• 제목/요약/키워드: 디젤 산화 촉매

검색결과 90건 처리시간 0.027초

대형디젤기관에서 DOC에 의한 배출가스 저감에 관한 연구 (A study on Emission Reduction by DOC on Heavy Duty Diesel Engine)

  • 한영출;류정호;오용석
    • 한국자동차공학회논문집
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    • 제7권5호
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    • pp.16-21
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    • 1999
  • The diesel vehicle is relatively superior to gasoline vehicle on the fuel consumption, durability and combustion efficiency. However, exhaust emission from diesel vehicle are known to be harmful to human health and environment. The treatment technologies for the diesel exhaust gases are classified as replacement of fuel, quality control of diesel fuel, improvement of engine and aftertreatment system. The most effective for the treatment technology is known to be aftertreatment system, and this research is continuously conducted by many groups. The DOC system has many advantages of reducing particulates and harmful gaseous substances such as CO. HC. Moreover, it is simple in device structure, relatively low cost, and easy to install witout retrofitting the vehicle. In this study, experiment were conducted to analyze the effects on factors of oxidation characteristics and conversion efficiency of DOC. In experiment, test was conducted to estimate engine emission in 11,000cc diesel engine which was equipped with DOC.

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바나듐 기반의 Urea-SCR과 DOC가 결합된 Heavy-Duty 디젤 배출가스 후처리 시스템의 SCR De-NOx 성능 향상에 관한 수치해석 연구 (Numerical Modeling of Vanadia-based Commercial Urea-SCR plus DOC Systems for Heavy-duty Diesel Exhaust Aftertreatment Systems)

  • 윤병규;김종민;김만영;조규백;김홍석;정용일
    • 한국자동차공학회논문집
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    • 제18권2호
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    • pp.24-30
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    • 2010
  • In this study, numerical experiments were carried out to estimate the SCR De-NOx performance in DOC plus SCR systems. The SCR De-NOx phenomena are described by Langmuir-Hinshelwood reaction scheme. After validating the present approach by comparing the present results with the experimental results, such various parameters as space velocity, $H_2O$ concentration, $NO_2$/NOx ratio and relative volume of DOC are explored to increase the SCR De-NOx performance. The results indicate that SCR De-NOx performance largely depends on space velocity and $NO_2$/NOx ratio, especially below $200^{\circ}C$. SCR De-NOx performance is seriously affected by relative volume of DOC with SCR due to increasing in $NO_2$/NOx ratio at below $250^{\circ}C$.

희박연소 상태에서 프로필렌 환원제에 의한 Pt-TiO2 이원기능 촉매의 NOx 제거 특성 (Lean Burn de-NOx Properties of Pt-TiO2 Bifunctioncal Catalyst by Propylene)

  • 정태섭;채수천
    • 대한환경공학회지
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    • 제22권3호
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    • pp.511-521
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    • 2000
  • 디젤자동차와 같이 희박연소 상태에서 많이 배출되는 질소산화물을 선택적 촉매환원(SCR)으로 제거하기 위하여 제올라이트와 금속산화물을 조합한 촉매를 석영 반응로에서 설험하였다. 환원제는 자동차 배출가스에 포함되어 있어 실용 가능성이 크다고 판단되는 탄화수소 중 안전성 및 환원효율이 좋은 올레핀계 탄화수소인 프로필렌을 사용하였다. 본 연구에서는 제올라이트 및 금속산화물계의 단일촉매 상태에서의 NOx 전환율을 파악하고, 저옹 및 고온에서 활성이 다른 촉매를 기계적으로 조합하여 NOx 전환 활성 온도창(Temperature Window)을 확대하고 내구성이 좋은 촉매를 찾고자 하였다 0.55wt%Pt-$TiO_2$/5wt%Cu-ZSM-5 촉매와 0.28wt%Pt-$TiO_2$/$Al_2O_3$ 촉매 및 1.1 wt%Pt-$TiO_2$/$Mn_2O_3$ 촉매 모두 $400^{\circ}C$를 변곡점으로 저온과 고온에서 NOx 제거활성이 있었는데, 저온에서 활성이 가장 큰 것은 0.28wt%Pt-$TiO_2$/$Al_2O_3$ 촉매이었고, 고온에서는 1.1wt%Pt-$TiO_2$/$Mn_2O_3$(21) 촉매가 제일 높은 활성을 보였다. 그러나 수분 및 아황산가스 공존시와 열적 내구성 면에서는 0.55wt%Pt-$TiO_2$/5wt% Cu-ZSM-5 촉매가 가장 우수하게 나타났다.

