• 제목/요약/키워드: 선택적 환원촉매

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일체형 PM/NOx 동시저감장치의 최적 설계에 대한 기초 연구 (A Basis Study on the Optimal Design of the Integrated PM/NOx Reduction Device)

  • 최수정;;이원주;김준수;김정국;박호용;임인권;최재혁
    • 해양환경안전학회지
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    • 제28권6호
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    • pp.1092-1099
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    • 2022
  • 대기오염물질과 온실가스 배출량을 저감 시키기 위한 배기 후처리 장치에 대한 연구는 활발히 진행 중이지만 그 중 선박용 입자상물질/질소산화물(PM/NOx) 동시저감 장치에서는 엔진에 미치는 배압 및 필터 담체 교체에 대한 문제가 발생하고 있다. 본 연구에서는 PM/NOx를 동시저감 할 수 있는 일체형 장치의 최적 설계를 위해 장치 내부 유동과 입·출구 압력을 통한 배압의 변화를 연구하여 적절한 기준을 제시하였다. Ansys Fluent를 활용하여 디젤미립자필터(DPF) 및 선택적촉매환원법(SCR)에 다공성 매체 조건을 적용하였고 공극률은 30 %, 40 %, 50 %, 60 % 및 70 %로 설정하였다. 또한, 엔진 부하에 따른 Inlet 속도를 경계 조건으로 7.4 m/s, 10.3 m/s, 13.1 m/s 및 26.2 m/s로 적용하여 배압에 미치는 영향을 분석하였다. CFD 분석 결과, 장치의 입구 온도 보다 입구 속도에 따른 배압의 변화율이 크고 최대 변화율은 27.4 mbar였다. 그리고 모든 경계 조건에서의 배압이 선급 기준인 68 mbar를 초과하지 않았기 때문에 1800 kW 선박에 적합한 장치로 평가되었다.

환원제로서 바이오디젤 혼합연료가 HC-SCR의 NOx 변환효율에 미치는 영향 연구 (The Effect of Biodiesel Blend Fuels As Reductants on NOx Conversion Efficiency of HC_SCR)

  • 송호영;이민호;김기호
    • 에너지공학
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    • 제24권4호
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    • pp.140-145
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    • 2015
  • 본 연구는 경유를 2차 분사연료로 사용하는 HC-SCR 후처리장치에서 2차 분사연료의 바이오디젤 함량 변화(BD0, BD10, BD25)에 다른 NOx 변환특성을 분석하였다. 시험조건은 HC-SCR 장치의 특성, 2차 분사연료의 distillation 등을 고려하여 장치 전단온도는 $290^{\circ}C$, $320^{\circ}C$, $350^{\circ}C$로 설정하였으며, 공간속도는 55,000(1/h)으로 고정하고 연료분사량을 조절하였다. Distillation 시험결과, T90은 약 $350^{\circ}C$로 동일한 수준이었으며 바이오디젤 함량이 증가할수록 $350^{\circ}C$보다 낮은 조건에서 증발량이 감소한다는 결과를 얻었다. 2차 분사연료에 혼합된 바이오디젤 함량이 증가할수록 NOx 저감효율은 감소하는 것을 확인하였으며 저온조건($290^{\circ}C$)보다 고온조건($320^{\circ}C$, $350^{\circ}C$)에서 NOx 저감율의 차이가 더 크게 발생했다. 이러한 결과는 바이오디젤의 열악한 증발특성(Distillation)과 높은 분자량인 것으로 추측된다.

