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      직접분사식 디젤엔진에서 아산화질소의 생성에 관한 실험적 연구 = A Experimental Study on Nitrous Oxide Formation in Direct Injection Diesel Engine

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      https://www.riss.kr/link?id=A103022949

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      다국어 초록 (Multilingual Abstract)

      It has been generally recognized that $N_2O$(Nitrous Oxide) emission from marine diesel engines has a close correlation with $SO_2$(Sulfur Dioxide) emission, and diversity of fuel elements using ships affects characteristics of the $N_2O$ emission. According to recent reports, in case of existence of an enough large NO(Nitric Oxide) generated as fuel combustion, effect of the $SO_2$ emission in exhaust gas on the $N_2O$ formation is more vast than effect of the NO. Therefore, $N_2O$ formation due to the $SO_2$ element operates on a important factor in EGR(Exhaust Gas Recirculation) systems for NOx reduction. An aim of this experimental study is to investigate that intake gas of the diesel engine with increasing of $SO_2$ flow rate affects $N_2O$ emission in exhaust gas. A test engine using this experiment was a 4-stroke direct injection diesel engine with maximum output of 12 kW at 2600rpm, and operating condition was set up at a 75% load. A standard $SO_2$ gas with 0.499%($m^3/m^3$) was used for changing of $SO_2$ concentration in intake gas. In conclusion, the diesel fuel included out sulfur elements did mot emit the $SO_2$ emission, and the $SO_2$ emission in exhaust gas according as increment of the $SO_2$ standard gas had almost the same ratio compared with $SO_2$ rate in mixture inlet gas. Furthermore, the $N_2O$ element in exhaust gas was formed as $SO_2$ mixture in intake gas because increment of $SO_2$ flow rate in intake gas increased $N_2O$ emission. Hence, diesel fuels included sulfur compounds were combined into $SO_2$ in combustion, and $N_2O$ in exhaust gas should be generated to react with NO and $SO_2$ which exist in a combustion chamber.
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      It has been generally recognized that $N_2O$(Nitrous Oxide) emission from marine diesel engines has a close correlation with $SO_2$(Sulfur Dioxide) emission, and diversity of fuel elements using ships affects characteristics of the $N_2O$ emission. Ac...

      It has been generally recognized that $N_2O$(Nitrous Oxide) emission from marine diesel engines has a close correlation with $SO_2$(Sulfur Dioxide) emission, and diversity of fuel elements using ships affects characteristics of the $N_2O$ emission. According to recent reports, in case of existence of an enough large NO(Nitric Oxide) generated as fuel combustion, effect of the $SO_2$ emission in exhaust gas on the $N_2O$ formation is more vast than effect of the NO. Therefore, $N_2O$ formation due to the $SO_2$ element operates on a important factor in EGR(Exhaust Gas Recirculation) systems for NOx reduction. An aim of this experimental study is to investigate that intake gas of the diesel engine with increasing of $SO_2$ flow rate affects $N_2O$ emission in exhaust gas. A test engine using this experiment was a 4-stroke direct injection diesel engine with maximum output of 12 kW at 2600rpm, and operating condition was set up at a 75% load. A standard $SO_2$ gas with 0.499%($m^3/m^3$) was used for changing of $SO_2$ concentration in intake gas. In conclusion, the diesel fuel included out sulfur elements did mot emit the $SO_2$ emission, and the $SO_2$ emission in exhaust gas according as increment of the $SO_2$ standard gas had almost the same ratio compared with $SO_2$ rate in mixture inlet gas. Furthermore, the $N_2O$ element in exhaust gas was formed as $SO_2$ mixture in intake gas because increment of $SO_2$ flow rate in intake gas increased $N_2O$ emission. Hence, diesel fuels included sulfur compounds were combined into $SO_2$ in combustion, and $N_2O$ in exhaust gas should be generated to react with NO and $SO_2$ which exist in a combustion chamber.

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      참고문헌 (Reference)

      1 유동훈, "선박용 디젤엔진에서 아산화질소의 배출특성에 대한 연구" 한국마린엔지니어링학회 38 (38): 1051-1056, 2014

      2 유동훈, "디젤엔진에서 연료 분사시기가 아산화질소에 미치는 영향" 한국동력기계공학회 18 (18): 106-112, 2014

      3 유동훈, "디젤엔진에 있어서 연료의 성분이 아산화질소 배출에 미치는 영향" 한국마린엔지니어링학회 38 (38): 1045-1050, 2014

      4 Ravishankara, A. R, "Nitrous Oxide (N2O): The Dominant Ozone-Depleting Substance Emitted in the 21st Century" 326 (326): 123-125, 2009

      5 Glarborg, P., "Kinetic of Homogeneous Nitrous Oxide Decomposition" 99 (99): 523-532, 1994

      6 IMO, "Guidelines for Calculation of Reference Lines for Use with the Energy Efficiency Design Index (EEDI)"

      7 Ots, A., "Formation and Emission of Compounds Affecting Environment" 22 (22): 499-535, 2005

      8 Yoo, D. H., "Exhaust Characteristics of Nitrous Oxide from Marine Engine" 1-6, 2012

      9 Yoo, D. H, "Effects of Engine Operating Conditions on Nitrous Oxide Emission Characteristics of Ship" 48 (48): 692-698, 2013

      10 IPCC, "Climate Change 2007 Synthesis Report" 1-52, 2007

      1 유동훈, "선박용 디젤엔진에서 아산화질소의 배출특성에 대한 연구" 한국마린엔지니어링학회 38 (38): 1051-1056, 2014

      2 유동훈, "디젤엔진에서 연료 분사시기가 아산화질소에 미치는 영향" 한국동력기계공학회 18 (18): 106-112, 2014

      3 유동훈, "디젤엔진에 있어서 연료의 성분이 아산화질소 배출에 미치는 영향" 한국마린엔지니어링학회 38 (38): 1045-1050, 2014

      4 Ravishankara, A. R, "Nitrous Oxide (N2O): The Dominant Ozone-Depleting Substance Emitted in the 21st Century" 326 (326): 123-125, 2009

      5 Glarborg, P., "Kinetic of Homogeneous Nitrous Oxide Decomposition" 99 (99): 523-532, 1994

      6 IMO, "Guidelines for Calculation of Reference Lines for Use with the Energy Efficiency Design Index (EEDI)"

      7 Ots, A., "Formation and Emission of Compounds Affecting Environment" 22 (22): 499-535, 2005

      8 Yoo, D. H., "Exhaust Characteristics of Nitrous Oxide from Marine Engine" 1-6, 2012

      9 Yoo, D. H, "Effects of Engine Operating Conditions on Nitrous Oxide Emission Characteristics of Ship" 48 (48): 692-698, 2013

      10 IPCC, "Climate Change 2007 Synthesis Report" 1-52, 2007

      11 Kalff, P. J., "Characteristics of Premixed Laminar CO/N2O Flames" 19 (19): 257-265, 1972

      12 Turns, S. R., "An Introduction to Combustion" McGRAW-HILL 160-161, 2005

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      2009-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
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      2007-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.42 0.42 0.43
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.45 0.43 0.592 0.13
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