4.7 Article

Characteristics of NOx emission of light-duty diesel vehicle with LNT and SCR system by season and RDE phase

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 782, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.scitotenv.2021.146750

关键词

Real driving emission; NOx emissions; Lean NOx trap; Selective catalytic reduction; Conversion efficiency

资金

  1. Seoul National University Institute of Advanced Machines and Design (SNU IAMD)

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This study conducted RDE tests by season to analyze the on-road NOx emission characteristics of diesel vehicles equipped with LNT and SCR devices, showing significant seasonal differences influenced by environmental and combustion conditions.
As the regulations on vehicle emissions have become more stringent internationally and real-driving emissions (RDE) have been established, the on-road characteristics of emissions have gained importance in vehicle research and development. The results of the fuel consumption levels and emissions from on-road tests are affected by many factors, such as driving conditions, routes and environmental conditions. Therefore, more research and analysis are needed for the effects of environmental factors and driving conditions according to RDE phase on the NOx emissions. In this study, RDE tests were conducted by season to analyze the on-road NOx emission char-acteristics of lean NOx trap (LNT)-and selective catalytic reduction (SCR)-equipped diesel vehicles correspond-ing to the Euro 6b regulation prior to the application of the RDE regulation. The purpose of this study is to analyze the effects of seasonal factors and phases of the RDE routes on the NOx emission and NOx conversion efficiency of catalyst. In spring/autumn and summer, the engine-out and tail-pipe NOx emissions were higher 1.3-5.9 times for vehicle A and 1.3-28.4 times for vehicle B in the urban phase than in other phases. In the urban phase, the engine bay temperature was probable to rise owing to frequent stops and low-speed driving, leading to a high intake air temperature, which causes excessive NOx emission, particularly in summer. The average air filter tem-perature in urban phase was 11-15 degrees C higher than the environment temperature for vehicle A. The NOx conver-sion efficiency of the LNT was highest at 54.1% on motorway and the efficiency was dependent on the phase of the test route. The NOx conversion efficiency of the SCR, which is dependent on the catalyst temperature, was highest at 98.7% in spring motorway and the efficiency was affected by the combined factors of season and phases. (c) 2021 Elsevier B.V. All rights reserved.

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