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Development of a Laser Absorption NO/$NO_2$ Measuring System for Gas Turbine Exhaust Jets

  • Zhu, Y.;Yamada, H.;Hayashi, S.
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.802-806
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    • 2004
  • For the protection of the local air quality and the global atmosphere, the emissions of trace species including nitric oxides (NO and NO$_2$) from gas turbines are regulated by local governments and by the International Civil Aviation Organization. In-situ measurements of such species are needed not only for the development of advanced low-emission combustion concepts but also for providing emissions data required for the sound assessment of the effects of the emissions on environment. We have been developing a laser absorption system that has a capability of simultaneous determination of NO and NO$_2$concentrations in the exhaust jets from aero gas turbines. A diode laser operating near 1.8 micrometer is used for the detection of NO while a separated visible tunable diode laser operating near 676 nanometers is used for NO$_2$. The sensitivities at elevated temperature conditions were determined for simulated gas mixtures heated up to 500K in a heated cell of a straight 0.5 m optical path. Sensitivity limits estimated as were 30 ppmv-m and 3.7 ppmv-m for NO and NO$_2$, respectively, at a typical exhaust gas temperature of 800K. Experiments using the simulated exhaust flows have proven that $CO_2$ and $H_2O$ vapor - both major combustion products - do not show any interference in the NO or NO$_2$ measurements. The measurement system has been applied to the NO/NO$_2$ measurements in NO and NO$_2$ doped real combustion gas jets issuing from a rectangular nozzle having 0.4 m optical path. The lower detection limits of the system were considerably decreased by using a multipass optical cell. A pair of off-axis parabola mirrors successfully suppressed the beam steering in the combustion gas jets by centralizing the fluctuating beam in sensor area of the detectors.

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유전체장벽방전을 이용한 촉매공정의 질소산화물 저감성능 향상 (Improvement in Catalytic NOx Reduction by Using Dielectric Barrier Discharge)

  • 목영선;남창모
    • 한국산업융합학회 논문집
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    • 제9권1호
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    • pp.13-19
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    • 2006
  • The ozone produced by a dielectric barrier discharge device was injected into the exhaust gas to oxidize a part of NO to $NO_2$, and then the exhaust gas containing the mixture of NO and $NO_2$ was further treated in a catalytic reactor where both NO and $NO_2$ were reduced to $N_2$ in the presence of ammonia as the reducing agent. The $NO_2$ content in the mixture of NO and $NO_2$ was changed by the amount of ozone added to the exhaust gas. The experiments were primarily concerned with the effect of reaction temperature on the catalytic $NO_x$ reduction at various $NO_2$ contents. The increase in the $NO_2$ content by the ozone injection remarkably improved the performance of the catalytic $NO_x$ reduction, especially at low temperatures.

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비열 플라즈마에 의한 NO의 산화에 탄화수소 첨가제가 미치는 영향 (Effect of Hydrocarbons on the Promotion of NO-$NO_2$ Conversion in NonThermal Plasma DeNOx Treatment)

  • 신현호;윤웅섭
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2000년도 제21회 KOSCO SYMPOSIUM 논문집
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    • pp.33-46
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    • 2000
  • In the present study, a systematic chemical kinetic calculations were made to investigate the augmentation of NO-$NO_2$ conversion due to the addition of various hydrocarbons (methane, ethylene, ethane, propene, propane) in the nonthermal plasma treatment. It is included in the present conclusion that the reaction between hydrocarbon and oxygen radicals induced by electron collision, is believed to be a primarily process for triggering the overall NO oxidation and the eventual NOx reduction. Upon the completion of the initiating step, various radicals (OH, $NO_2$ etc.) successively produced by hydrocarbon decomposition form the primary path of NO-$NO_2$ conversion. When the initiating step is not activated, hydrocarbon consumption rate appeared to be very low, thereby the targeted level of NO conversion can only be achieved by the addition of more input energy. Present study showed ethylene and propene to have higher affinity with 0 radical under all conditions, thereby both of these hydrocarbons show very fast and efficient NO-$NO_2$ oxidation. It was also shown that propene is superior to ethylene in the aspect of NOx removal.

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NOx 제거용 저온 플라즈마 반응기에서의 플라즈마 화학 및 입자 성장 (The Plasma Chemistry and Particle Growth in the Low Temperature Plasma Reactor for removal of NOx)

  • 김동주;김교선
    • 산업기술연구
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    • 제19권
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    • pp.331-341
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    • 1999
  • We analyzed theoretically the removal efficiency and the particle growth inside the pulse corona discharge reactor to remove $NO_x$ and investigated the effects of process variables such as the NO and $NH_3$ input concentrations. Most of NO is converted into $NO_2$ and $HNO_3$ and the $HNO_3$ reacts with $NH_3$ to form the $NH_4NO_3$ particles. About 6.4% of NO is converted into $HNO_2$ which form the $NH_4NO_2$ particles by reaction with $NH_3$. Some of $NO_2$ follows the reaction pathway to form $NO_3$ and $N_2O_5$. The amount of particles formed inside the reactor is basically determined by the input $NH_3$ concentration. The ratio of NO to $NH_3$ affects the reactor length for particle formation significantly. The higher the input concentrations of NO and $NH_3$ are, the faster the particles grow.

