Development of GPF Using Micro-CT Measurement and Numerical Analytical Technique
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Chemistry,Catalysis
Link
http://link.springer.com/content/pdf/10.1007/s11244-019-01136-7.pdf
Reference11 articles.
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2. Inoda S, Nomura Y, Ori H, Yabuzaki Y (2017) Development of new coating technology optimized for each function of coated GPF. SAE technical paper, 2017-01-0929
3. Ito Y, Shimoda T, Aoki T, Shibagaki Y et al (2013) Advanced ceramic wall flow filter for reduction of particulate number emission of direct injection gasoline engines. SAE technical paper, 2013-01-0836
4. Guan B, Zhan R, Lin H, Huang Z (2015) Review of the state-of-the-art of exhaust particulate filter technology in internal combustion engines. J Environ Manage 154:225–258
5. Václavik M, Plachá M, Koči P, Svoboda M, Hotchkiss T, Novák V, Thompsett D (2017) Structure characterization of catalytic particulate filters for automotive exhaust gas aftertreatment. Mater Charact 134:311–318
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1. Study on temperature characteristics of gasoline engine particulate filters during fuel cut-off;Korean Journal of Chemical Engineering;2022-09-14
2. Effect of Rare-Earth (La, Nd, Pr, Y) Doping on the Properties of X-Y-Ce-Zr-O and X-Y-Z-Ce-Zr-O Nanodispersions for GPF Applications;Emission Control Science and Technology;2022-04-20
3. μ-CT Investigation into the Impact of a Fuel-Borne Catalyst Additive on the Filtration Efficiency and Backpressure of Gasoline Particulate Filters;SAE International Journal of Fuels and Lubricants;2022-01-18
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