• 제목/요약/키워드: Exhaust Emission

검색결과 1,074건 처리시간 0.032초

바이오디젤-CNG 혼소엔진에서 파일럿 분사량이 연소 및 배기 특성에 미치는 영향 (Effects of Pilot Injection Quantity on the Combustion and Emissions Characteristics in a Diesel Engine using Biodiesel-CNG Dual Fuel)

  • 유경현
    • 한국분무공학회지
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    • 제21권2호
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    • pp.95-103
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    • 2016
  • The effect of pilot injection quantity on the combustion and emissions characteristics of a compression ignition engine with a biodiesel-compressed natural gas (CNG) dual fuel combustion (DFC) system is studied in this work. Biodiesel is used as a pilot injection fuel to ignite the main fuel, CNG of DFC. The pilot injection quantity is controlled to investigate the characteristics of combustion and exhaust emissions in a single cylinder diesel engine. The injection pressure and injection timing of pilot fuel are maintained at approximately 120 MPa and BTDC 17 crank angle, respectively. Results show that the indicated mean effective pressure (IMEP) of biodiesel-CNG DFC mode is similar to that of diesel-CNG DFC mode at all load conditions. Combustion stability of biodiesel-CNG DFC mode decreased with increase of engine load, but no notable trend of cycle-to-cycle variations with increase of pilot injection quantity is discovered. The combustion of biodiesel-CNG begins at a retarded crank angle compared to that of diesel-CNG at low load, but it is advanced at high loads. Smoke and NOx of biodiesel-CNG are simultaneously increased with the increase of pilot fuel quantity. Compared to the diesel-CNG DFC, however, smoke and NOx emissions are slightly reduced over all operating conditions. Biodiesel-CNG DFC yields higher $CO_2$ emissions compared to diesel-CNG DFC over all engine conditions. CO and HC emissions for biodiesel-CNG DFC is decreased with the increase of pilot injection quantity.

연료 개질장치의 적용에 따른 디젤 LNT 환원성능 개선 특성 (Improvement in Reduction Performance of LNT-Catalyst System with Micro-Reformer in Diesel Engine)

  • 박철웅;김창기;김관태;이대훈;송영훈
    • 대한기계학회논문집B
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    • 제34권7호
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    • pp.689-696
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    • 2010
  • 디젤엔진은 높은 열효율과 우수한 연비 성능 등의 장점을 가지고 있으나, 기화된 연료와 주변 공기가 혼합된 후 착화되는 과정을 거치기 때문에 이론 공연비 영역에서는 질소산화물(NOx) 배출이 증가되는 문제점을 가지고 있다. 최근 활발히 연구되고 있는 높은 정화 효율을 가진 LNT 촉매는 희박 분위기 조건에서는 NOx를 흡장하게 되고 과농한 분위기에서는 환원 분위기 형성을 통하여 NOx를 저감시키게 된다. 희박 공연비에서 동작하는 디젤 엔진에서는 이러한 환원 과정을 이루기 위해 주기적으로 과농한 분위기를 형성해주어야만 하는데, 이러한 연구는 NOx 저감을 위해 HC를 포함한 환원제의 농도를 제어하는 기술로서 본 연구에서는 디젤을 연료로 하는 수소농후가스 발생장치를 이용하여 LNT 촉매에 환원제로서 수소농후가스를 직접 공급하는 방식으로 LNT 촉매의 NOx 저감 특성을 파악하였다.

