• 제목/요약/키워드: Ignition catalyst

검색결과 75건 처리시간 0.021초

가연성물질의 자연발화온도 측정 및 예측 - 메탄올과 에탄올 - (Measurement and Prediction of Autoignition Temperature(AIT) of Flammable Substances - Methanol and Ethanol -)

  • 하동명
    • 한국안전학회지
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    • 제19권2호
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    • pp.54-60
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    • 2004
  • Flammable substances are frequently used chemical industry processes. An accurate knowledge of the ALTs(Autoignition Temperatures) is important in developing appropriate prevention and control measures in industrial fire protection. The AITs describe the minimum temperature to which a substance must be heated, without the application of a flame or spark, which will cause that substance to ignite. The AITs are dependent upon many factors, namely initial temperature, pressure, volume, fuel/air stoichiometry, catalyst material, concentration of vapor, ignition delay. This study measured relationship between the AITs and the ignition delay times by using ASTM E659-78 apparatus for methanol and ethanol. The A.A.P.E.(Average Absolute Percent Error) and the A.A.D.(Average Absolute Deviation) of the experimental and the calculated delay times by the AITs for methanol were 14.59 and 1.76 respectively. Also the A.A.P.E. and the A.A.D. of the experimental and the calculated delay times by the ATIs for ethanol were 8.33 and 0.88.

미연배기가스 점화 기술을 이용한 배기저감 (Emission Reduction using Unburned Exhaust Gas Ignition)

  • 김득상;강봉균;양창석;조용석
    • 한국자동차공학회논문집
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    • 제11권3호
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    • pp.39-47
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    • 2003
  • UEGI (Unburned Exhaust Gas Ignition) is an alternative method for fast light-off of a catalyst. It ignites the unburned exhaust mixture using two glow plugs installed in the upstream of the close-coupled catalysts. In addition, a hydrocarbon adsorber was applied to the UEGI, for more effective reduction of HC emission. Engine bench tests show that the CCC reaches the light-off temperature laster than the baseline exhaust system and HC and CO emissions are reduced significantly during the cold start. From the vehicle test, it was observed that a few amount of HC emission was reduced even the catalysts were aged. It is expected to develop a solution kit applicable to a new vehicle or used one, to meet the emission regulation

오토자일렌과 노말펜탄올 계의 최소자연발화온도 측정 (Measurement of Autoignition Temperature of o-Xylene+n-pentanol System)

  • 하동명;이성진
    • 한국안전학회지
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    • 제21권4호
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    • pp.66-72
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    • 2006
  • An accurate knowledge of the AITs(autoignition temperatures) is important in developing appropriate prevention and control measures in industrial fire protection. The measurement of AITs are dependent upon many factors, namely initial temperature, pressure, vessel size, fuel/air stoichiometry, catalyst, concentration of vapor, ignition delay time. The values of the AITs used process safety are normally the lowest reported, to provide the greatest margin of sefety. This study measured the AITs of o-xylene+n-pentanol system from ignition delay time by using ASTM E659-78 apparatus. The experimental AITs of o-xylene and n-pentanol were $480^{\circ}C\;and\;285^{\circ}C$, respectively. The experiment AITs of o-xylene+n-pentanol system were a good agreement with the calculated AITs by the proposed equations with a few A.A.D.(average absolute deviation).

$N_2O$ 촉매 분해를 이용한 하이브리드 로켓 자연 점화 연구 (Study on Auto Ignition of Hybrid Rocket Using $N_2O$ Catalytic Decomposition)

  • 용승주;김태규
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2010년도 제34회 춘계학술대회논문집
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    • pp.202-205
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    • 2010
  • 이 연구에서는 아산화질소의 촉매 분해를 이용한 하이브리드 로켓의 자연 점화에 관한 연구를 수행하였다. 하이브리드 로켓은 촉매 점화기, 고체연료, 연소기, 노즐로 구성하였다. 아산화질소를 분해하기 위해 Ru 촉매를 $Al_2O_3$ 지지체에 함침법을 이용하여 담지하였고, 제조된 촉매의 반응온도에 따른 아산화질소 분해율을 측정하였다. 촉매 점화기의 작동조건에 따른 온도변화를 측정하였고, 하이브리드 로켓의 자연 점화에 대한 가능성을 확인하였다.

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LaMnO3형 페롭스카이트 산화물에서 입자상물질의 촉매연소반응 (Catalytic Combustion of Carbon Particulate over LaMnO3 Perovskite-Type Oxides)

  • 이용화;이근대;박성수;홍성수
    • 한국환경과학회지
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    • 제13권7호
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    • pp.619-626
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    • 2004
  • We have studied the catalytic combustion of soot particulates over perovskite-type oxides prepared by malic acid method, The catalysts were modified to enhance the activity by substitution of metal into A or B site of perovskite oxide. In addition, the reaction conditions such as temperature and $O_2$ concentration were investigated. The partial substitution of alkali metals into A site in the $LaMnO_3$ catalyst, enhanced the catalytic activity in the combustion of carbon particulate and the activity was shown in the order: Cs > K > Na. For the $La_{1-x}Cs_{x}MnO_{3}$ catalysts, the catalytic activity showed the maximum value with x=0.3 but no more increase on the catalytic activity was shown with x > 0.3. For the $La_{0.8}Cs_{0.2}MnO_{3}$ catalyst, the substitution of Fe or Ni increased the ignition temperature. The ignition temperature decreased with an increase of $O_2$ concentration, however, no more increase in the catalytic activity was shown with $O_2$ concentration > 0.2. The introduction of NO into reactants showed no effect on the catalytic activity.