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EFFECT OF ETHENE $(C_2 H_4)$ ON THE PLASMA $DeNO_X$ PROCESS FROM DIESEL ENGINE EXHAUST

  • Park, Kwang-Seo;Kim, Dong-Inn;Lee, Hyeong-Sang;Chun, Bae-Hyeock;Yoon, Woong-Sup;Chun, Kwang-Min
    • International Journal of Automotive Technology
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    • 제2권2호
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    • pp.77-83
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    • 2001
  • Effect of ethene on the $DeNO_X$ conversion process in a simulated diesel engine operating conditions was investigated experimentally and theoretically. With the addition of even a small amount of ethene the NO to $NO_2$ conversion enhances greatly. The energy required to convert one NO molecule is 27 eV with 250 ppm ethene added, while 137 eV without ethene at 473 K. The effect of energy density, temperature, and the initial concentrations of ethene and oxygen are also discussed and the results show that the increase of the mentioned parameters lead to the promotion of NO oxidation. A kinetic model used in this study shows good agreement with the experimental result. Byproducts like formaldehyde ($CH_2$ 0) and methyl nitrite ($CH_3$ ONO) predicted by model calculation are broken up into CO and $H_2O$ eventually when high energy is delivered to the gas mixture. Sensitivity analysis shows that the main reactions of NO oxidation when ethene is added we: $HO_2+ NO \arrow NO_2 + OH, RO_2 + NO \arrow NO_2 + RO$, where R is a hydrocarbon radical. Also the direct oxidizing reaction of NO with O cannot be neglected.

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부산 지역 도로변과 주거지역의 NO와 NO2 농도 특성 (Characteristics of NO and NO2 at Roadside and Urban Residential Locations in Busan)

  • 전병일
    • 한국환경과학회지
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    • 제27권7호
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    • pp.587-595
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    • 2018
  • This research investigated the characteristics of NO and $NO_2$ concentration at roadside (Choryangdong) and residential (Sujeongdong) locations in Busan. The NO concentration at roadside and residential were 34.7 and 8.0 ppb, respectively, and $NO_2$ at roadside and residential were 31.6 and $18.0ppb\;{\mu}g/m^3$, respectively. The NO concentration was the highest in winter at roadside at 37.1 ppb, followed by 35.0 ppb and 34.0 ppb in summer and fall, respectively. $NO_2$ concentration was the highest in spring at roadside at 39.6 ppb, followed by 30.4 ppb and 28.3 ppb in fall and winter, respectively. Number of exceedances per year of 1 hr limit value (0.10 ppm) for $NO_2$ at roadside and residential were 3,585 and 3 hours, respectively. Number of exceedances per year of 24 hr limit value (0.06 ppm) for $NO_2$ at roadside and residential were 32 and 1 days, respectively. Number of exceedances per year of 1 hr limit value (0.1 ppm) for $O_3$ at roadside and residential were 1 and 14 days, respectively. These results indicated that understanding the relationship between roadside and residential could provide insight into establishing a strategy to control urban air quality.

마우스의 공간인 지능에 대한 홍삼의 효과 (Effects of Red Ginseng on Spatial Memory of Mice in Morris Water Maze)

  • 진승하;남기열
    • Journal of Ginseng Research
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    • 제20권2호
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    • pp.139-148
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    • 1996
  • This study was designed to examine the effects of red ginseng total saponin and extract on spatial working memory in mice using Morris water maze. Two kinds of red ginseng saponin (No. 1 and No. 2) and three kinds of red ginseng extract (No. 1, No. 2 and No. 3) to have different PD/ PT ratio (No. 1=1.24, No.2=1.47 No.3=2.41) were prepared by mixing the different parts of red ginseng In different ratio. In acute administration of total saponin No. 1 or No. 2, escape time to reach to a hidden platform In a fixed location for training trials was significantly decreased as compared with control group and swimming time in the quadrant that had contained the platform was also significantly increased as compared with control group. In acute treatment of extract No. 1 or 1 No. 2, swimming time in the platformless quadrant was increased dose dependently as compared with control group, especially at dose of 200 mg/kg,bw swimming time was significantly Increased. Oral treatment of extract No. 1 (100 mg/kg, bw) for 7 days produced an increase of swimming time In the platformless quadrant but a decrease of swimming time in No.3-treated group (100 mg/kg, bw). These results show that red ginseng may improve spatial discrimination learning and spatial working memory of mice

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촉매 공정의 배기가스 질소산화물 저감 성능에 미치는 오존주입의 영향 (Effect of Ozone Injection into Exhaust Gas on Catalytic Reduction of Nitrogen Oxides)

