• 제목/요약/키워드: standard SCR

검색결과 41건 처리시간 0.029초

NESCR 소자에서 정전기 보호 성능 향상을 위한 최적의 P-Well 구조 설계 (Optimal P-Well Design for ESD Protection Performance Improvement of NESCR (N-type Embedded SCR) device)

  • 양준원;서용진
    • 한국위성정보통신학회논문지
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    • 제9권3호
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    • pp.15-21
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    • 2014
  • NESCR 구조의 정전기 보호소자가 고전압 동작용 I/O 응용을 위해 분석되었다. 기존의 NESCR 표준소자는 매우 낮은 스냅백 홀딩 전압을 갖는 전형적인 SCR 특성을 나타내므로 정상적인 동작 동안 래치업 문제를 초래한다. 그러나 본 연구에서 제안하는 CPS 및 부분적으로 형성된 P-well 구조를 갖는 NESCR_CPS_PPW 변형소자는 높은 온-저항과 스냅백 홀딩 전압을 나타내어 래치업 면역 능력을 향상시킬 수 있었다.

WLTC 시험 모드에서 소형 경유자동차의 후처리 시스템에 따른 질소산화물 및 입자개수 배출 특성 (Characteristics of NOx and PN According to After-treatment for Light-duty Diesel Vehicles in WLTC Test Mode)

  • 이동인;고상철;유영수;박준홍;차준표;전문수
    • 한국분무공학회지
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    • 제23권4호
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    • pp.234-243
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    • 2018
  • Since September 2017, a small diesel vehicle certification test mode has been enhanced from NEDC to WLTC. The main reason for the change of the certification test mode is that the certification test mode of the emission control standard of the diesel vehicle does not sufficiently reflect various driving patterns of the actual roads. Several automakers have developed after-treatment systems such as LNT, SCR, and DPF to meet enhanced emissions regulations. In this study, four small diesel cars were selected for sale in Korea, and the exhaust gas measurement test was performed in the WLTC mode, which reflects the driving characteristics of the actual roads. As a result of test, LNT vehicle exceeded Euro 6 NOx regulation and SCR vehicle satisfied Euro 6 NOx regulation. In addition, both LNT and SCR systems showed high NOX emission characteristics due to speed, RPA and Vxa. For the PN, all test vehicles were fitted with a DPF and met the Euro 6 PN regulations, with similar PN emissions results in LNT and SCR system.

Urea-SCR 시스템의 NH3 흡·탈착 특성 및 모델기반 제어 연구 (A Study of NH3 Adsorption/Desorption Characteristics and Model Based Control in the Urea-SCR System)

  • 함윤영;박수열
    • 한국자동차공학회논문집
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    • 제24권3호
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    • pp.302-309
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    • 2016
  • 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, model based open loop control for urea injection was developed and assessed in the European Transient Cycle (ETC) for heavy duty diesel engine. On the basis of the transient modeling, the kinetic parameters of the $NH_3$ adsorption and desorption are calibrated with the experimental results performed over the zeolite based catalyst. $NH_3$ storage or surface coverage of SCR catalyst can not be measured directly and has to be calculated, which is taken into account as a control parameter in this model. In order to reduce $NH_3$ slip while maintaining NOx reduction, $NH_3$ storage control algorithm was applied to correct the basic urea quantity. If the actual $NH_3$ surface coverage is higher than the maximal $NH_3$ surface coverage, the urea injection quantity is significantly reduced in the ETC cycle. By applying this logic, the resulting $NH_3$ slip peak can be avoided effectively. With optimizing the kinetic parameters based on standard SCR reaction, it suggests that a simplified, less accurate model can be effective to evaluate the capability of model based control in the ETC cycle.

대형 경유트럭의 NOx 저감장치에 따른 배출가스 특성비교 (Comparison on Exhaust Gas of Heavy Duty Diesel Trucks; THC and CO Emission Affected by NOx Control Devices (EGR, SCR))

  • 문선희;유흥민;손지환;윤창완;박규태;김정수;이종태
    • 한국분무공학회지
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    • 제20권3호
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    • pp.149-155
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    • 2015
  • With increasing of GDP, the registration number of passenger cars has exceeded 20 million last year in Korea. Especially, the registration number of the diesel engine vehicles has been increasing. However, the WHO(World Health Organization) IARC (International Agency for Research on Cancer) has reported that diesel engine exhaust gas is an one of HAPs, which has carcinogenic for human, and they have designated it to Group 1. To solve this problem, exhaust gas from diesel engines has to be controlled. Thus, it has been controlling by European regulatory standard in Korea. On the other hand, in order to meet the enhanced emission regulations, all manufacturing company applied $NO_x$ control device to vehicles such as EGR (Exhaust Gas Recirculation), SCR (Selective Catalytic Reduction) and so on. However, these devices (EGR, SCR) were operated by difference reaction mechanism respectively, and the composition of exhaust gas would be differenced from that of them. In this study, it was conducted to evaluate variety characteristics on changing of exhaust gas composition by each $NO_x$ control device, and the heavy duty diesel trucks were chosen as experimental vehicles. From the result, it revealed that vehicles (with EGR) were discharged higher THC as 52.5% than that of others (with SCR). However, it did not followed that trend, in the case of CO; it was discharged as 57.2% lower than that of others (with SCR). In the future, these data would be used to apply to efficient $NO_x$ control device for meeting to EURO 6.

