혼합가스로부터 $CO_2$를 선택적으로 분리, 회수하기 위하여 비표면적과 기공구조가 다른 일련의 활성탄소섬유에 벤젠을 CVD하여 기공 크기를 조절하였다. 벤젠 증착 온도 및 증착 시간을 변화시켜 제조한 ACF 분자체의 흡착 선택도를 $CO_2$$CH_4$의 흡착을 통해 측정하였으며, 그 기공구조를 질소흡착에 의한 흡착등온선으로부터 조사하였다. 열분해로 생성된 탄소는 활성탄소 섬유의 기공 크기를 크게 변화시켰으며, 벤젠 CVD에 의해 제조된 ACF 분자체는 $CH_4$의 흡착량을 크게 감소시키며 $CO_2$에 대해 우수한 흡착선택도를 보여주었다.

Keywords

References

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