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IMPROVEMENT OF NOX REDUCTION RATE OF UREA SCR SYSTEM APPLIED FOR AN NON-ROAD DIESEL ENGINE
Joonsoo Han, Taemin Kim, Haksup Jung, Sukang Pyo, Gyubaek Cho, Youngtaig Oh, Hongsuk Kim
International Journal of Automotive Technology. 2019;20(6):1153-1160.     DOI: https://doi.org/10.1007/s12239-019-0108-6

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Improvement of NOX Reduction Rate of Urea SCR System Applied for an Non-Road Diesel Engine
International Journal of Automotive Technology. 2019;20(6):1153-1160   Crossref logo
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Numerical Simulation to Reduce NOx of Diesel Engine Urea-SCR System
The Open Mechanical Engineering Journal. 2014;8(1):643-647   Crossref logo
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Cu/Zeolite SCR Catalysts for Automotive Diesel NOx Emission Control
Fundamental and Applied Catalysis. 2014;123-147   Crossref logo
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An Experimental Study for NOx - Emission Reduction with Urea-SCR Technology in Vehicular Diesel Engines
Applied Mechanics and Materials. 2011;71-78:2089-2093   Crossref logo
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Simulation and Optimization of Urea-SCR System in Diesel Engine
Applied Mechanics and Materials. 2013;316-317:1156-1161   Crossref logo
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SCR Technology for Off-highway (Large Diesel Engine) Applications
Fundamental and Applied Catalysis. 2014;33-61   Crossref logo
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Diesel Engine SCR Systems: Modeling, Measurements, and Control
Fundamental and Applied Catalysis. 2014;425-451   Crossref logo
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Low-Temperature Selective Catalytic Reduction (SCR) of NOx with NH3 Over Zeolites and Metal Oxide-Based Catalysts and Recent Developments of H2-SCR
Fundamental and Applied Catalysis. 2014;149-177   Crossref logo
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Design and Experimental Study on the Urea-SCR Converter Exhaust System of the Marine Diesel Engine
Applied Mechanics and Materials. 2013;291-294:1889-1894   Crossref logo
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Fe-Zeolite Functionality, Durability, and Deactivation Mechanisms in the Selective Catalytic Reduction (SCR) of NOx with Ammonia
Fundamental and Applied Catalysis. 2014;97-121   Crossref logo
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