• 제목/요약/키워드: NOx decomposition

검색결과 53건 처리시간 0.032초

Plasma반응에 의한 NOx와 Ozone의 특성에 관한 연구 (A Study on Characteristics of NOx and Ozone by Plasma Reaction)

  • 최재욱;산외서수;최재진
    • 한국가스학회지
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    • 제4권2호
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    • pp.1-6
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    • 2000
  • 가스중에 포함되어 있는 NOx를 안전하게 처리하기 위하여 침상전극을 취부한 플라즈마 반응기를 제작하여 장치의 특성을 실험적으로 조사하여 유효성을 검정하였다. 반응가스는 $NO/N_2$ 혼합가스와 $N_2/O_2$ 혼합가스를 이용하여 초기 NO농도를 설정하고, 유속을 2${\iota}$/min으로 공급하였다. NOx의 반응특성은 방전주입전력이 높을때는 NO의 농도가 감소하였으며, 산소의 농도 증가시에 NO의 분해가 용이하고 NO의 분해에너지 효율이 높았다. 또한 NO의 농도가 증가할 수록 NO의 분해에너지 효율은 높으나 분해율은 낮았다. 오존의 특성은 방전주입전력이 높을수록 오존의 생성이 증가하고, $NO/N_2$의 농도가 증가할 수록 오존의 생성량이 감소하였다.

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Ni, Ru-ZSM-5를 첨가한 NSR 촉매의 NOx 정화 특성 (Characteristics of NOx Reduction on NSR(NOx Storage and Reduction) Catalyst Supported by Ni, Ru-ZSM-5 Additives)

  • 최병철;이춘희;정종우
    • 한국자동차공학회논문집
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    • 제15권5호
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    • pp.105-111
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    • 2007
  • In this study, we investigated the conversion performance of de-NOx catalyst for lean-burn natural gas engine. As a de-NOx catalyst, NOx storage reduction catalyst was composed of Pt, Pd and Rh with washcoat including Ba and Ni, Ru-ZSM-5. Ni, Ru-ZSM-5, which was regarded as a NOx direct decomposition catalyst, was made up of ion exchanged ZSM-5 by 5wt.% Ni or Ru. The performance of de-NOx catalyst was evaluated by NOx storage capacity and catalytic reduction in air/fuel, $\lambda=1.6$. The catalytic reaction was also observed when the added fuel was supplied to fuel rich atmosphere by fuel spike period of 5 seconds. The NOx conversion of the catalysts with Ni-ZSM-5 or Ru-ZSM-5 was mainly caused by the effect of NOx adsorption of Ba rather than the catalytic reduction of Ni, Ru-ZSM-5. Ni, Ru-ZSM-5 catalysts can not use for the NSR catalyst because they have quick process in thermal deactivation.

SPCP+AC 중첩 방전 반응기에 의한 NOx의 분해 제거 (Decomposition of NOx by SPCP+AC Superposing Discharge Plasma Reactor)

  • 선상권;우인성;황명환;박동화;김윤선;산외서수
    • 한국산업안전학회:학술대회논문집
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    • 한국안전학회 1999년도 춘계 학술논문발표회 논문집
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    • pp.217-222
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    • 1999
  • 비열플라스마를 형성하는 방법은 전자 beam조사식과 전기방전법이 있다. 이 두방법의 공통점은 고에너지의 전자를 생성하여 플라스마를 발생시켜 가스분자의 전자충돌과 이온화에 의해 free radical반응에 의하여 가스분자를 분해시키는 것이다. (중략)

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NH3-SCR용 나노분산 TiO2 담체상에 제조된 V2O5WO3/TiO2 촉매: TiO2 분산입도와 NOx 최대 분해온도와의 상관성 (V2O5WO3/TiO2 Catalyst Prepared on Nanodispersed TiO2 for NH3-SCR: Relationship between D ispersed Particle Size of TiO2 and Maximum Decomposition Temperature of NOx)

