Production of Activated Carbon from Bamboo by Gas Activation Method

기상 활성화법에 의한 대나무 활성탄 제조

  • 조광주 (경상대학교 화학공학과) ;
  • 박영철 (경상대학교 화학공학과)
  • Published : 2004.06.01

Abstract

The activated carbon was produced from Sancheong bamboo by steam and carbon dioxide gas activation methods. The carbonization of raw material was conducted at 90$0^{\circ}C$ and gas activation reactions were conducted with respect to various conditions. -activation temperature 750-90$0^{\circ}C$, the flow rate of steam 0.5-2g-$H_2O$/g-char$.$hr, the flow rate of carbon dioxide 5-30$m\ell$-$CO_2$/g-char-min and activation time 1-5 hr. The prepared activated carbons were measured yield, the adsorption capacity of iodine and methylene blue, BET specific surface area and pore size distribution. The adsorption capacity of iodine (680.5-1526.1 mg/g) and methylene blue (18.3-221.5 mg/g) increased with creasing activation temperature and activation time. The adsorption capacity of iodine and methylene blue increased with the activation gas quantity in the range of 0.5-1.5g-$H_2O$/g-charㆍhr, 5-18.9$m\ell$-Co$_2$/g-charㆍmin. But those decreased over those range due to the pore shrinkage. The steam activation method was superior in efficiency to carbon dioxide activation method.

Keywords

References

  1. Activated Carborn Hassler, J.W.
  2. 부산 광역시 연구보고서 입상활성탄 국산화 타당성 조사 송승구;이송구;권태훈;문장천
  3. 화학공학의 이론과 응용 v.2 no.2 홍종철;이민형;김명수
  4. 대한환경공학회지 v.22 no.6 최정일;이상봉;김동윤
  5. 대한환경공학회지 v.21 no.10 백일현;빈현숙
  6. Ind. Eng. Chem. Res. v.36 Satya Sai, P.M.;Ahmed Jaleel;Krishnaiah, K.
  7. FUEL v.70 Franciso Sa'nchez-Iniguez and Cristobal Valenzuela-Calahorro Vicente Go'mez-Serrano
  8. 대한환경공학회지 v.22 no.12 이송우;문장천;이창한;최동훈;류동춘;송승구
  9. 화학공학 v.25 no.6 이선희;장윤호;조병린;김광호
  10. KS M1802 활성탄 시험 방법 한국 산업 규격
  11. KS M1421 입상 활성탄 규격 한국 산업 규격
  12. KS M1413 분말 활성탄 규격 한국 산업 규격
  13. Applied Chemistry v.2 no.2 박종대;심재우;이철태
  14. 대한환경공학회지 v.20 no.5 김상철;홍인권
  15. 화학공학 v.36 no.6 김명수;홍종철