소규모 매립가스 자원화를 위한 마이크로터빈 열병합발전 및 유리온실 $CO_2$ 농도 증가 시스템의 타당성 연구 (Feasibility Study of Microturbine CHP and Greenhouse $CO_2$ Enrichment System as Small Scale LFG Energy Project)

  • 박정극;허광범;임상규;이인화
    • 신재생에너지
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    • 제5권2호
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    • pp.15-24
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    • 2009
  • As new small scale LFG (landfill gas) energy project model which can improve economic feasibility limited due to the economy of scale, LFG-Microturbine combined heat and power system with $CO_2$ fertilization into greenhouses was proposed and investigated including basic design process prior to the system installation at Gwang-ju metro sanitary landfill. The system features $CH_4$ enrichment for stable microturbine operation, reduction of compressor power consumption and low CO emission, and $CO_2$ supplement into greenhouse for enhancement plant growth. From many other researches, high $CO_2$ concentration was found to enhance $CO_2$ assimilation (also known as photosynthesis reaction) which converts $CO_2$ and $H_2O$ to sugar using light energy. For small scale landfills which produce LFG under $3\;m^3$/min, among currently available prime movers, microturbine is the most suitable power generation system and its low electric efficiency can be improved with heat recovery. Besides, since its exhaust gas contains very low level of harmful contaminants to plant growth such as NOx, CO and SOx, microturbine exhaust gas is a suitable and economically advantageous $CO_2$ source for $CO_2$ fertilization in greenhouse. The LFG-Microturbine combined heat and power generation system with $CO_2$ fertilization into greenhouse gas to enhance plant growth is technologically and economically feasible and improves economical feasibility compared to other small scale LFG energy project model.

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3-연소실형 GDI Engine의 성능 및 배기 배출물 특성에 관한 연구 (Study on the Characteristics of Performance and Exhaust Emissions of 3-Chamber GDI Engine)

  • 김봉수;정남훈;진선호;배종욱
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권1호
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    • pp.37-47
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    • 2002
  • Recently gasoline direct injection method has been applied to gasoline engine to reduce fuel consumption rate by controlling fuel air mixture on lean condition by means of stratified charging, and to reduce simultaneously. Pollutant emissions especially NOx and CO by lowering the combustion temperature. But difficulty of controling local fuel air ratio at ignition area in flammability limit unavoidably appeared, because it is merely controlled by injection timing with spatial and temporal distribution of fuel mixture. In this study, the authors devised a uniquely shaped combustion chamber so called three-chamber GDI engine, intended to keep the more reliable fuel air ratio at ignition area. The combustion chamber is divided into three regions. The first region is in the rich combustion division, where the fuel is injected from the fuel injection valve and ignited by the spark plug. The second region is in the lean combustion division, where the combustion gas from the rich combustion division flows out and burns on lean condition. And the last region is in the main combustion division ie in the cylinder, where the gas from the above two combustion divisions mixed together and completes the combustion during expansion stroke. They found that the stable range of operation of three-chamber GDI engine on low-load condition exists in the lean area of average equivalence ratio. And they also found that the reformed engine reveals less specific fuel consumption and less pollutant emissions compared with conventional carburettor type gasoline engine.

복사 데이터베이스를 활용한 항공기 배기 플룸 IR 신호 해석 (Infrared Signature Analysis of the Aircraft Exhaust Plume with Radiation Database)

  • 조평기;구본찬;백승욱;김원철
    • 한국항공우주학회지
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    • 제44권7호
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    • pp.568-575
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    • 2016
  • 항공기로부터 방사되는 IR 신호(Infrared : IR)는 전투 생존성 관점에서 예측과 분석이 필요하다. 본 연구에서는 배기 플룸에서 발생하는 IR 신호에 대해 IR 탐지기 관점에서 신호 예측을 수행하였다. 복사 데이터베이스와 이를 활용하는 Line-By-Line 기법을 적용하여 복사 물성치를 해석하고 이를 바탕으로 1차원 Line Of Sight(LOS)에 대해 복사 강도를 해석하였다. 상용 프로그램을 이용하여 노즐의 배기 플룸 열유동장을 해석하였고, 이 플룸 열유동장에 IR 탐지기 관점에서 서로 다른 탐지 각도에 대한 LOS를 설정하여 이에 대한 IR 신호 해석을 수행하였다. 해석을 통해 플룸 내부의 국부적으로 높은 온도 영역을 지나는 LOS에서 강한 IR 신호가 확인되었다. 또한 노즐 벽면을 포함한 LOS에서 가장 강한 IR 신호가 확인되었으며, 이를 통해 고체 벽면에 의한 복사 방사가 IR 신호에 큰 영향을 미치는 것을 확인하였다.