  • 서민채;반세민;허재구;추용식;문경석;김대성
    • 한국재료학회지
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    • 제32권11호
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    • pp.496-507
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    • 2022
  • For the selective catalytic reduction of NOx with ammonia (NH3-SCR), a V2O5WO3/TiO2 (VW/nTi) catalyst was prepared using V2O5 and WO3 on a nanodispersed TiO2 (nTi) support by simple impregnation process. The nTi support was dispersed for 0~3 hrs under controlled bead-milling in ethanol. The average particle size (D50) of nTi was reduced from 582 nm to 93 nm depending on the milling time. The NOx activity of these catalysts with maximum temperature shift was influenced by the dispersion of the TiO2. For the V0.5W2/nTi-0h catalyst, prepared with 582 nm nTi-0h before milling, the decomposition temperature with over 94 % NOx conversion had a narrow temperature window, within the range of 365-391 ℃. Similarly, the V0.5W2/nTi-2h catalyst, prepared with 107 nm nTi-2h bead-milled for 2hrs, showed a broad temperature window in the range of 358~450 ℃. However, the V0.5W2/Ti catalyst (D50 = 2.4 ㎛, aqueous, without milling) was observed at 325-385 ℃. Our results could pave the way for the production of effective NOx decomposition catalysts with a higher temperature range. This approach is also better at facilitating the dispersion on the support material. NH3-TPD, H2-TPR, FT-IR, and XPS were used to investigate the role of nTi in the DeNOx catalyst.

펄스방전을 사용한 이중베리어방전 반응기에 있어서 NOx 제거에 관한 연구 (A study on NOx removal in double barrier discharge reactor using pulse power supply)

  • 김동욱;김응복;정영식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1999년도 추계학술대회 논문집
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    • pp.169-172
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    • 1999
  • In this experimental study we Proposed the double dielectric barrier discharge (DDBD) reactor to produce as high an electric field as possible. The experiment are conducted for applied voltage from 15 to 20[tV], flow gas rage at 2[1/min] and pulse rate at 120[pulses/s] and 240[pulses/s]. SPD connection of DDBD which combine the surface discharge with the silence discharge was most effective to reduce the NOx. In the decomposition efficiency per watt, the low pulse rate gave hotter efficiency than that of the high pulse rate. However in DeNOx rate, the high pulse rate gave better performance than that of the low pulse rate. NOx removal rate increased with increasing the applied voltage in all reactors.

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중첩 방전 반응기에 의한 NOx의 분해 특성 (The Characteristics of Decomposition of NOx by Superposing Discharge Plasma Reactor)

  • 선상권;우인성;황명환;박동화;조정국
    • 조명전기설비학회논문지
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    • 제13권4호
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    • pp.32-37
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    • 1999
  • 본 연구에서는 연소공정에서 발생하는 NOx를 제거하기 위해 연면방전과 AC Corona 방전을 중첩해서 특수설계 제작된 중첩방전 반응기의 방전분해 특성을 연구하였다. 실험은 SPCP, Corona Discharge 및 중첩방전에 대한 NOx의 분해율을 비교 측정하였다. 실험변수는 방전형태, 가스의 농도, 방전주파수, 가스의 유량 등에 대하여 측정하였다. 실험결과 중첩방전에 의한 NOx의 분해율은 SPCP방전고 Corona방전에 의한 분해율보다 10∼15[%] 증가하였고 소모전력도 10[%] 정도 작게 소모되었다. 중첩방전시 상부전극의 주파수의 영향은 주파수가 작을수록 NOx의 분해율이 높았고 하부전극의 SPCP만의 방전시에는 주파수가 높을수록 NOx의 분해율이 증가하였다. 방전형태에 대한 NOx의 최대분해율은 SPCP일 때 방전전력 18[W]에서 80[%] 이었고 AC코로나 방전일 때 방전전력 805[W]에서 10[%] 이었으나 중첩방전의 경우는 14[W]에서 90[%]로 중첩방전의 효과는 10[%]이상 증가하였다.

