• 제목/요약/키워드: SCR Catalyst

검색결과 276건 처리시간 0.031초

Low Temperature Performance and Compressive Strength Characteristics of an Extruded Homogeneous SCR

  • Seo, Choong-Kil;Oh, Kwang-Chul;Kim, Shin-Han
    • 동력기계공학회지
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    • 제19권4호
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    • pp.30-35
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    • 2015
  • The purpose of this study is to identify the low temperature performance and strength characteristics of V-based extruded homogeneous SCR. The extruded catalyst and the coated catalyst showed 50% and 27% of NOx conversion performance respectively at about $210^{\circ}C$ of catalyst temperature, so the extruded SCR was higher in de-NOx performance than the coated SCR especially at a low temperature zone. The compressive strength of the Enhanced Extrusion #1, in which the content of promoters such as silica, clay, glass fiber and binder was optimized, was a 120% improvement compared to the Extrusion#1 catalyst, higher than the coated SCR.

SCR 촉매에 포함된 조촉매 영향 (Effect of Containing Promoter on SCR Catalysts)

  • 서충길
    • 한국산학기술학회논문지
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    • 제19권9호
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    • pp.474-481
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    • 2018
  • 친환경자동차의 보급 확대를 위한 정책수립과 기술개발이 지속적으로 이루어지고 있는 실정이나 아직까지도 내연기관이 차지하는 비중은 약 95% 차지하고 있다. 화석연료를 기반으로 하는 내연기관의 엄격한 배기가스규제를 충족시키기 위해 자동차와 선박용 후처리장치의 비중이 점차로 증가하고 있다. 디젤엔진은 이산화탄소 배출량이 적고 강력한 파워와 연료의 경제성을 가지고 있으며, 상용차뿐만 아니라 승용차에서도 시장의 수요가 증가하고 있다. 디젤 연료 특성으로 인하여 질소산화물은 국부적인 고온연소 영역에서 생성되며, 입자상물질은 확산연소 영역에서 생성된다. 희박한 LNT(질소산화물 흡장촉매)와 urea-SCR(선택적인촉매환원장치)는 디젤엔진에서 질소산화물을 저감시키기 위한 후처리장치로 개발되어져왔다. 이 연구는 가혹해지고 있는 배기가스 규제 대응을 위해 선택적인촉매환원장치의 촉매에 포함됨 조촉매의 영향을 파악하는 것이다. 망간-선택적인촉매환원장치의 질소산화물 저감 성능이 가장 우수하였으며, 망간 이온과 Zeolyst의 Al과의 이온교환이 잘 되었고, 활성화 에너지가 낮아 반응 속도가 빨라짐에 따라 질소산화물 저감 성능이 향상되었다. 7Cu-15Ba/78Zeolyst SCR 촉매의 질소산화물 저감 성능은 200도에서 32%, 500도에서 30%를 나타내며 가장 높은 성능을 나타내었고, 조촉매로 첨가된 산화바륨의 질소산화물의 흡장 물질이 Cu-SCR 촉매에 잘 분산되어 있고 Cu-SCR 촉매의 환원 반응과 더불어 산화바륨의 추가적인 질소산화물 저감 성능이 영향을 끼쳤기 때문이다. 7Cu-15Ba/Zeolyst SCR 촉매는 3종 촉매 중 열적 열화에서 내구성이 강하였다. 열적 열화에 따른 동종 성분 산화구리가 이동하여 응집되는데, 산화바륨이 주촉매 산화구리 입자의 응집을 감소시켰기 때문이다.

가스조성에 따른 선택적 환원촉매의 수은 산화 특성 (Characteristics of Mercury Oxidation by an SCR Catalyst with Gas Composition)

  • 이상섭;김광렬;오광중;전준민;김도증;김주영
    • 한국입자에어로졸학회지
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    • 제8권4호
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    • pp.125-132
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    • 2012
  • Mercury oxidation in an SCR(selective catalytic reduction) catalyst was tested in this study with the conditions simulating the SCR system in full-scale coal-fired flue gas. A commercially available SCR catalyst was located in a temperature-controlled reactor system, and simulated gas was injected into the reactor. Mercury oxidation efficiency was determined from the difference between inlet and outlet elemental mercury concentrations. A control experiment was carried out with the gas composition of 12% $CO_{2}$, 5% $H_{2}O$, 5% $O_{2}$, 500 ppm $SO_{2}$, 400 ppm NO, 400 ppm $NH_{3}$, 5 ppm HCl, and 20 ${\mu}g/m^{3}$ Hg. Additional tests were conducted with different gas composition from the control condition to investigate the effect of gas composition on mercury oxidation in the SCR catalyst.

