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      KCI등재 SCOPUS

      자계가 인가된 공기청정장치의 가스 제거 특성

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      https://www.riss.kr/link?id=A76615347

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      다국어 초록 (Multilingual Abstract)

      Gas removal characteristics of an air clean system, consisted of a filter and a nonthermal discharge plasma reactor with a magnetic field, have been investigated with emphasis on the enhancing gas removal efficiency of the applied magnetic field. It i...

      Gas removal characteristics of an air clean system, consisted of a filter and a nonthermal discharge plasma reactor with a magnetic field, have been investigated with emphasis on the enhancing gas removal efficiency of the applied magnetic field. It is found that the magnetic field influenced significantly to the corona discharge characteristics, decreasing the corona onset voltage and increasing the corona current. As a result, the proposed air clean system with the magnetic field showed the higher removal efficiency of the gas (e.g., trimethlyamine) than that of without the magnetic field. This would be because the magnetic field applied to the discharge plasma reactor of the air clean system can elevate the corona characteristics, and activate the generation of ozone, thus the removal efficiency of the gas was concurrently enhanced. This reveals that the proposed air clean system with the magnetic field could be used as an effective means of removal an indoor pollutant gas.

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      목차 (Table of Contents)

      • Abstract
      • 1. 서론
      • 2. 실험장치 및 방법
      • 3. 결과 및 검토
      • 4. 결론
      • Abstract
      • 1. 서론
      • 2. 실험장치 및 방법
      • 3. 결과 및 검토
      • 4. 결론
      • 참고문헌
      • 저자소개
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      참고문헌 (Reference)

      1 "전자계상의 전원장치변화에 따른 비열방전 플라즈마의 SO2와 CO가스 제거 특성" 48C (48C): 215-220, 1999

      2 "The effect of discharge on dust mite and cat allergens" 60 : 69-91, 2004

      3 "Ozone generation and dust collection in electrical discharge for environmental purposes: Fundamentals and Applications" Nova Science Pub, Inc 2000

      4 "NATO Advanced Research Workshop on Non-thermal Plasma Techniques for Pollution Control" Cambridge University 1-8, 1992

      5 "Ferro-electric pellet shape effect on C2F6 removal by a packed-bed-type nonthermal plasma reactor" 32 (32): 2175-2183, 2004

      6 "Exposure to Diesel and Gasoline Engine Emissions and the Risk of Lung Cancer" 165 (165): 53-62, 2007

      7 "Effect of electrode shape in dielectric barrier discharge plasma reactor for NOx removal" 32 (32): 32-38, 2004

      8 "Diesel particulate matter and NOx removals using a pulsed corona surface discharge" 50 (50): 715-721, 2004

      9 "Decomposition of gaseous organic contaminants by surface discharge induced plasma chemical processing- SPCP" 32 (32): 118-123, 1996

      10 "Chemical reaction kinetics and reactor modeling of NOx removal in a pulsed streamer corona discharge reactor" 38 (38): 1999

      1 "전자계상의 전원장치변화에 따른 비열방전 플라즈마의 SO2와 CO가스 제거 특성" 48C (48C): 215-220, 1999

      2 "The effect of discharge on dust mite and cat allergens" 60 : 69-91, 2004

      3 "Ozone generation and dust collection in electrical discharge for environmental purposes: Fundamentals and Applications" Nova Science Pub, Inc 2000

      4 "NATO Advanced Research Workshop on Non-thermal Plasma Techniques for Pollution Control" Cambridge University 1-8, 1992

      5 "Ferro-electric pellet shape effect on C2F6 removal by a packed-bed-type nonthermal plasma reactor" 32 (32): 2175-2183, 2004

      6 "Exposure to Diesel and Gasoline Engine Emissions and the Risk of Lung Cancer" 165 (165): 53-62, 2007

      7 "Effect of electrode shape in dielectric barrier discharge plasma reactor for NOx removal" 32 (32): 32-38, 2004

      8 "Diesel particulate matter and NOx removals using a pulsed corona surface discharge" 50 (50): 715-721, 2004

      9 "Decomposition of gaseous organic contaminants by surface discharge induced plasma chemical processing- SPCP" 32 (32): 118-123, 1996

      10 "Chemical reaction kinetics and reactor modeling of NOx removal in a pulsed streamer corona discharge reactor" 38 (38): 1999

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2010-10-01 평가 학술지 통합(등재유지)
      2007-01-01 평가 학술지 통합(기타) KCI등재
      2001-01-01 평가 등재학술지 유지(등재유지) KCI등재
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