냉각수 순환 방식 가열원 형상에 따른 요소수 해동 특성에 관한 수치적 연구 (Numerical Investigation of the Urea Melting and Heat Transfer Characteristics with Three Different Types of Coolant Heaters)

  • 이승엽;김만영;이천환;박윤범
    • 한국자동차공학회논문집
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    • 제20권4호
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    • pp.125-132
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    • 2012
  • Urea-SCR system, which converts nitrogen oxides to nitrogen and water in the presence of a reducing agent, usually AdBlue urea solution, is known as one of the powerful NOx reduction systems for mobile as well as stationary applications. For its consistent and reliable operation in mobile applications, such various problems as transient injection, ammonia slip, and freezing in cold weather have to be resolved. In this work, therefore, numerical study on three-dimensional unsteady heating problems were analyzed to understand the melting and heat transfer characteristics such as urea liquid volume fraction, temperature profiles and generated natural convection behavior in urea solution by using the commercial software Fluent 6.3. After validating by comparing numerical and experimental data with pure gallium melting phenomena, numerical experiment for urea melting is conducted with three different coolant heating models named CH1, 2, and 3, respectively. Finally, it can be found that the CH3 model, in which more coolant is concentrated on the lower part of the urea tank, has relatively better melting capability than others in terms of urea quantity of $1{\ell}$ for start-up schedule.

Urea-SCR 분사시스템의 DeNOx 저감 성능 향상과 NH3 슬립저감을 위한 모델 기반 제어알고리즘 개발 및 구현 (The Development and Implementation of Model-based Control Algorithm of Urea-SCR Dosing System for Improving De-NOx Performance and Reducing NH3-slip)

  • 정수진;김우승;박정권;이호길;오세두
    • 한국자동차공학회논문집
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    • 제20권1호
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    • pp.95-105
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    • 2012
  • The selective catalytic reduction (SCR) system is a highly-effective aftertreatment device for NOx reduction of diesel engines. Generally, the ammonia ($NH_3$) was generated from reaction mechanism of SCR in the SCR system using the liquid urea as the reluctant. Therefore, the precise urea dosing control is a very important key for NOx and $NH_3$ slip reduction in the SCR system. This paper investigated NOx and $NH_3$ emission characteristics of urea-SCR dosing system based on model-based control algorithm in order to reduce NOx. In the map-based control algorithm, target amount of urea solution was determined by mass flow rate of exhaust gas obtained from engine rpm, torque and $O_2$ for feed-back control NOx concentration should be measured by NOx sensor. Moreover, this algorithm can not estimate $NH_3$ absorbed on the catalyst. Hence, the urea injection can be too rich or too lean. In this study, the model-based control algorithm was developed and evaluated on the numerical model describing physical and chemical phenomena in SCR system. One channel thermo-fluid model coupled with finely tuned chemical reaction model was applied to this control algorithm. The vehicle test was carried out by using map-based and model-based control algorithms in the NEDC mode in order to evaluate the performance of the model based control algorithm.

ETC 모드에서 Urea-SCR 시스템의 성능 특성 연구 (Study on the Performance Characteristics of Urea-SCR System in the ETC Test)

  • 함윤영;최동석;박용성
    • 한국자동차공학회논문집
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    • 제18권2호
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    • pp.122-128
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    • 2010
  • To meet the NOx limit without a penalty of fuel consumption, urea-SCR system is currently regarded as promising NOx reduction technology for diesel engines. SCR system has to achieve maximal NOx conversion in combination with minimal $NH_3$ slip. In this study, the performance characteristics of urea-SCR system with open loop control were assessed in the European Transient Cycle(ETC) for heavy duty diesel engine. The SCR inlet temperaure varied in the range of 200 to $340^{\circ}C$ in the ETC cycle. Open loop control calculated the urea flow rate based on the NOx and NSR map which gave for each combination of SCR inlet temperature and space velocity the normalized $NH_3$ to NOx stoichiometric ratio which resulted in a steady-state $NH_3$ slip of 20ppm. During the ETC cycle, the open loop control with the optimized NSR offset achieved NOx reduction of 80% while keeping the average $NH_3$ slip below 10ppm and maximum 20ppm. It was also found that NOx sensor was cross-sensitive to $NH_3$ and a control strategy for cross-sensitivity compensation was required in order to use a NOx sensor as feedback device.