바나듐 계열 촉매를 통한 NOx의 NH3-SCR에 관한 실험적 연구 (An Experimental Study on the NH3-SCR of NOx over a Vanadium-based Catlayst)

  • 정희찬;심성민;김영득;정수진;김우승
    • 한국자동차공학회논문집
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    • 제20권1호
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    • pp.20-27
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    • 2012
  • The $NH_3$-SCR characteristics of $NO_X$ over a V-based catalyst are experimentally examined over a wide range of operating conditions, i.e., $170-590^{\circ}C$ and $30,000-50,000h^{-1}$, with a simulated diesel exhaust containing $NH_3$, NO, $NO_2$, $O_2$, $H_2O$, and $N_2$. The influences of the space velocity and oxygen concentration on the standard-SCR reaction are analyzed, and it is shown that the low space velocity and high oxygen concentration promote the SCR activity by ammonia. The best $deNO_X$ efficiency is obtained with a $NO_2/NO_X$ ratio of 0.5 because of an enhanced chemical activity induced by the fast-SCR reaction, while at the $NO_2/NO_X$ ratios above 0.5 the $deNO_x$ activity decreases due to the slow-SCR reaction. The oxidation of ammonia begins to take place at about $300^{\circ}C$ and the reaction products, such as $N_2$, NO, $NO_2$, $N_2O$, and $H_2O$, are produced by the undesirable oxidation reactions of ammonia, particularly at high temperatures above $450^{\circ}C$. Also, $NO_2$ decomposes to NO and $O_2$ at temperatures above $240^{\circ}C$. Therefore, $NO_2$ decomposition and ammonia oxidation reactions deteriorate significantly the SCR catalytic activity at high temperatures.

백금계 촉매상에서 산화질소(NO)의 산화반응속도에 관한 실험 및 모델링 연구 (An Experimental and Modeling Study on the Oxidation Kinetics of Nitric Oxide over Platinum-based Catalysts)

  • 김영득;정수진;김우승
    • 한국자동차공학회논문집
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    • 제20권5호
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    • pp.71-80
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    • 2012
  • To improve the $NO_X$ conversion over a SCR (selective catalytic reduction) catalyst, the DOC (diesel oxidation catalyst) is usually placed upstream of the SCR catalyst to enhance the fast SCR reaction ($4NH_3+2NO+2NO_2{\rightarrow}4N_2+6H_2O$) using equimolar amounts of NO and $NO_2$. Here, a ratio of $NO_2/NO_X$ above 50% should be avoided, because the reaction with $NO_2$ only ($4NH_3+4NO+O_2{\rightarrow}4N_2+6H_2O$) is slower than the standard SCR reaction ($4NH_3+4NO+O_2{\rightarrow}4N_2+6H_2O$). In order to accurately predict the performance characteristics of SCR catalysts, it is therefore desired to develop a more simple and reliable mathematical and kinetic models on the oxidation kinetics of nitric oxide over a DOC. In the present work, the prediction accuracy and limit of three different chemical reaction kinetics models are presented to describe the chemicophysical characteristics and conversion performance of DOCs. Steady-state experiments with DOCs mounted on a light-duty four-cylinder 2.0-L turbocharged diesel engine then are performed, using an engine-dynamometer system to calibrate the kinetic parameters such as activation energies and preexponential factors of heterogeneous reactions. The reaction kinetics for NO oxidation over Pt-based catalysts is determined in conjunction with a transient one-dimensional (1D) heterogeneous plug flow reactor (PFR) model with diesel exhaust gas temperatures in the range of 115~$525^{\circ}C$ and space velocities in the range of $(0.4{\sim}6.5){\times}10^5\;h^{-1}$.