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Fabrication of $(La, Sr)MO_3$ (M=Mn or Co)/YSZ Nanocomposite Thin Film Electrodes for the Exhaust Gas Purification by a Chemically-Modified Sol-Gel Process

  • Hwang, H.J.;Moon, J.W.;Awano, M.;Maeda, K.
    • 한국분말재료학회지
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    • 제8권3호
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    • pp.201-206
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    • 2001
  • $>LaMnO_3$$(La, Sr)MO_3$, and $(La, Sr)MO_3/YSZ$ gel films were deposited by spin-coating technique on scandium-doped zirconia (YSZ) substrate using the precursor solution prepared from $La(O-i-C_3H_7)_3$, $Co(CH_3COO)_2$or $Mn(O-i-C_3H_7)_2$,2-methoxyethanol, and polyethylene glycol. By heat-treating the gel films, the electrochemical cells, $(La, Sr)MnO_3{\mid}ScSZ{\mid}Pt$ were fabricated. The effect of polyethylene glycol on the microstructure evolution of $$LaCoO_3and $LaMnO_3$thin films was investigated, and NOx decomposition characteristics of the electrochemical cells were investigated at $500^{\circ}C$ to $600^{\circ}C$. By applying a direct current to the $(La, Sr)MnO_3{\mid}ScSZ{\mid}Pt$ electrochemical cell, good NOx conversion rate could be obtained relatively at low current value even if excess oxygen is included in the reaction gas mixture.

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EHC 기반 Urea-SCR 시스템 히터 표면온도 분포의 1-D 모델링 (1-D Modeling of Heater Surface Temperature Distribution in EHC-based Urea-SCR System)

  • 박선홍;손지현;문석수;오광철;장성욱;박성서
    • 한국분무공학회지
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    • 제27권1호
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    • pp.11-17
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    • 2022
  • In upcoming Post Stage-V and Tier 5 regulations of construction machineries, nitrogen oxide (NOx) emissions are strictly limited in cold start conditions. In response to this, a method of improving NOx conversion efficiency has been applied by installing an electric heating catalyst (EHC) in front of conventional urea-SCR systems so that the evaporation and thermal decomposition of urea-water solution can be promoted in cold start conditions. In this strategy, the evaporation and thermal decomposition of urea-water solution and corresponding NOx conversion efficiency are governed by temperature conditions inside the EHC. Therefore, characterizing the temperature distribution in the EHC under various operating conditions is crucial for the optimized operation and control of the EHC in Urea-SCR systems. In this study, a 1-D modeling analysis was performed to predict the heater surface temperature distribution in EHC under various operating conditions. The reliability of prediction results was verified by comparing them with measurement results obtained using an infrared (IR) camera. Based on 1-D analysis results, the effects of various EHC operation parameters on the heater surface temperature distribution were analyzed and discussed.

대형 디젤 엔진용 요소분사 SCR촉매의 deNOx 성능향상을 위한 요소수용액의 분사특성 연구 (A Study on the Injection Characteristics of Urea Solution to Improve deNOx Performance of Urea-SCR Catalyst in a Heavy Duty Diesel Engine)

  • 정수진;이천환
    • 한국자동차공학회논문집
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    • 제16권4호
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    • pp.165-172
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    • 2008
  • Urea-SCR, the selective catalytic reduction using urea as reducing agent, has been investigated for about 10 years in detail and today is a well established technique for deNOx of stationary diesel engines. In the case of the SCR-catalyst a non-uniform velocity and $NH_3$ profile will cause an inhomogeneous conversion of the reducing agent $NH_3$, resulting in a local breakthrough of $NH_3$ or increasing NOx emissions. Therefore, this work investigates the effect of flow and $NH_3$ non-uniformities on the deNOx performance and $NH_3$ slip in a Urea-SCR exhaust system. From the results of this study, it is found that flow and $NH_3$ distribution within SCR monolith is strongly related with deNOx performance of SCR catalyst. It is also found that multi-hole injector shows better $NH_3$ uniformity at the face of SCR monolith face than one hole injector.