  • 윤은영;목영선;신동남;고동준;김경태
    • 대한환경공학회지
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    • 제27권3호
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    • pp.330-336
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    • 2005
  • 본 연구에서는 촉매공정의 질소산화물 제거 성능을 향상시키기 위하여 배기가스에 오존을 주입하였다. 배기가스에 오존을 주입하면 배기가스에 포함되어 있는 NO의 일부가 $NO_2$로 빠르게 산화되며, NO와 $NO_2$ 혼합물은 촉매반응기에서 $N_2$로 환원된다. 오존의 발생을 위해 유전체 장벽 방전 반응기가 사용되었고 촉매로는 상용 $V_2O_5-WO_3/TiO_2$ 촉매가 사용되었다. 질소산화물의 환원제는 암모니아였다. 촉매반응기 전단의 $NO_2$ 함량은 오존 주입량에 의해 변화될 수 있었으며, $NO_2$ 함량 변화가 촉매의 질소산화물 저감성능에 미치는 영향에 대해 살펴보았다. $NO_2$ 함량이 촉매반응기의 성능에 미치는 영향은 다양한 조건에서 수행되었는데, 주요 변수로 선정한 것은 반응온도, 초기 $NO_x$ 농도, 암모니아 농도, 그리고 배기가스 유량이었다. 오존주입에 의한 $NO_2$ 함량 증가는 촉매공정의 질소산화물 제거 성능을 크게 향상시킬 수 있었으며, 이러한 성능 향상 효과는 반응온도가 낮을수록 두드러졌다. 본 연구의 오존 주입 방법은 기존 촉매 공정의 개선에 크게 유용할 것으로 판단된다.

금속-디니트로실 착물 (제 3 보) : 몰리브덴과 텅스텐의 호모 및 헤테로 이핵 착물, $[Cl(phen)(NO)_2M({\mu}-pyz)M'(NO)_2(phen)Cl][ClO_4]_2 (phen=1,10-phenanthroline,\;pyz=pyrazine)$의 합성 및 구조에 대한 연구 (Metal-Dinitrosyl Complexes(III) : Synthesis and Structural Study of Homo-, Hetero-dinuclear Molybdenum and Tungsten Complexes, $[Cl(phen)(NO)_2M({\mu}-pyz)M'(NO)_2(phen)Cl][ClO_4]_2 $(phen = 1,10-phenanthroline, pyz = pyrazine))

  • 오상우;모성종
    • 대한화학회지
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    • 제37권7호
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    • pp.655-661
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    • 1993
  • $[{Mo(NO)_2Cl_2}_n]$$[{W(NO)_2Cl_2}_n]$의 다핵착물과 킬레이트 리간드인 1,10-phenanthroline을 반응시켜 중성화합물인 $[Mo(NO)_2Cl_2(phen)]$$[W(NO)_2Cl_2(phen)]$을 각각 합성하였다. 아세톤 용매에서 이 cis-디니트로실 화합물과 과염소산 은(I)을 1:1로 반응시켜 $[Mo(NO)_2(phen)(S)Cl][ClO_4]$$[W(NO)_2(phen)(S)Cl] [ClO_4]$ (S = acetone)의 양이온 화합물을 얻었다. 이 1가 양이온 화합물과 피라진을 2:1의 양론으로 각각 반응시켜 $[Cl(phen)(NO)_2M(pyz)M'(NO)_2(phen)Cl][C1O_4]_2$(M = Mo, M' = W) 및 $[Cl(phen)(NO)_2M(pyz)M'(NO)2(phen)Cl][C1O4]2$(M = Mo, M' = W)형의 호모 및 헤테로 이핵착물을 합성하였다. 합성한 착물의 특성은 원소분석과, $^1H-,\;^{13}C-$핵자기 공명 및 자외선, 전자흡수스펙트럼을 이용해서 조사하였으며 이들 분광학적 결과로부터 디니트로실 이핵착물의 기하학적 구조가 피라진 다리 리간드를 중심으로 한 $C_{2v}$ 대칭구조임을 확인할 수 있었다.

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도시에 있어서 연도오염에 관한 연구 (1) 동경도 연도가정의 $NO_2$ 농도 측정 (A Study on the Air Pollution Around a Major Trunk Road in Urban Area (1) Measurements of $NO_2$ Concentrations in Homes Along the Major Arterial Roads in Tokyo)

  • 손부순
    • 한국환경보건학회지
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    • 제21권3호
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    • pp.107-114
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    • 1995
  • To assess the contribution of automobile exhaust to indoor and outdoor levels of $NO_2$ around a major trunk road in Tokyo, $NO_2$ levels of 200 homes were measured at living rooms, kitchens and outdoor at each season, from the summer of 1990 to the spring of 1991, $NO_2$ level was measured for four days using diffusion $NO_2$ dosimeter. Outdoor $NO_2$ levels at each season and indoor $NO_2$ levels at seasons when heaters were not used decreased according to the distance from the roadside. The differences between $NO_2$ levels at zone I(within 20m from the roadside) and zone III(beyond 50m) was about 3 ppb. Automobile exhaust seemed to contribute to this difference. At seasons when heaters were used, indoor $NO_2$ levels of the homes equipped with vented heater, decreased according to the distance from the roadside. However, there was no correlation between indoor levels and the distance from the roadside at homes equipped with unvented heater.

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