SCR 시스템의 믹서 구조 특성에 따른 유동 혼합 특성에 관한 연구 (The Study on the Effects of Mixer Configurations on Fluid Mixing Characteristics in SCR Systems)

  • 서진원;이규익;오정택;최윤호;이종화;박진일
    • 한국자동차공학회논문집
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    • 제16권6호
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    • pp.192-199
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    • 2008
  • The key issues for the reduction technologies of the exhaust gas from diesel engine being developed are to reduce particulate matters and NOx. The SCR system is known to be one of the most efficient and stable technologies to remove NOx through the mixing of NOx and urea solution. In the present research, the effects of mixer configurations of SCR system have been investigated to enhance the SCR performance. First, a Schlieren technique is employed to visualize the mixing characteristics of urea solution and exhaust gas. The results show that a mixer is essential to obtain proper fluid mixing. In addition, numerical studies have been made to understand the mixing characteristics through the comparison of the mal-distribution index of concentration at the several locations of the diffuser. In particular, the effects of number of blade and mixer angles on mixing characteristics were studied. The results show that the blade angle has a larger effect on the mixing characteristics than the number of blades.

국내 EGR과 SCR 장착 중형트럭 대기오염물질 배출 특성 (Characteristics of Air Pollutants Emission from Medium-duty Trucks Equipped EGR and SCR in Korea)

  • 손지환;김정화;정성운;유흥민;홍희경;문선희;최광호;이종태;김정수
    • 한국분무공학회지
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    • 제21권3호
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    • pp.130-136
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    • 2016
  • NOx and PM are important air pollutants as vehicle management policy aspect. Medium-duty truck is the main source of the pollutants although the vehicle market share is only 3.5%. National emission portion of NOx and PM form the mobile sourece are 14% and 16% respectively. In this study it was investigated that characteristics of air pollutants emission on medium duty truck equipped with EGR and SCR system. Vehicle's test reflected driving cycle on the chassis dynamometer, and applied test cycle was WHVC(World Harmonized Vehicle Cycle) mode. The test cycle include three segments, represent urban, rural and motorway driving. Based on the test results NOx, PM, HC were less emitted form SCR vehicle than EGR vehicle. And CO was less emitted form EGR vehicle than SCR vehicle due to CO oxidation reaction on DPF surface. And most air pollutants reduced as average vehicle speed increased. Pollutants were less emitted on motorway section than urban and rural sections. But highly NOx emission on motorway section was verified according to increased EGR ratio on fast vehicle speed. HC and CO additional emission was identified as 68%, 58% respectively during SCR vehicle's cold engine start emission test. NOx additional emission was detected by 24% on SCR vehicle's condition of engine cold start while not detected on vehicle equipped with EGR. SCR vehicle's additional NOx emission was derived from low reaction temperature during engine cold start condition. medium-duty truck emission characteristics were investigated in this study and expected to used to improve air pollutants management policy of medium-duty truck equipped with SCR & EGR.

CFC-113로부터 CFC-1113의 합성시 Ni/SiO2(또는 Al2O3) 촉매상에서 다른 금속의 첨가효과 (An Influence of Additional Metals over Ni/SiO2 or Ni/Al2O3 on the Formation of CFC-1113 from CFC-113)

  • 김진호;박건유;하백현
    • 공업화학
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    • 제10권2호
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    • pp.237-241
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    • 1999
  • 니켈을 알루미나와 실리카 담체에 담지 한후 CFC-113 ($CF_2Cl$-$CFCl_2$)을 수소 기류 중에서 3FCl ($CF_2$=CFCl, CFC-1113)로 하는 환원반응을 실시하였다. 실리카나 알루미나의 경우 모두 활성이 급격히 저하하였으며 니켈의 함량이 증가할수록 저하속도는 현저하였다. 그러나 선택성은 80% 수준을 유지하면서 변하지 않았다. 알루미나 상에 동과 리티움을 니켈과 동시에 담지 시켰을 시는 활성과 선택성이 크게 개선되었다. 그러나 과량의 리티움의 증가는 활성과 선택성을 모두 저하시켰다. 담체로 실리카를 사용한 경우에는 활성이 급격히 저하되었는데, 이는 반응중 생성 된 HF가 Silica와 반응, $SiF_4$로 증발됨으로서 표면적이 큰 실리카 담체의 손실 또는 알카리 금속의 첨가로 인한 활성점의 감소에 의한 것으로 보여 진다.