PMOS 소자가 삽입된 부분웰 구조의 N형 SCR 소자에서 정전기 보호 성능 향상을 위한 최적의 CPS 이온주입에 대한 연구 (Study on the Optimal CPS Implant for Improved ESD Protection Performance of PMOS Pass Structure Embedded N-type SCR Device with Partial P-Well Structure)

  • 양준원;서용진
    • 한국위성정보통신학회논문지
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    • 제10권4호
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    • pp.1-5
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    • 2015
  • PPS 소자가 삽입된 부분웰 구조의 N형 실리콘 제어 정류기(NSCR_PPS) 소자에서 정전기 보호 성능의 향상을 위한 CPS 이온주입조건의 최적화에 대해 연구하였다. 종래의 NSCR 표준소자는 on-저항, 스냅백 홀딩 전압 및 열적 브레이크다운 전압이 너무 낮아 정전기 보호소자의 필요조건을 만족시키지 못해 적용이 어려웠으나, 본 연구에서 제안하는 CPS 이온주입과 부분웰 이온주입을 동시에 적용한 변형 설계된 소자의 경우 스냅백 홀딩 전압을 동작전압 이상으로 증가시킬 수 있는 향상된 정전기 보호성능을 나타내어 고전압 동작용 마이크로 칩의 정전기보호 소자로 적용 가능함을 확인하였다.

고전압 동작용 I/O 응용을 위해 Counter Pocket Source 구조를 갖도록 변형된 DDD_NSCR 소자의 ESD 보호성능 시뮬레이션 (Simulation-based ESD protection performance of modified DDD_NSCR device with counter pocket source structure for high voltage operating I/O application)

  • 서용진;양준원
    • 한국위성정보통신학회논문지
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    • 제11권4호
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    • pp.27-32
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    • 2016
  • 종래의 이중 확산된 드레인을 갖는 n형 MOSFET(DDD_NMOS) 소자는 매우 낮은 스냅백 홀딩 전압을 갖는 SCR 특성을 나타내므로 정상적인 동작 동안 래치업 문제를 초래한다. 그러나, 본 연구에서 제안하는 counter pocket source (CPS) 구조를 갖도록 변형된 DDD_NMOS 구조의 SCR 소자는 종래의DDD_NSCR_Std 표준소자에 비해 스냅백 홀딩 전압과 온-저항을 증가시켜 우수한 정전기 보호 성능과 높은 래치업 면역 특성을 얻을 수 있는 것으로 확인되었다.

실험계획을 통한 자동차 촉매 소성 공정의 생산성 향상과 안정성 증대 연구 (A Study on the Improvement in Productivity and Safetiness for Calcination Process of Automotive Catalyst by Using Design of Experiment)

  • 정철규;이창호
    • 대한안전경영과학회지
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    • 제21권1호
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    • pp.17-23
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    • 2019
  • The diesel engine generate many pollutants such as PM(Particulate matter) and NOx(Nitrogen oxide). So the SCR(Selective catalytic reduction) must be required to meet the emission standard. The SCR catalyst market is growing rapidly, and the automobile markets using alternative energy sources are growing rapidly. This study deals with optimization of the calcination process the manufacturing process of SCR catalyst to be competitive. The calcination process is a bottleneck and it is required to optimize productivity and accept to be safety, But we cannot trade off anything in terms of safety. We applied DOE(Design of experiments) among many research methods performed in various fields. In order to achieve quality and productivity optimization. The dependent variables in the DOE were selected as NO Conversion(%). The independent variables were selected as the calcination temperature, soaking time and fan speed RPM. the CCD(Central composite designs) constructs response surface using the data onto experience and finds optimum levels within the fitted response surfaces. Our tests are our stability guarantee and efficient together with operation.

기존 선박의 디젤발전기용 SCR 시스템 설치에 관한 연구 (A Study on the Installation of SCR System for Generator Diesel Engine of Existing Ship)

  • 류영현;김홍렬;조규백;김홍석;남정길
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권4호
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    • pp.412-417
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    • 2015
  • IMO MEPC에서는 해양환경 보호를 위해서 선박으로부터 배출되는 배기가스 규제를 날로 점점 강화하고 있다. 특히, 2016년부터 건조되어 국제항해를 하는 모든 신조 선박에 대한 질소산화물(NOx) 배출량은 Tier-III 규제를 만족하게 되어 있다. 본 연구에서는 선박용으로 개발된 NOx 저감용 SCR(선택적 환원 촉매) 시스템을 기존 선박의 디젤발전기에 설치하여 NOx 저감성능을 파악하고자 하였다. 본 연구를 위하여 목포해양대학교 실습선 새누리호 디젤발전기의 배기 파이프라인을 개조 공사하여 요소 SCR 시스템을 설치하였으며, 요소 용액(40%) 분사 방법은 수동 모드와 PLC를 통한 자동 모드로 나누어 두 가지 방법으로 실험을 하였다. 수동 모드 방법을 통하여 암모니아 슬립 발생구간을 찾을 수 있었으며, 엔진부하별(25, 35 및 50%)로 최적의 요소 분사량을 조절할 수 있었다. 부하를 Down-Up(25%에서 50%로 올리면서) 시보다도 Up-Down(50%에서 25%로 내리면서) 시에 NOx 저감성능이 더 좋음을 알 수 있었으며, 본 바나듐계 촉매가 사용된 SCR 시스템을 기존 선박의 디젤발전기에 설치하여 질소산화물이 80% 이상 절감됨을 확인할 수 있었다.