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온습도에 따른 제올라이트의 톨루엔 흡착 특성 KCI 등재

Toluene adsorption characteristics of zeolite depending on temperature and relative humidity

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실내환경 및 냄새 학회지 (Journal of Odor and Indoor Environment)
한국냄새환경학회 (Korean Society Of Odor Research And Engineering)
초록

Adsorption technology can effectively handle the volatile organic compounds (VOCs) from waste gas. However the adsorption of VOCs at elevated temperature (>30oC) and high humidity conditions results in competitive adsorption between VOCs and the moisture. Furthermore, physical adsorption at an elevated temperature is the cause of degradation in the regeneration process performance. In this study, toluene as waste organic solvent in air at elevated temperature and high humidity was used to measure performance. The effects of the SiO2/Al2O3 ratio of zeolites, the adsorbent material coated on adsorption regenerative rotors, on the adsorption performance of toluene with respect to temperature (30~50oC) and relative humidity (50~90%RH) have been investigated. The adsorption of toluene decreased as relative humidity and adsorption temperature rose. The result shows that Htype ZSM5 (SiO2/Al2O3=100) zeolite exhibited the highest adsorption capacity for toluene at elevated temperature and humidity conditions. The physical and chemical adsorption of toluene on acid sites of zeolite were confirmed by this study.

목차
1. 서 론
 2. 연구방법
  2.1 실험재료
  2.2 실험방법 및 장치
  2.3 흡착량
 3. 결과 및 고찰
  3.1 제올라이트 type에 따른 톨루엔 흡착효율 비교
  3.2 제올라이트 SiO2/Al2O3 비와 수증기 양에 따른 톨루엔 흡착특성
  3.3 제올라이트 SiO2/Al2O3비와 흡착온도에 따른 톨루엔 흡착특성
  3.4 열분석 실험결과
 4. 결 론
 감사의 글
 References
저자
  • 조민휘((주)엔바이온 환경연구소) | Min-Whee Cho (Environmental Research Institute, enbion Inc.)
  • 안동찬((주)엔바이온 환경연구소) | Dongchan Ahn (Environmental Research Institute, enbion Inc.)
  • 임봉빈((주)엔바이온 환경연구소) | Bongbeen Yim (Environmental Research Institute, enbion Inc.) Corresponding author
  • 올렌켄((주)엔바이온 환경연구소) | Ken Ohlen (Environmental Research Institute, enbion Inc.)
  • 이승길((주)엔바이온 환경연구소) | Seung-Kil Lee (Environmental Research Institute, enbion Inc.)
  • 이현재((주)엔바이온 환경연구소) | Hyun-Jae Lee (Environmental Research Institute, enbion Inc.)
  • 유윤종(한국에너지기술연구원) | Yoonjong Yoo (Korea Institute of Energy Research)