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De-NOx 저감장치가 온실가스 배출량에 미치는 영향 연구 (A Study on the Effect of De-NOx Device on GHG Emissions)

  • 김성우;김정환;김기호;오상기
    • 한국분무공학회지
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    • 제23권4호
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    • pp.212-220
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    • 2018
  • As increase the number of vehicles, the issue of greenhouse gas that was emitted by them became important. As a result, greenhouse gas (GHG) regulations are being strengthened and efforts are being actively made to reduce greenhouse gas emissions in the automotive industry. In the other hand, regulations for harmful emission of vehicles have been reinforced by step. Especially, the lastly applied step, so called Euro 6, not only decreased NOx limit down to half of Euro 5 but also introduced real driving emission limit for NOx and PN. It is a challenge for manufacturers to meet the recent GHG regulation as well as the latest emission regulation. To overcome these regulations a De-NOx after-treatment system is being applied to diesel vehicles that are known emitting the lowest GHG among conventional internal combustion engines. At the time of the introduction of Euro 6 emission standard in Korea, in the domestic fuel economy certification test, some diesel vehicles emitted more $CH_4$ than Euro 5 vehicles. As a result, it was confirmed that LNT-equipped vehicles emitted a high level $CH_4$ and the level exceeded the US emission standard. In order to determine the reason, various prior literature was investigated. However, it was difficult to find a detailed study on the methane increase with LNT. In this paper, to determine whether the characteristics of vehicles equipped with LNT the affects the above issue and other greenhouse gases, 6 passenger cars were tested on several emission test modes and ambient temperatures with a environment chamber chassis dynamometer. 2 cars of these were equipped with LNT only, other 2 cars had SCR only, and LNT + SCR were applied to remaining 2 cars. The test result shown that the vehicles equipped with LNT emitted more $CH_4$ than the vehicles with SCR only. Also, $CH_4$ tended to increase as the higher acceleration of the test mode. However, as the test temperature decreases, $CH_4$ tended to decreased. $CO_2$ was not affected by kinds of De-NOx device but characteristic of the test modes.

유효충돌빈도를 고려한 암모니아 생성 증대기법 연구 (Study on Enhancement of Ammonia Generation for Effective Collision Frequency)

  • 김세진;최용석;박현철
    • 항공우주시스템공학회지
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    • 제17권6호
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    • pp.1-8
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    • 2023
  • 기후변화 대응을 위하여, 항공 분야를 포함한 운송 분야에서 국제온실가스 감축제도 도입 추진 및 대체 에너지 개발 등 환경문제에 대한 연구개발이 활발하다. 그 중 무탄소 에너지원으로 주목받는 암모니아 연료에 대한 관심이 증대되고 있다. 암모니아는 액화 및 운반이 용이하며, 메탄올과 비슷한 에너지 밀도 등의 장점이 있다. 그러나 폭발성 및 독성으로 취급성이 어렵다. 본 연구에서는 암모니아에 비해 취급이 용이한 요소수에 고온의 수분으로 열분해와 가수분해 반응을 유도하여 안정적인 암모니아 발생을 시도하고자 하였다. 암모니아 가수분해 촉진을 위해 고온의 증기를 이용하였고 이론 당량비 미만의 암모니아 발생원인 규명을 하고자 했다. 기체분자운동론에 기인하여 가수분해 촉진을 위한 충분한 충돌빈도가 이루어지지 않았다는 가설을 수립했다. 수분 공급량 변화를 통해 미반응 이소시안산의 가수분해 여부를 실험하였고 암모니아 발생량이 증가함을 확인하였다. 일정 구간동안 암모니아 발생량 증가는 증기 온도, 수분공급유량에 종속됨을 알 수 있었다.