$NH_3$-SCR 반응기 내에서의 $NH_3$/NOx 및 SCR 촉매 온도가 DeNOx 성능에 미치는 영향 (Effect of $NH_3$/NOx ratio and Catalyst Temperature on DeNOx Performance in the $NH_3$-SCR reactor)

  • 홍길화;공호정;황인구;박심수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회B
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    • pp.3096-3101
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    • 2008
  • Selective Catalytic Reduction (SCR) technology is well-known to be effective for the reduction of NOx emission. So car manufacturers has adopted Ures-SCR system to be satisfied with emission regulation. This paper discusses the effective of $NH_3/NOx$ ratio and SCR catalyst temperature in the $NH_3$-SCR reactor on DeNOx performance. So it is shown the characteristic of NOx conversion and ammonia slip using the $NH_3$ instead of Urea-Solution. From the result of this study, it is found to optimize $NH_3/NOx$ ratio to have the best case of high NOx conversion and low ammonia slip at variable SCR catalyst temperatures. Lastly, it is also found the characteristics of NOx conversion and ammonia slip with compared with Urea.

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상용 탈질 SCR 폐촉매의 현장 재생 효과 고찰 (A Study on the In situ Regeneration Effects of Commercial Deactivated SCR Catalyst)

  • 박해경;전민기;김문찬
    • 대한환경공학회지
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    • 제34권10호
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    • pp.664-670
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    • 2012
  • 상용 중유 발전소 배가스에 장기간 노출되어 활성이 현저히 저하된 탈질 SCR 폐촉매를 대상으로 현장 시스템을 모사하여 증류수 및 산성용액에 의한 세척과정을 거쳐 모사된 현장 조건으로 촉매를 재생하였다. 산성용액의 제조조건 및 처리조건에 따른 촉매의 물성변화를 확인하였고 질소산화물($NO_x$) 전환 촉매 활성 실험을 수행하여 촉매성능 변화를 고찰하였다. 촉매의 특성분석은 BET, Porosimeter, EDX (Energy Dispersive X-ray spectrometer), ICP (Inductively Coupled Plasma) 등을 이용하여 수행하였고, $NO_x$ 전환 반응실험은 중유 발전소 배가스를 모사하여 마이크로 반응기에서 SCR 반응을 수행하였다. 촉매특성 분석결과 재생된 촉매의 경우 비표면적은 신품 촉매 대비 95% 이상 회복되었고, $NO_x$ 전환활성은 산성용액 농도 3~6 M 범위에서 신품 촉매 대비 90% 이상을 회복한 것으로 나타났다. 이러한 촉매활성의 향상은 산성용액에 의한 촉매표면의 불순물들이 제거되면서 일어난 결과로 밝혀졌다.

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.

바나디아 촉매담지 세라믹 캔들필터를 이용한 질소산화물 제거기술 (Removal Technology of NOx Using V2O5/TiO2 Catalyst Impregnated Ceramic Candle Filters)

  • 이동섭;박진식
    • 한국환경과학회지
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    • 제16권9호
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    • pp.1077-1083
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    • 2007
  • [ $V_2O_5/TiO_2$ ] catalyst impregnated ceramic candle filters are in principle, capable of performing shallow-bed dust filtration plus a catalytic reaction, promoted by a catalytic deposited in their inner structure. Pilot-scale $V_2O_5/TiO_2$ catalyst impregnated ceramic candle filters were prepared, characterized and tested for their activity towards the SCR reaction. The effect on NO conversion of operating temperature, gas hourly space velocity, amount of deposited catalyst, pressure drops and long-term experiment (life of catalytic filter) was determined. The following effects of $V_2O_5/TiO_2$ catalyst impregnated ceramic candle filters in SCR reaction are observed: (1) It increases the activity and widens the temperature window for SCR. (2) When the content of $V_2O_5$ catalyst increases further from 3 to 9wt.%, activity of NO increases. (3) NO conversion at first increases with temperature and then decreases at high temperatures (above $400^{\circ} over), possibly due to the occurrence of the ammonia oxidation reaction.