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디젤연소가능 청정연료(ULSD, Bio-Diesel, DME)엔진의 극미세입자 정량화 및 촉매 영향 (Characteristics of Nano-particle Emitted by Auto-ignited Engine with ULSD, Bio-diesel and DME Fuel and Effects of Oxidation Catalyst on Its Reduction)

  • 이진욱;배충식
    • 한국자동차공학회논문집
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    • 제17권3호
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    • pp.81-89
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    • 2009
  • In this experimental study, the effects of clean alternative fuels compatible with diesel combustion on nano-sized particle emission characteristics were investigated in a 0.5L auto-ignited single-cylinder engine with a compression ratio of 15. Because the number concentration of nano-sized particles emitted by automotive engine, that are suspected of being hazardous to human health and environment, might increase with engine fuel considerably and recently attracted attention. So a ultra-low sulfur diesel(ULSD), BD100(100% bio-diesel) and Di-Methyl Ether(DME) fuels used for this study. And, as a particle measuring instrument, a fast-response particle spectrometer (DMS 500) with heated sample line was used for continuous measurement of the particle size and number distribution in the size range of 5 to 1000nm (aerodynamic diameter). As this research results, we found that this measurements involving the large proportion of particles under size order of 300nm and number concentration of $4{\times}10^9$ allowed a single or bi-modal distribution to be found at different engine load conditions. Also the influence of oxygen content in fuel and the catalyst could be a dominant factor in controlling the nano-sized particle emissions in auto-ignited engine.

비도로용 디젤엔진의 Urea SCR system 적용을 위한 NO2/NOx ratio 예측모델 개발에 관한 연구 (Development of NO2/NOx Ratio Estimation Model for Urea-SCR System Application on Non-road Diesel Engine)

  • 강석호;김훈명;강정호;박은용;권오현;김대열
    • 한국분무공학회지
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    • 제25권4호
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    • pp.178-187
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    • 2020
  • The current emission regulations, US Tier-4 and EU Stage-V, are only able to satisfy the regulations when all currently mass-produced emission reduction technologies such as EGR, DOC, DPF, and SCR are applied. Therefore, in this study, for the application of the Urea-SCR system to non-road diesel engines, the database was established by measuring the NO, NO2 concentration and calculating the NO2/NOx ratio based on the catalyst temperature and exhaust mass flow rate. Also, based on the measured NO2/NOx ratio data, a mathematical model was proposed to predict the NO2/NOx ratio at SCR catalyst, and the suitability of the model was verified through steady-state and transient mode. As a result of comparing the NO2/NOx ratio measured at the DOC outlet under the steady-state condition to two model values separately, the R2 was 0.9811 for the 3D map model and 0.9303 for the mathematical model. And in the case of the NO2/NOx ratio measured at the DPF outlet, the R2 was 0.9797 for the 3D map model and 0.935 for the mathematical model. It was confirmed that the R2 with the model value of the 3D Map of the mathematical model in the transient mode is 0.957, which shows high reliability.

후처리 장치에 의한 디젤엔진 배출가스의 미세 입자 입경분포 변화 (Influence of Aftertreatment System on the Size Distribution of Diesel Exhaust Particulate Matter)

  • 권순박;김민철;이규원;류정호;엄명도;김종춘;정일룩
    • 한국자동차공학회논문집
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    • 제7권7호
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    • pp.113-121
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    • 1999
  • Diesel particulate matter is known to be one of the major harmful emissions produced by diesel engines. Diesel particulates are subject to diesel emission regulations and have lately become the focus in the diesel emission control technology. Thus, the aftertreatment system is adopted at the diesel engine exhaust to reduce the particulate emission. Although this benefit is recognized, it is not clear how the aftertreatment system influences quantitatively the particle size distribution distribution. In this study, the particle size distributions of diesel exhaust were measured using the scanning mobility particle sizer with and without the aftertreatment system. There results showed that the diesel particulate filter and plasm system reduced the number of emitted particles by more than 90% and about 80% respectivley in the particle size range of 20nm∼600nm. On the other hand no significant effect of the diesel oxidation catalyst on the particle number concentration was detected.

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승용 디젤 엔진의 후처리 시스템 적용에 따른 나노입자 배출 맵 구축 및 저감특성에 관한 연구 (Study of Particle Emission Contour Construction & Characteristics and Reduction Efficiency of Exhaust-Treatment System of Diesel Engine)

  • 고아현;황인구;명차리;박심수;최회명
    • 대한기계학회논문집B
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    • 제34권8호
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    • pp.755-760
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    • 2010
  • 본 연구는 승용 디젤엔진의 입자상 물질 배출특성에 관한 것으로써, 엔진에서 배출된 입자상 물질이 배기관 및 후처리장치인 디젤산화촉매와 매연여과장치를 통과할 때의 특성 변화를 파악하기 위하여 후처리장치 각각 전 후단 및 배기관에서 직접 측정하였다. 또한 다양한 엔진회전속도 및 부하조건에서 측정함으로써 입자상 물질 배출 맵을 구축하였으며, 디젤산화촉매 및 매연여과장치의 입자상 물질 저감효과에 대해 평가하였다. 뿐만 아니라 배기재순환율과 연료분사시기를 변경시켜 입자상 물질의 배출특성 변화를 파악하였다. 모든 시험에서 입자상 물질을 5~1000nm 크기까지 측정할 수 있는 DMS500을 이용하였다.

