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설계인자 변화에 따른 소형 전기집진장치의 최적효율 예측
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  • 설계인자 변화에 따른 소형 전기집진장치의 최적효율 예측
  • Predicted Optimum Efficiency due to Changes in the Design Parameters of the Small Electrostatic Precipitator
저자명
서정민,이병인,정문섭,박정호,임우택,박출재,최금찬,Suh. Jeong-Min,Yi. Pyong-In,Jung. Moon-Sub,Park. Jeong-Ho,Lim. Woo-Taik,Park. Chool-Jae,Choi. Kum-Ch
간행물명
Journal of environmental science international
권/호정보
2013년|22권 9호|pp.1187-1197 (11 pages)
발행정보
한국환경과학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The result of a small electrostatic precipitator which is in order to decrease indoor air pollution for optimal efficiency was shown as follows. Although the closer distance between the discharge electrode and dust collecting electrode shows the better throughput efficiency by forming strong electrostatic Field, it does not have profound impact in case of optimal dust collecting area. G.P(gas passage) which is the distance from dust collecting electrode to dust collecting electrode is a crucial factor to decide dust collecting efficiency. The narrower distance of G.P shows the better throughput efficiency whereas it decreases when the distance is too narrow since sparks ensue by increasing the capacity of electrostatic charging system 5 mm regards as optimal efficiency in this experiment. Although the higher voltage shows the higher dust collecting efficiency overall, the experiment was not able to keep performing since the sparks which decrease dust collecting efficiency ensue over 40 kV. The efficient and safe voltage state is considered 3.6 kV in this experiment. The most crucial factor for dust collecting efficiency of an electrostatic precipitator which is in order to decrease indoor air pollution is applied voltage. In addition, optimal raw gas flow rate(2.4 m/sec) is more important factor than the excessive increase of dust collecting area.