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퇴비 및 규산칼슘계 다공성 바이오필터의 벤젠휘발가스 처리
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  • 퇴비 및 규산칼슘계 다공성 바이오필터의 벤젠휘발가스 처리
  • Treatment of Benzene Vapor Gas with Compost and Calcium Silicate Porous Biofilters
저자명
박준석,남궁완,김순아,박영구,이노섭,Park. Joon-Seok,Namkoong. Wan,Kim. Sun-A,Park. Young-Goo,Lee. Noh-Sup
간행물명
한국유화학회지
권/호정보
2005년|22권 1호|pp.21-27 (7 pages)
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한국유화학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This study was conducted to evaluate the biofiltration treatment characteristic for benzene vapor gas. Compost and calcium silicate porous material were used as biofilter fillers. Gas velocity and empty bed retention time were 15 m/hr and 4 min, respectively. Benzene gas removal efficiency of P-Bio (calcium silicate porous material with inoculation) was the highest and maintained in over 98%. After shock input of benzene gas, the removal efficiency of P-Bio biofilter was recovered within 2 days, while 5 days were taken in CP-Bio (compost + calcium silicate porous material mixture with inoculation) and CP (compost + calcium silicate porous material mixture without inoculation) biofilters. The removal efficiency of P-Bio biofilter was near 100% in the loading rate of <$85g/m^3$(filling material)/hr, It was shown that the maximum elimination capacities of P-Bio, CP-Bio, and CP biofilters were 95, 69, and $66;g/m^3$(filling material)/hr, respectively. Microbial number of P-Bio, which the number was the lowest at start-up, was 3 orders increased on operational day 48. $CO_2$ was generated greatly in order of P-Bio, CP-Bio, and CP biofilters.