• 제목/요약/키워드: Biohazard

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생물안전 3등급(BSL3)시설의 생물재해 시나리오에 따른 실내 공기환경예측에 관한 연구 (A Study on the Prediction of Indoor Environment in Bio Safety Level 3 Laboratory According to Biohazard Scenario)

  • 박현진;홍진관
    • 설비공학논문집
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    • 제22권11호
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    • pp.745-750
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    • 2010
  • Since the implementation of the LMO Law in Korea, the importance of the design qualification of BSL3 lab. is emphasizing. In this study, multizone simulation for three kind of biohazard scenarios using CONTAM is performed for design qualification of BSL3 lab. Also, in the case of unexpected spread of contaminants such as Influenza A virus(H1N1) in BL3 zone, the design qualification is carried out for diffusion and decontamination of contaminants according to differential pressure of BSL3 anteroom and door area of BSL3 lab. Also, in this study, appropriateness of laboratory room differential pressure and air flow rate to maintain pressure difference between laboratory rooms, and energy consumption due to air change rate variation according to door area in BL3 lab. Simulation results show that these approach methods are used as a tool for the design and verification of BL3 lab.

극저주파 자기장 노출에 의한 세포 유해성 평가 (Cellular Risk Assessment of Cells Exposed to Extremely Low Frequency Electromagnetic Fields)

  • 강흥식;이성표;노명규;김기정;김기광
    • 디지털융복합연구
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    • 제19권5호
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    • pp.207-214
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    • 2021
  • 인간은 환경적으로 다양한 전자기파에 노출되어 있으나 전자기파에 대한 유해성 평가 및 이를 위한 시스템의 개발은 미진한 상태이다. 따라서 우리는 전자기파에 대한 생물학적 유해성 평가를 위한 시스템을 개발하고, 시스템을 통한 생물학적 유해성 평가를 하고자 한다. 본 연구에서는 극저주파 자기장 발생장치를 설계 및 제작하였으며 장치의 출력 신뢰성을 확인하였다. 이 장치를 활용하여 고자기장인 6 mT와 60 Hz에 노출된 세포의 세포스트레스 유도과립(Cellular stress-granules)의 형성 및 세포 분열 주기에 대한 영향을 확인하였다. 그 결과 6, 12 그리고 36시간 동안의 고자기장의 노출은 세포스트레스 유도과립의 형성 및 세포 분열 주기에 영향을 주지 않았다. 이러한 결과들은 극저주파 고자기장에 대한 생물학적 유해성 판단을 위한 중요한 기초 자료로 사용될 수 있을 것으로 판단된다.

멀티죤 시뮬레이션을 이용한 생물안전 3등급(BSL3)시설의 설계 검증에 관한 연구 (A Study on Verification for the Design of Bio Safety Level 3 Laboratory by using Multi-zone Simulation)

  • 이현우;최상곤;홍진관
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.745-750
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    • 2009
  • In Korea, since the implementation of the GMO Law, the intrest of biosafety level 3(BL3) lab. is increasing. In this study, using CONTAM which is applying multizone modelling, the multizone simulation for design verification of BL3 lab. was performed. In BL3 lab., because required air change rate is greater than general estimated air-conditioning load and it is difficult to maintain room pressure difference efficiently, to maintain pressure difference between laboratory rooms is important through sealing condition of doors and proper airflow control of laboratory rooms. In this study, about BL3 lab.(M. tuberculosis research lab.), the multizone simulation for four kind of biohazard scenarios was performed in the case of unexpected spread of contaminants in the laboratory room, anteroom, corridor and inside of BSC. Multizone simulation results show that these approach methods are used as a tool for the design and verification of BL3 lab.

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생물안전 3등급시설의 공기환경 예측 및 공조부하 절감에 대한 해석 (An Analytical Study on the Prediction of Indoor Air Quality and the Reduction of Air Conditioning Load in Bio Safety Level 3 Laboratory)

  • 홍진관;박현진
    • 설비공학논문집
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    • 제24권11호
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    • pp.813-822
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    • 2012
  • In this study, the multizone simulation for biosafety of BSL3 lab. and energy simulation are carried out simultaneously by using linked model of CONTAM and TRNSYS. In BSL3 lab., annual energy consumption is approximately five to ten times more than the magnitude of the office building. This is because required air change rate is extremely large and it is difficult to maintain room pressure difference efficiently. To maintain pressure difference between laboratory rooms through sealing condition of doors and proper airflow control is significant. In this study, to predict indoor environment of the BSL3 lab.(Influenza A research lab.), the multizone simulation for four kinds of biohazard scenario is also performed as part of risk assessment. Multizone and energy simulation results by using linked model show that these approaches are used as a tool for the energy efficient design and operation method for the safer BSL3 lab. facilities.

