• 제목/요약/키워드: Air Scrubbing

검색결과 36건 처리시간 0.033초

스크러버 내 충진층에서의 압력강하 특성에 관한 실험적 연구 (Experiments for Pressure Drop of Scrubbing Layer in a Scrubber System )

  • 한용식;도규형;정경열;최병일;유화롱;김창현;김민창;김태훈
    • 대한조선학회논문집
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    • 제60권3호
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    • pp.186-192
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    • 2023
  • According to the regulation on the pollution of the marine environment, SOx emission from ships has to be reduced. A SOx scrubbing system installed in a funnel of a ship is considered in order to reduce SOx emission. A scrubbing layer with a porous material is present in the funnel to increase the contact area between exhaust gas and water. In this study, experiments on the pressure drop characteristics in the scrubbing layer are conducted to investigate the effect of the scrubber on the engine load. The pressure drop according to flow rate of air instead of exhaust gas was measured for fillers such as sphere, pall ring and saddle in the scrubbing layer. First of all, porosity is experimentally measured for the three types of filler and it is confirmed that the porosity of the saddle-type filler was the largest. The pressure drop according to the change in air flow rate was measured for the three types of fillers in the scrubbing layer. As a result, the pressure drop was the smallest in the scrubbing layer with the saddle-type filler which has the largest porosity. In addition, the effect of spraying water flowing counter flow against air flow is experimentally examined. It is known that the pressure drop is increased because the air flow space is reduced when water is sprayed. In the case of the saddle, the pressure drop is about 1.5 to 2 times greater than that when only air flows at the optimum exhaust gas-water injection ratio.

수세정에 의한 바이오가스 중 이산화탄소의 제거 효율 (Water Scrubbing of Carbon Dioxide for Improving Calorific Values of Biogass)

  • 심재훈;홍성구;권순국
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2005년도 학술발표논문집
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    • pp.598-603
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    • 2005
  • Biogas produced from anaerobic digestion processes has about 60% of methane and about 40% of carbon dioxide. Raw biogas can be used in internal combustion engines either spark ignition or diesel engines. Since the gas has relatively low calorific values, engine power also is lower than rated power values. Modified engines or biogas-specific engines have been utilized in order to increase efficiency. Another option is gas cleansing for increasing its calorific values. A couple of European countries adopted this approach in using biogas for one of transportation fuels, such as $CO_2$ scrubbing with water or special solutions. This study reports the results of water scrubbing for reducing $CO_2$ concentration. In 2.5m-high PVC pipe accepting water, $CO_2$ reduction rates were investigated. When flow rate of $CO_2$ and air mixture was about 5 LPM, $CO_2$ concentration was decreased up to 70%. Higher calorific biogas through water scrubbing is expected to be applied to various commercial engines without costly modification.

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해양에서 황산화물 오염 규제에 대한 소고 (Some Issues on the International Regulations Associated with the Air Pollution Caused by the SOx Emission at Sea)

  • 이건호;송무석
    • 한국해양환경ㆍ에너지학회지
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    • 제11권4호
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    • pp.221-226
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    • 2008
  • 선박의 추진 및 전기 발생장치의 연료에 포함되어 있는 황산화물이 연소 중에 대기로 방출되는데 이러한 황산화물들은 공기오염의 주된 원인이 되고 있다. 행상에서 선박에 의해 발생하는 황산화물은 육상운송 수단에 의한 것 보다 훨씬 심각하여, 국제 해사 기구 및 유럽연합에서는 해상에서 선박에 의해 발생되는 황산화물 배출에 대한 규제를 강화하고 있다. 해양에서 황산화물 배출 규제를 근본 적으로 만족하기 위해서는 저유황의 연료유사용하는 것이고, 다른 한 가지는 선박에 황산화물 처리장치를 설치하여 배출되는 황산화물을 처리하는 것이다. 저 유황유의 사용은 선주들에게 운항비 증가를 가져다 주며, 처리 장치의 설치는 선가 상승의 원인이 될 수 있어, 선박이 어떤 해역을 운항하는 가에 따라 적용 방법에 대한 세심한 주의가 요한다. 본 소고는 이런 국제 규제의 변화와 대응에 대한 검토와 제언을 담고 있다.

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ANCOVA를 이용한 반도체공정 스크러버 HF 가스 제거 개선 (Enhancement of HF Gas Removal Efficiency of a Scrubber in Semiconductor Manufacturing Process by using ANCOVA Technique)

  • 김선진;이민우;서준;최영아;이현호;구준모
    • 한국분무공학회지
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    • 제18권2호
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    • pp.81-86
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    • 2013
  • To comply with the regulation of the reinforcing Clean Air Conservation Act, it is necessary for the semiconductor manufacturers to develop effective low-concentration acid gas abatement system to treat the flue gas. The low-concentration acid gas was found to be harder to deal with than the high-concentration one. In this study, the effect of various potential treatments such as air-assist nozzle spraying, magnetizing the scrubbing water, and adding surfactants to spraying and scrubbing water were investigate through the application of the statistical ANCOVA method, which was proved to be very useful tool when the inlet concentration of acid gas could not be controlled precisely and it affected the removal efficiency of the abatement system.

