Literature DB >> 33905931

Real-world NOx emissions from heavy-duty diesel, natural gas, and diesel hybrid electric vehicles of different vocations on California roadways.

Cavan McCaffery1, Hanwei Zhu2, Tianbo Tang2, Chengguo Li1, Georgios Karavalakis3, Sam Cao4, Adewale Oshinuga4, Andrew Burnette5, Kent C Johnson2, Thomas D Durbin6.   

Abstract

This study assessed the real-world nitrogen oxide (NOx) emissions from 50 heavy-duty vehicles of different vocations and engine technologies using portable emissions measurement systems (PEMS). This is one of the most comprehensive in-use emissions studies conducted to date, which played a key role in the development of CARB's (California Air Recourses Board) updated EMission FACtor (EMFAC) model, especially for natural gas vehicles. In-use emissions testing was performed on school and transit buses, refuse haulers, goods movement vehicles, and delivery vehicles while were driven over their normal operating routes in the South Coast Air Basin. Engine technologies included diesel engines with and without selective catalytic reduction (SCR) systems, compressed natural gas (CNG) engines and liquified petroleum gas (LPG) engines, and SCR-equipped diesel hybrid electric vehicles. For most vehicles, the in-use NOx emissions were higher than the certification standards for the engine. Diesel vehicles generally showed higher brake-specific NOx emissions compared to the CNG vehicles. NOx emissions were strongly dependent on the SCR temperature, with SCR temperatures below 200 °C resulting in elevate brake-specific NOx. The 0.02 g/bhp-hr certified CNG vehicles showed the largest reductions in NOx emissions. The diesel hybrid electric vehicles showed important distance-specific NOx benefits compared to the conventional diesel vehicles, but higher emissions compared to the CNG and LPG vehicles. Overall, average NOx reductions were 75%, 94%, 65%, 79%, respectively, for the 0.2 CNG, 0.02 CNG, diesel hybrid electric, and LPG vehicles compared to diesel vehicles, due in part to some diesel vehicles with particularly high emissions, indicating that the widespread implementation of advanced technology and alternative fuel vehicles could provide important NOx reductions and a path for meeting air quality targets in California and elsewhere.
Copyright © 2021 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Diesel hybrid electric trucks; NOx emissions; Natural gas vehicles; PEMS; Selective catalytic reduction

Year:  2021        PMID: 33905931     DOI: 10.1016/j.scitotenv.2021.147224

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  2 in total

1.  Effect of Exhaust Gas Recirculation Combined with Selective Catalytic Reduction on NO x Emission Characteristics and Their Matching Optimization of a Heavy-Duty Diesel Engine.

Authors:  Diming Lou; Lulu Kang; Yunhua Zhang; Liang Fang; Chagen Luo
Journal:  ACS Omega       Date:  2022-06-22

2.  Features Importance Analysis of Diesel Vehicles' NOx and CO2 Emission Predictions in Real Road Driving Based on Gradient Boosting Regression Model.

Authors:  Hung-Ta Wen; Jau-Huai Lu; Deng-Siang Jhang
Journal:  Int J Environ Res Public Health       Date:  2021-12-10       Impact factor: 3.390

  2 in total

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