멀티죤 시뮬레이션을 이용한 생물안전 3등급(BSL3)시설의 설계 검증에 관한 연구 (A Study on Verification for the Design of Bio Safety Level 3 Laboratory by using Multi-zone Simulation)

  • 이현우;최상곤;홍진관
    • 설비공학논문집
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    • 제21권12호
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    • pp.671-677
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    • 2009
  • In Korea, since the implementation of the LMO Law, the interest of biosafety level 3(BL3) lab. is increasing. In this study, using CONTAM which is applying multizone modelling, the multizone simulation for design verification of BL3 lab. is performed. In BL3 lab., because required air change rate is greater than general estimated air-conditioning load and it is difficult to maintain room pressure difference efficiently, to maintain pressure difference between laboratory rooms is important through sealing condition of doors and proper airflow control of laboratory rooms. In this study, about BL3 lab,(M. tuberculosis research lab.), the multizone simulation for four kind of biohazard scenarios is carried out in the case of unexpected spread of contaminants in the laboratory room, anteroom, corridor and inside of BSC. Multizone simulation results show that these approach methods are used as a tool for the design and verification of BL3 lab.

급배기 방식 개선에 따른 생물안전 밀폐시설의 Risk Assessment와 초기 건설비 저감에 대한 연구 (A Study on the Risk Assessment and Reduction of Initial Construction Cost in a Biosafety Laboratory According to Improvement of Supply and Exhaust Method)

  • 황지현;홍진관;주영덕
    • 설비공학논문집
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    • 제25권10호
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    • pp.534-539
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    • 2013
  • In general, entire supply air of the BSL3 laboratory should be vented to the outside for its biosafety and the air conditioning system should always be operating to maintain a room pressure difference. In this regard, annual energy consumption is approximately five or ten times greater than the magnitude of the office building. In addition, to adjust room pressure difference to the set value efficiently, the supply and exhaust duct system are installed in each room of the BSL3 lab. Thus, initial construction cost is extremely high. In this study, multizone simulation is performed to estimate maintaining the appropriate room pressure difference in the case of changing model A (each room supply and exhaust system) to model B (each zone supply and exhaust system) for verification of the BSL3 lab biosafety. Also, in the case of these two models, the multizone simulation for three kinds of biohazard scenario is performed as part of risk assessment. The analysis of initial construction cost of two models is conducted for comparison. According to the studies, initial construction cost of model B is less than about 22% of existing model A. Moreover, biosafety of the BSL3 lab is still maintaining in the case of the two models.

Properties of Extremely Low Frequency Electromagnetic Fields and their Effects on Mouse Testicular Germ Cells

  • Kim, Yeon-Sook;Lee, Suk-Keun
    • International Journal of Oral Biology
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    • 제35권4호
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    • pp.137-144
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    • 2010
  • To evaluate the biohazard properties of an extremely low frequency electromagnetic field (ELF-EMF), we explored the physical properties of the ELF-EMF that generates the electric current induction in the secondary coil from the chamber of a primary solenoid coil. We subsequently explored the biological effects of a strong alternating electromagnetic field (EMF), ranging from 730-960 Gauss, on the mouse testis. Mice were exposed to an alternating EMF field induced by a rectangular electric current at 1, 7, 20, 40, and 80 Hertz, for 1, 3, 5, and 7 hours. The mouse testes were examined for proliferative activity and apoptosis using the in situ terminal deoxynucleotidyl transferase (TdT) method and by immunostaining of proliferating cell nuclear antigen (PCNA), respectively. We found that the electric currentm induction increased in the 6-8 Hertz range, and that exposure to an ELF-EMF induced the apoptosis of mouse spermatocytes. In situ TdT staining was found to be most prominent in 7 Hertz group, and gradually reduced in the 20, 40, and 80 Hertz groups. These data suggest that a strong EMF can induce reproductive cell death within a short time, and the harmful effects of the EMF are maximal at low frequency alternating EMFs.