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Journal Article

Light-off Investigation of Oxymethylene Ether (OME) Considering the Presence of the Exhaust Components Heptane, Carbon, and Nitrogen Monoxide

Florian Rümmele; Alexander Susdorf; Syed Muhammad Salman Haider; Robert Szolak
Emission Control Science and Technology · Vol. 7, Issue 4 · pp. 348-358 · 2021

Abstract

Synthetic fuels and fuel blends like OMEs can contribute to tank-to-wheel CO 2 emission savings. At the same time, it is known that these fuels have a lower exhaust temperature compared to conventional diesel. This effect has major impact on the exhaust after-treatment system, particularly in cold start conditions. This paper investigates the light-off behavior of exhaust gases containing OMEs by temperature-programmed oxidation experiments using a state-of-the-art oxidation catalyst. The main side product of catalytic oxidation of OMEs between 100 °C and the oxidation temperature T 50 , which was around 160 °C, was shown to be formaldehyde. While alkane oxidation, in this case heptane, was little influenced by OME oxidation, the oxidation temperature T 50 of CO increases by more than 10 °C by OME addition. Nitrogen monoxide impeded the oxidation of OME in a similar way to the other components investigated. Due to the amount of FA produced and its toxicity, it could be concluded that it is necessary to heat up exhaust after-treatment systems of OME diesel engines even faster than conventional diesel exhaust after-treatment systems. The relatively high reactivity of OME on oxidation catalyst can be used by active thermal management approaches.

Bibliographic Information

JournalEmission Control Science and Technology
PublisherSpringer
Publication Date2021-12-01
Publication Year2021
Volume7
Issue4
Pages348-358
Document TypeJournal Article
eISSN2199-3637
DOI10.1007/s40825-021-00202-5

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NARA Access Coverage2015-01-01~Current
Journal Homepagehttps://www.springer.com/journal/40825
Publisher PageOpen Publisher Page
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