Title of article
A numerical investigation into the anomalous slight NOx increase when burning biodiesel; A new (old) theory
Author/Authors
Ban-Weiss، نويسنده , , George A. and Chen، نويسنده , , J.Y. and Buchholz، نويسنده , , Bruce A. and Dibble، نويسنده , , Robert W.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
9
From page
659
To page
667
Abstract
Biodiesel is a notable alternative to petroleum derived diesel fuel because it comes from natural domestic sources and thus reduces dependence on diminishing petroleum fuel from foreign sources, it likely lowers lifecycle greenhouse gas emissions, and it lowers an engineʹs emission of most pollutants as compared to petroleum derived diesel. However, the use of biodiesel often slightly increases a diesel engineʹs emission of smog forming nitrogen oxides (NOx) relative to petroleum diesel. In this paper, previously proposed theories for this slight NOx increase are reviewed, including theories based on biodieselʹs cetane number, which leads to differing amounts of charge preheating, and theories based on the fuelʹs bulk modulus, which affects injection timing. This paper proposes an additional theory for the slight NOx increase of biodiesel. Biodiesel typically contains more double bonded molecules than petroleum derived diesel. These double bonded molecules have a slightly higher adiabatic flame temperature, which leads to the increase in NOx production for biodiesel. Our theory was verified using numerical simulations to show a NOx increase, due to the double bonded molecules, that is consistent with observation. Further, the details of these numerical simulations show that NOx is predominantly due to the Zeldovich mechanism.
Keywords
Emissions , increase , Double bond , biodiesel , NOx , diesel
Journal title
Fuel Processing Technology
Serial Year
2007
Journal title
Fuel Processing Technology
Record number
1507471
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