Emission Reduction of Air Pollutants Produced from Chemical Plants

  • Lee, Byeong-Kyu;Cho, Sung-Woong
    • Journal of Korean Society for Atmospheric Environment
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    • 제15권E호
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    • pp.29-38
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    • 1999
  • This study identified emission sources and emissions of air pollutants such as volatile organic compounds (VOCs), solvents, and acid gases produced from chemical plants. We collected air samples from various processes, reactors and facilities using VOC detectors and workers' experience. We identified chemical structures and emission concentrations of air pollutants. We analyzed total emissions of air pollutants emitted from the chemical plants. Also, we developed some emission reduction technologies based on chemical types and emission situations of the identified air pollutants. For reduction of air emissions of acid gases, we employed a method improving solubility of pollutants by reducing scrubber operation temperature, increasing surface area for effective contact of gas and liquid, and modifying or changing chemicals used in the acid scrubbers. In order to reduce air emissions of both amines and acid gases, which have had different emission sources each other but treated by one scrubber, we first could separate gas components. And then different control techniques based on components of pollutants were applied to the emission sources. That is, we first applied condensation and then acid scrubbing method using H2SO4 solution for amine treatment. However, we only used an acid scrubbing method using H2O and NaOH solution for acid gas treatment. In order to reduce air emissions of solvents such as dimethylformamide and toluene, we applied condensation and activated carbon adsorption. In order to reduce air emissions of mixture gases containing acid gases and slovents, which could not be separated in the processes, we employed a combination of various air pollution control devices. That is, the mixture gases were passed into the first condenser, the acid scrubber, the second condenser, and the activated carbon adsorption tower in sequence. In addition, for improvement of condensation efficiency of VOCs, we changed the type of the condensers attached in the reactors as a control device modification. Finally, we could successfully reduce air emissions of pollutants produced from various chenmical processes or facilities by use of proper control methods according to the types and specific emission situations of pollutants.

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유류오염토양으로부터 발생하는 VOC가스처리를 위한 바이오스크러버 개발 (Development of a Bioscrubber for Treatment of VOC Emissions from Contaminated Soil with Hydrocarbons)

  • 장윤영;황경엽;곽재호;최대기
    • 한국토양환경학회지
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    • 제2권1호
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    • pp.83-90
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    • 1997
  • 저농도의 난 수용성 VOC가스가 포함되어 있는 다량의 오염가스를 처리하기 위하여 흡수탑과 생물반응기의 결합체인 새로운 처리시스템을 제시하였다. 바이오스크러버의 스크러버에서는 세정액으로 기상중의 처리대상오염물질의 흡수가 일어나며 세정액은 생물반응기로 이송되어 호기성 미생물이 오염물을 분해시킨다. 본 연구에서는 폐가스중의 VOC분리를 위하여 재순환가능한 고비점용매를 사용하였다. 고비점용매를 포함한 세정액은 기/액 향류접촉이 이루어지는 흡수탑의 충전층에서 폐가스중의 오염물을 분리한다. 흡수탑은 Pall ring충전제로 채워 실제공정을 모사 하고자 하였다. 흡수처리후 생물반응기로 이송된 흡수액은 재생 후 다시 흡수탑으로 재 순환하였다. 실험에 사용된 대상가스는 농도가 400 mg/$\textrm{m}^3$ 인 톨루엔으로, 세정액이 가스흐름과 향류로 약 10~15L/min의 유량으로 충전층을 적시며 내려오는 충전탑내부로 약 100 L/min의 유량으로 도입하였다. VOC처리를 위해 제작된 본 바이오스크러버에서 고비점용매를 이용한 연속실험결과 최적운전 조건에서 약 80%의 처리율을 얻을 수 있었다.

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Ag(II)를 매개체로 사용하는 전기화학적 매개산화에 의한 NOx 제거 (The Removal of NOx by Mediated Electrochemical Oxidation Using Ag(II) As a Mediator)

  • 이민우;박소진;이근우;최왕규
    • 방사성폐기물학회지
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    • 제9권3호
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    • pp.121-129
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    • 2011
  • 전기화학적으로 생성되는 $Ag^{2+}$를 사용하는 MEO 공정에 의한 NO 제거에 전류밀도, $AgNO_3$ 농도, 세정 용액의 유속 및 NO-공기 혼합가스 유속이 미치는 영향을 조사하였다. 전류밀도가 증가할수록 NO의 산화 반응 속도 및 제거 효율이 증가하였으며, 0.1 M 이상의 $AgNO_3$ 농도 조건에서 ㅍ 농도가 NO의 제거 효율에 미치는 영향은 무시할 만 하였다. 세정용액의 유속이 증가할수록 NO의 제거효율은 점진적으로 증가한 반면에 NO-공기 혼합가스의 유속이 증가할수록 NO의 제거효율은 점진적으로 감소하였다. 실험 범위 내에서 도출한 최적조건을 적용한 MEO 공정 및 3 M 질산 흡수 공정을 복합적으로 적용하여 NO-공기 혼합가스를 처리하였으며, NO 및 $NO_x$의 제거 효율은 각각 95% 및 63%를 얻었다.