The Emission Characteristics of a Diesel Engine During Start-Up Process at Different Altitudes

Author:

Fang LiangORCID,Lou Diming,Hu Zhiyuan,Tan Piqiang

Abstract

With increasingly stringent emission regulations, the cold start emissions have become more important than ever. Using a low compression ratio is a feasible way to improve a heavy-duty engine’s efficiency and emissions. However, cold start performance restricts the development of this technology, especially at high altitudes. In response, we conducted a study of the emissions of a heavy-duty low-compression-ratio diesel engine during start-up process at different altitudes. A plateau simulation system controlled the inlet and exhaust pressure to create altitude environments of 0 m, 1000 m, 2000 m, 3000 m, 3750 m and 4500 m. The gas, particulate and volatile organic compound (VOC) emissions were analyzed with speed and cycle during the start-up process. The results indicated that cold start performance and combustion characteristics became worse as altitudes increased. The gas and particulate emissions of carbon monoxide (CO), carbon dioxide (CO2), total hydrocarbon (THC) and nitrous oxide (NOX) almost all increased as the engine speed and altitude increased, and was much higher than in idle conditions. The PN and PM emissions in each particle diameter also increased as the altitude increased, which was the same as the nucleation mode and the accumulation mode particles. VOC emissions were also measured, which increased during the start-up process as altitudes increased.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference29 articles.

1. The problem of cold starts: A closer look at mobile source emissions levels;Kockelman;Transp. Res. Part D Transp. Environ.,2016

2. A technical summary of Euro 6/VI vehicle emission standards;Williams;Int. Counc. Clean Transp. (ICCT),2016

3. Meeting the EURO VI NOx Emission Legislation using a EURO IV Base Engine and a SCR/ASC/DOC/DPF Configuration in the World Harmonized Transient Cycle

4. Cold Start on Diesel Engine: Is Low Compression Ratio Compatible with Cold Start Requirements?

5. Effects of DOC+CDPF on particulate emission from a diesel engine with biodiesel fuel;Tan;China Environ. Sci.,2015

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