광학특성을 이용한 고체추진제 점화특성 연구 (The study of ignition characteristics of solid propellant using Arc Image Furnace)

  • 유지창;김인철;정정용;이경주
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2007년도 제28회 춘계학술대회논문집
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    • pp.225-228
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    • 2007
  • 본 연구는 로켓 모타의 추진제 점화 특성을 살펴보는 데 그 목적이 있으며 아크 이미지 고온 오븐을 사용하여 혼합형, 복기 그리고 니트라민 추진제를 대상으로 압력 변화에 따라서 점화지연시간을 측정하였다. 추진제 표면의 반사에너지를 측정하기 위해 광섬유 표면 반사계를 사용하였다. 추진제 점화성은 복기 추진제 > 혼합형 추진제 > 니트라민 추진제 순이었으며, 니트라민 추진제 점화에 가장 큰 점화 에너지가 필요했으나 압력이 $75{\sim}400$ psia 범위로 상승함에 따라 점화 지연 시간은 급격히 감소하였다. 소량의 오페시화이어를 첨가함으로써 흡수도를 증가시킬 수 있었다.

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산(Acid)류의 자연발화온도와 방화지연시간의 관계 (Relationship between Autoigniton Temperature(AIT) and Ignition Delay Time for Acids)

  • 하동명
    • 한국화재소방학회논문지
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    • 제18권2호
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    • pp.27-33
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    • 2004
  • 화학물질의 최소자연발화온도의 정확한 지식은 산업화재를 예방하고 제어하는데 중요하다. 최소자연발화온도(AIT)는 화염이나, 스파크 없이 주위로부터 충분한 에너지를 받아서 스스로 점화할 수 있는 최저온도를 말한다. AIT는 실험 개시온도, 압력, 농도, 용기의 크기, 양론혼합비, 촉매, 증기의 농도, 발화지연시간 등 많은 인자에 영향을 받는다. 본 연구에서는 1994년에 제작된 ASTM E659-78 장치를 이용하여 산류(Acids) 발화지연시간과 AIT관계를 측정하였고, 실험에서 얻은 자료는 본 연구에서 제시한 예측 모델과 적은 오차 범위에서 일치하였다.

인젝터 방식 및 촉매 알갱이 크기에 따른 과산화수소 단일추진제 추력기의 응답 특성 (The Response Characteristics of the Hydrogen Peroxide Monopropellant Thruster as Injector and Catalyst Grain Size)

  • 안성용;박대종;정승미;권세진
    • 한국추진공학회지
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    • 제13권1호
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    • pp.19-26
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    • 2009
  • 과산화수소 단일추진제 추력기의 응답성에 대한 실험적 연구를 수행하였다. 촉매베드의 특성을 배제하고 추력기 설계 인자에 따른 응답특성을 살펴보기 위해 $MnO_2$/$Al_2O_3$를 주 촉매로 고정하였다. 세 가지 50 N 급 추력기를 이용하여 인젝터 방식, ullage volume, 촉매 펠렛 크기, 반응기 부피에 따른 응답 속도를 측정하였다. 측정 결과 16-20 mesh 크기 촉매, shower head 인젝터를 사용한 경우 점화지연, 압력 상승 및 하강시간은 각각 14, 108, 94 ms로 상용 하이드라진 추력기 응답성에 근접한 특성을 보였다.

마이크로 추력장치용 과산화수소 촉매 반응기 (Catalytic Reactor of Hydrogen Peroxide for a Micro Thruster)

  • 이대훈;조정훈;권세진
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2002년도 제25회 KOSCI SYMPOSIUM 논문집
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    • pp.237-240
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    • 2002
  • Micro catalytic reactors are alternative propulsion device that can be used on a nano satellite. When used with a monopropellant, $H_2O_2$, a micro catalytic reactor needs only one supply system as the monopropellant reacts spontaneously on contact with catalyst and releases heat without external ignition, while separate supply lines for fuel and oxidizer are needed for a bipropellant rocket engine. Additionally, $H_2O_2$ is in liquid phase at room temperature, eliminating the burden of storage for gaseous fuel and carburetion of liquid fuel. In order to design a micro catalytic reactor, an appropriate catalyst material must be selected. Considering the safety concern in handling the monopropellants and reaction performance of catalyst, we selected hydrogen peroxide at volume concentration of 70% and perovskite redox catalyst of lantanium cobaltate doped with strondium. Perovskite catalysts are known to have superior reactivity in reduction-oxidation chemical processes. In particular, lantanium cobaltate has better performance in chemical reactions involving oxygen atom exchange than other perovskite materials. In the present study, a process to prepare perovskite type catalyst, $La_{0.8}Sr_{0.2}CoO_3$, and measurement of its propellant decomposition performance in a test reactor are described.

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A Study on Spark Ignition Natural Gas Engines

  • Cho Haeng-Muk
    • Journal of Advanced Marine Engineering and Technology
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    • 제30권4호
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    • pp.455-462
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    • 2006
  • Natural gas is a promising alternative fuel to meet strict engine emission regulations in many countries. Natural gas engines can operate at lean burn and stoichiometric burn conditions with different combustion and emission characteristics. In this paper, the fuel economy, emissions, misfire, knock and cycle-to-cycle variations in indicated mean effective pressure of lean burn natural gas engines are highlighted. Stoichiometric burn natural gas engines are briefly reviewed. To keep the output power and torque of natural gas engines comparable to that of gasoline engines, high boosting pressure should be used. High activity catalyst for methane oxidation and lean deNOx system or three way catalyst with precisely control strategies should be developed to meet stringent emission standards.