선박의 해수 온도차를 이용한 ORC 발전 시스템에 관한 연구 (A Study on the Ship's ORC Power System using Seawater Temperature Difference)

  • 오철;송영욱
    • 한국항해항만학회지
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    • 제36권5호
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    • pp.349-355
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    • 2012
  • 본 논문에서는 선박에서 배출되는 $CO_2$ 배출을 최소화하기 위한 노력의 일환으로 선박에서 배출되는 열에너지를 회수하고 재활용하여 극대화 시킬 수 있는 방안들을 조사하고 버려지는 열에너지를 이용하여 ORC(Organic Rankine Cycle) 발전장치를 구동함으로써 선박의 에너지 효율을 높이고 온실가스 배출을 최소화할 수 있는 방안들을 연구하였다. 선박에서 배출되는 배기가스의 폐열을 열원으로 하는 유기냉매 랭킨사이클을 구성하는 방안과 열에너지 비중은 높지만 상대적으로 낮은 온도인 해수냉각 시스템으로 배출되는 열에너지를 재활용하여 터빈 발전기를 구동하는 ORC 발전시스템을 설계하고 시뮬레이션 하였다. 시스템 해석 결과 배기가스에서는 1,000kW급, 해수 냉각 시스템에서는 650kW급 발전 출력을 얻을 수 있었고, 다양한 친환경 유기냉매를 이용하여 온도와 유량 조건에 따른 열 해석을 실시하여 시스템의 효율과 출력을 비교하였다.

아민 함침 성형 제올라이트 흡착제를 이용한 이산화탄소 분리 (Separation of Carbon Dioxide Using Pelletized Zeolite Adsorbent with Amine Impregration)

  • 홍미소;;정윤호;박성열;박소진;백일현
    • Korean Chemical Engineering Research
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    • 제50권2호
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    • pp.244-250
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    • 2012
  • MEA(monoethanolamine)와 PZ(piperazine)를 함침한 성형 제올라이트 13X 흡착제를 이용하여 연소배가스 중 이산화탄소를 분리하고자 하였다. 이를 위해 MEA, PZ를 각각 30, 50, 70 wt%로 성형 제올라이트에 함침하였다. 함침된 성형 제올라이트 13X 흡착제에 대한 물성 평가를 위해 XRD, FT-IR, BET를 이용하였다. 이산화탄소 분리특성을 조사하기 위하여, 성형 제올라이트, MEA 함침 성형 제올라이트, PZ 함침 성형 제올라이트에 대하여 25, 50, $75^{\circ}C$에서 흡착능을 조사하였다. 아민 함침 성형 제올라이트 흡착제는 온도가 증가할수록 흡착능은 감소한다. 최종적으로 연소배가스의 배출온도인 $50^{\circ}C$에서 흡착능을 비교할 때, PZ가 함침된 성형 제올라이트는 성형 제올라이트보다 1.8배 그리고 MEA 함침된 성형 제올라이트보다 20배 이상의 이산화탄소 흡착능을 보였다.

자연재생방식 DPF시스템 부착 경유승용차량의 PM재생 특성 연구 (A Study on PM Regeneration Characteristics of Diesel Passenger Vehicle with Passive Regeneration DPF System)