단기통 디젤엔진에서 LNT/DPF + SCR/DPF 하이브리드 시스템의 NOx 및 PM 동시저감 특성 (Characteristics of Simultaneous Removal of NOx and PM over a Hybrid System of LNT/DPF + SCR/DPF in a Single Cylinder Diesel Engine)

  • 강우석;박수한;최병철
    • 한국자동차공학회논문집
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    • 제24권2호
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    • pp.152-160
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    • 2016
  • The market demand for diesel engine tends to increase in general passenger cars as well as commercial vehicles because of its advantages. However, to meet the vehicle emissions regulation which will be more stringent in the future, it is necessary to plurally apply all after-treatment technologies such as diesel oxidation catalyst (DOC), catalyzed diesel particulate filter (CDPF), lean NOx trap (LNT) and selective catalytic reduction (SCR), and so on. Accordingly, the exhaust after-treatment system for diesel vehicle requires the technology of minimizing the numbers of catalysts by integrating every individual catalysts. The purposes of this study is to develop hybrid exhaust after-treatment device system which simultaneously uses LNT/DPF and SCR/DPF catalyst concurrently reducing NOx and particulate matter (PM). As the results, the hybrid system with $NH_3$ generated at LNT/DPF working as a reducing agent of SCR/DPF catalyst, improving NOx conversion rate, was found to be more excellent in de-NOx performance than that in LNT/DPF alone system.

승용디젤엔진의 운전 조건 및 분사 조건 변경에 따른 Urea-SCR 시스템의 NOx 전환효율에 관한 연구 (Investigation on the DeNOx Efficiency in Urea-SCR System at Various Operating Conditions and Injection Characteristics for a Passenger Diesel Engine)

  • 홍길화;황인구;명차리;박심수
    • 대한기계학회논문집B
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    • 제33권12호
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    • pp.952-960
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    • 2009
  • Selective Catalytic Reduction (SCR) system is a high-effective NOx reduction technology in diesel engines. As the emission standard of diesel engines is more stringent, vehicle manufactures makes efforts on emission technologies. This paper discusses the performance of Urea-SCR system according to the engine operating conditions in a passenger diesel engine. Engine test results in this paper show that it is important to consider the catalyst temperature and space velocity to obtain high NOx conversion efficiency. In condition of high catalyst temperature, over 90% NOx conversion efficiency is indicated. However, when catalyst temperature is low, NOx conversion efficiency was decreased. Also, it was shown that space velocity mainly effects on the DeNOx performance under 220 degree celsius of SCR catalyst temperature. As the urea injection pressure was decreased, NOx conversion efficiency was declined. It is concerned about urea droplet atomization. This work shown in this paper can lead to improved overall NOx conversion efficiency.

Dynamic Characteristics of a Urea SCR System for NOx Reduction in Diesel Engine

  • Nam, Jeong-Gil;Choi, Jae-Sung
    • Journal of Advanced Marine Engineering and Technology
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    • 제31권3호
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    • pp.235-242
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    • 2007
  • This paper discusses dynamic characteristics of a urea-SCR (Selective Catalytic Reduction) system. The urea flow rate to improve NOx conversion efficiency is generally determined by parameters such as catalyst temperature and space velocity. The urea-SCR system was tested in the various engine operating conditions governing the raw NOx emission levels, space velocity. and SCR catalyst temperature. These experiments include cold-transients to determine catalyst light-off temperature and urea flow rate transients. Likewise. ammonia storage dynamics was also investigated. The cold-transient results indicate the light-off temperature of the catalysts used in these experiments was $200-220^{\circ}C$. The ammonia storage and urea flow rate transients all indicate very slow dynamics (on the order of seconds) which presents control challenges for mobile applications. The results presented in this paper should provide an excellent starting point in developing a functional in-vehicle urea-SCR system.