3L급 디젤엔진의 배압이용 DPF 매연포집량 예측에 대한 연구 (Study on Estimation of PM Mass in DPF from Pressure Drop in 3L Diesel Engine)

  • 김홍석;이진욱
    • 대한기계학회논문집B
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    • 제34권5호
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    • pp.499-504
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    • 2010
  • 디젤 매연여과장치내 포집된 입자상물질의 재생 시기를 제어하기 위해서는 매연 포집량을 정확히 예측하는 것이 중요하다. 필터내 축적된 매연 포집량은 필터 전 후의 압력차와 배기유량에 의해 예측될 수 있다. 따라서 본 연구에서는 먼저, 디젤산화촉매와 디젤매연여과장치 전 후의 각각 압력차의 비로써 정의한 매연지수의 산출을 위해 효과적인 신호처리방법을 제시하였다. 이를 3L급 승용 디젤엔진에서 정상운전조건과 과도운전조건에서 비교한 결과, 매연지수와 매연 포집량에 있어서 일정 상관관계가 있음을 알 수 있었다.

황산을 이용한 열대작물 오일의 전처리 반응 최적화 및 바이오디젤 생산 (Optimization of Pre-treatment of Tropical Crop Oil by Sulfuric Acid and Bio-diesel Production)

  • 김덕근;최종두;박지연;이진석;박승빈;박순철
    • Korean Chemical Engineering Research
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    • 제47권6호
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    • pp.762-767
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    • 2009
  • 해외 열대작물 씨앗에서 추출한 식물성 오일을 이용하여 바이오디젤을 생산하고 물성분석을 통해 차량연료로서의 사용가능성을 검토하는 연구를 수행하였다. 유리지방산 함량이 높은 열대작물 오일의 효율적인 바이오디젤 생산을 위해서는 유리지방산을 산촉매로 에스테르화한 후 전이에스테르화 반응하는 2단계 반응공정의 적용이 필요하였다. 전처리(에스테르화) 반응에 적합한 촉매를 선정하기 위해 3가지 산 촉매의 비교실험 수행 결과 황산이 최적 촉매임을 확인하였고, 반응표면분석법(response surface method, RSM)에 의해 도출한 최적 반응조건은 황산 촉매 0.982%와 메탄올 26.7%로 나타났다. 전이에스테르화 반응에 대한 최적화 실험을 반응표면분석법에 근거하여 수행하고, 결과로 KOH 촉매 1.24%, 메탄올 22.76%로 확인되었지만 본 연구팀의 선행 실험의 반응조건(KOH 0.8%)보다 과량의 촉매가 투입된 것으로 나타났다. 이에 대한 확인실험으로 메탄올과 촉매 투입량에 대한 추가 실험을 수행하였으며, 그 결과로서 최적 반응조건으로 KOH 촉매 0.8%와 메탄올:오일 몰비 6.2:1로 도출하였으며 반응생성물의 분석결과 지방산 메틸에스테르(fatty acid methyl ester, FAME) 100.8%, 산가 0.45 mgKOH/g, 수분 0.00%, 산화안정성 0.70 h, 총 글리세롤 함량 0.04%, Mono-glyceride 함량 0.04%, Di-glyceride 함량 0.01%, Tri-glyceride 함량 0.00%, 동점도($40^{\circ}C$에서) $4.041mm^2/s$, 저온필터막힘점 $1.0^{\circ}C$로 주요 바이오디젤 품질규격을 만족하는 것으로 나타났다.

백금계 촉매상에서 산화질소(NO)의 산화반응속도에 관한 실험 및 모델링 연구 (An Experimental and Modeling Study on the Oxidation Kinetics of Nitric Oxide over Platinum-based Catalysts)

  • 김영득;정수진;김우승
    • 한국자동차공학회논문집
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    • 제20권5호
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    • pp.71-80
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    • 2012
  • To improve the $NO_X$ conversion over a SCR (selective catalytic reduction) catalyst, the DOC (diesel oxidation catalyst) is usually placed upstream of the SCR catalyst to enhance the fast SCR reaction ($4NH_3+2NO+2NO_2{\rightarrow}4N_2+6H_2O$) using equimolar amounts of NO and $NO_2$. Here, a ratio of $NO_2/NO_X$ above 50% should be avoided, because the reaction with $NO_2$ only ($4NH_3+4NO+O_2{\rightarrow}4N_2+6H_2O$) is slower than the standard SCR reaction ($4NH_3+4NO+O_2{\rightarrow}4N_2+6H_2O$). In order to accurately predict the performance characteristics of SCR catalysts, it is therefore desired to develop a more simple and reliable mathematical and kinetic models on the oxidation kinetics of nitric oxide over a DOC. In the present work, the prediction accuracy and limit of three different chemical reaction kinetics models are presented to describe the chemicophysical characteristics and conversion performance of DOCs. Steady-state experiments with DOCs mounted on a light-duty four-cylinder 2.0-L turbocharged diesel engine then are performed, using an engine-dynamometer system to calibrate the kinetic parameters such as activation energies and preexponential factors of heterogeneous reactions. The reaction kinetics for NO oxidation over Pt-based catalysts is determined in conjunction with a transient one-dimensional (1D) heterogeneous plug flow reactor (PFR) model with diesel exhaust gas temperatures in the range of 115~$525^{\circ}C$ and space velocities in the range of $(0.4{\sim}6.5){\times}10^5\;h^{-1}$.