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Guideline for the Design and Operation of Two-phase Partitioning Bioreactors for the Treatment of VOCs

첫 페이지 보기
  • 발행기관
    한국생물공학회 바로가기
  • 간행물
    한국생물공학회 학술대회 바로가기
  • 통권
    2010 추계학술대회 및 국제심포지움 (2010.10)바로가기
  • 페이지
    pp.220-220
  • 저자
    Sung Ho YEOM, Jae Min CHOI, Andrew J. DAUGULIS, David R. NIELSEN, Suk Soon CHOI
  • 언어
    영어(ENG)
  • URL
    https://www.earticle.net/Article/A129442

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원문정보

초록

영어
Two-phase partitioning bioreactors (TPPB) have attracted attention as an alternative technology for the treatment of gaseous contaminants because they have the capacity to treat high concentrations of Volatile Organic Compounds (VOCs). In this study, a strategic approach for the design of TPPBs has been formulated using, as a basis, a re-evaluation of extensive literature data available for the degradation of benzene by Achromobacter xylosoxidans Y234 in TPPBs with n-hexadecane as the partitioning phase. Our analysis began with an evaluation of the role of biomass in TPPBs given the unique characteristic of a biological steady state seen in TPPBs over extended periods of operation with continuous VOC feeding. By using a previously measured cellular maintenance coefficient, we have now predicted the mass of biocatalyst at biological steady state required for the satisfactory treatment of benzene as a function of its loading rate. Furthermore, by calculating the total oxygen transfer rate into a TPPB as a function of operating conditions (also related to the biomass level at biological steady state), we have subsequently determined the theoretical maximum benzene elimination rate that can be achieved without oxygen limitation under various agitation and aeration rates. The impacts of varying the phase volume ratio (organic:aqueous), aeration rate, and oxygen partition coefficient between the organic and aqueous phases were also examined, with the phase volume ratio being identified as a key parameter in both TPPB design and operation. The effect of the volume ratio on the mass transfer rate of benzene into the TPPB was also evaluated, and it was determined that TPPB performance can also be strongly influenced by the Henry’s law constant or solubility of a contaminant in water. Finally, we have integrated the elements of this analysis into a set of heuristic criteria that can serve as a set of guidelines for the design of TPPB systems for future VOC treatment applications.

키워드

Two-Phase Partitioning Bioreactor Operating Conditions Design Guideline

저자

  • Sung Ho YEOM [ Dept. of Environmental and Applied Chemical Engineering, Gangneung-Wonju National University, Gangneung, Gangwon-do, 210-702,Korea. ]
  • Jae Min CHOI [ Dept. of Environmental and Applied Chemical Engineering, Gangneung-Wonju National University, Gangneung, Gangwon-do, 210-702,Korea. ]
  • Andrew J. DAUGULIS [ Dept. of Chemical Engineering, Queen's University, Kingston, Ontario, Canada. ]
  • David R. NIELSEN [ Dept. of Chemical Engineering, Arizona State University, Tempe Arizona, USA. ]
  • Suk Soon CHOI [ Dept. of Biological and Environmental Engineering, Semyung University, Jechoen, Chungbuk, 390-711, Korea. ]

참고문헌

자료제공 : 네이버학술정보

간행물 정보

발행기관

  • 발행기관명
    한국생물공학회 [The Korean Society for Biotechnology and Bioengineering]
  • 설립연도
    1984
  • 분야
    공학>생물공학
  • 소개
    이 법인은 생물 공학의 발전과 보급에 이바지하고, 회원 상호 간의 연구 협력과 친목을 도모함을 목적으로 한다 1. 생물공학 분야의 발전을 위한 연구 협력 2. 생물공학의 실용화를 촉진시키기 위한 산학 협동 3. 학술연구 발표회, 강연회, 연수회 등 학술활동의 개최 4. 국,영문 학술지,소식지,학술회의 Proceedings 및 학술도서의 발간 5. 생물공학 발전을 위한 정책 건의 6. 기타 국제 교류 등 본 학회의 목적 달성을 위한 제반 활동

간행물

  • 간행물명
    한국생물공학회 학술대회
  • 간기
    반년간
  • 수록기간
    1985~2013
  • 십진분류
    KDC 476 DDC 576

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