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Combustion of Diesel Particulate Matters under Mixed Catalyst System of Fuel-Borne Catalyst and Perovskite: Influence of Composition of Perovskite (La1-x A(x)' BO3: A ' = K, Sr; 0 <= x <= 1; B = Fe, Cr, Mn) on Combustion Activity

Authors
Lee, Dae-WonSung, Ju YoungLee, Kwan-Young
Issue Date
Apr-2018
Publisher
KOREAN INSTITUTE CHEMICAL ENGINEERS
Keywords
Diesel aftertreatment; Particulate matters (PM); Perovskite; Fuel-borne catalyst (FBC); Diesel particulate filter (DPF)
Citation
KOREAN CHEMICAL ENGINEERING RESEARCH, v.56, no.2, pp.281 - 290
Indexed
SCOPUS
KCI
Journal Title
KOREAN CHEMICAL ENGINEERING RESEARCH
Volume
56
Number
2
Start Page
281
End Page
290
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/76284
DOI
10.9713/kcer.2018.56.2.281
ISSN
0304-128X
Abstract
As the internal combustion engine vehicles of high fuel efficiency and low emission are demanded, it becomes important to procure technologies for improving low-temperature performance of automotive catalyst systems. In this study, we showed that the combustion rate of diesel particulate matter is greatly enhanced at low temperature by applying fuel-borne catalyst and perovskite catalyst concurrently. It was tried to examine the correlation between elemental composition of perovskite catalyst and combustion activity of mixed catalyst system. To achieve this goal, we applied temperature-programmed oxidation technique in testing the combustion behavior of perovskite-mixed particulate matter bed which contained the element of fuel-borne catalyst or not. We tried to explain the synergetic action of two catalyst components by comparing the trends of concentrations of carbon dioxide and nitrogen oxide in temperature-programmed oxidation results.
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