  • 이진욱;조규백;김홍석;정용일
    • 대한기계학회논문집B
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    • 제31권2호
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    • pp.188-194
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    • 2007
  • New diesel engines equipped with common-rail injection systems and advanced engine management control allow drastic decreases in the production of particulate matters and nitrogen oxides with a significant advantage in terms of the fuel consumption and $CO_2$ emissions. Nevertheless, the contribution of exhaust gas after treatment in the ultra low emission vehicles conception has become unavoidable today. Recently the passive type DPF(Diesel Particulate Filter Trap) system for diesel passenger vehicle has been manufactured into mass production from a French automotive maker since the year of 2000. This passive DPF system fully relies on the catalytic effects from additives blended into the diesel fuel and additives injected into the DPF system. In this study, the effects of PM regeneration in the commercial diesel passenger vehicle with the passive type DPF system were investigated in chassis dynamometer CVS(constant volume sampler)-75 mode. As shown in this experimental results, the DPF regeneration was observed at temperature as low as $350^{\circ}C$. And the engine-controlled the DPF regeneration founded to be one of the most promising regeneration technologies. Moreover, the durability of this DPF system was evaluated with a season weather in terms of the differential pressure and exhaust gas temperature traces from a road test during the total mileage of 80,000km.

차량 누적거리에 의한 연비 특성 연구 (Study on Fuel Economy Characteristics by Cumulative Distance of Vehicle)

  • 임재혁;김기호;이민호
    • 동력기계공학회지
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    • 제21권4호
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    • pp.57-61
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    • 2017
  • The vehicle label fuel economy is used as an energy management indicator nationwide. It induces technology development of automobile manufacturers and plays a role of providing information when purchasing a consumer vehicle. However, consumers who purchase a new vehicle continued to complain that the label fuel economy is different from the mandatory fuel economy rate. The domestic fuel economy measurement method is the same as the North American measurement method. The results of the two test modes (urban (FTP-75 mode), highway (HWFET mode)) are calculated in five test modes reflecting various environmental conditions and driving patterns 5-cycle correction formula is used which is equivalent to the fuel efficiency value. In this study, to solve the consumers' curiosity about the fuel economy of new vehicle, we use domestic fuel economy measurement method to measure the new car condition within 150 km of driving distance and the cumulative driving distance condition of domestic label fuel economy test vehicle. A comparative evaluation of fuel economy was carried out for a durability vehicle of $6,500{\pm}1,000km$. A result, mean value of the fuel economy of the four gasoline vehicles increased by 2.7 % in the city center mode and by 2.5 % in the highway mode in the durable vehicle compared new vehicle. And in the case of the diesel vehicle it increased by 2.5 % and 3.9 % respectively. The harmful exhaust gas emitted from the vehicle also resulted in more emissions of both gasoline and diesel vehicles in new vehicles. It is considered that the increase of the frictional force of the vehicle driving system and the lubricating oil system would have an effect on the reduction of the fuel economy of the new vehicle, and it was found that the fuel economy and the exhaust gas were improved by proper cumulative distance (domesticate) to the new vehicle.

수용모델(PMF)을 이용한 광주산업단지 VOCs의 오염원별 기여도 추정 (Estimation of Contribution by Pollutant Source of VOCs in Industrial Complexes of Gwangju Using Receptor Model (PMF))

  • 박진환;박병훈;김승호;양윤철;이기원;배석진;송형명
    • 한국환경과학회지
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    • 제30권3호
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    • pp.219-234
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    • 2021
  • Industrial emissions, mainly from industrial complexes, are important sources of ambient Volatile Organic Compounds (VOCs). Identification of the significant VOC sources from industrial complexes has practical significance for emission reduction. VOC samples were collected from July 2019 to June 2020. A Positive Matrix Factorization (PMF) receptor model was used to evaluate the VOC sources in the area. Four sources were identified by PMF analysis, including coating-1, coating-2, printing, and vehicle exhaust. The coating-1 source was revealed to have the highest contribution (41.5%), followed by coating-2 (23.9%), printing (23.1%), and vehicle exhaust (11.6%). The source showing the highest contribution was coating emissions, originating from the northwest to southwest of the sample site. It also relates to facilities that produce auto parts. The major components of VOC emissions from the coating facilities were toluene, m,p-xylene, ethylbenzene, o-xylene, and butyl acetate. Industrial emissions should be the top priority to meet the relevant control criteria, followed by vehicular emissions. This study provides a strategy for VOC source apportionment from an industrial complex, which is helpful in the development of targeted control strategies.