4.8 Article

Effect of DMDF on the PM emission from a turbo-charged diesel engine with DDOC and DPOC

Journal

APPLIED ENERGY
Volume 148, Issue -, Pages 449-455

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.apenergy.2015.03.030

Keywords

Diesel engine; DMDF; Smoke emissions; Particulate matter; DDOC; DPOC

Funding

  1. Natural Science Foundation Committee of China [51336005]
  2. Ministry of Education of China [20120032130009]

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This study is aimed to investigate the combined application of diesel methanol dual fuel (DMDF) and a simple after-treatment for reducing particulate matter (PM) emissions of a diesel engine. The effects of DMDF, a double diesel oxidation catalyst (DDOC) and a DOC closely coupled with a particulate oxidation catalyst (POC) in series (DPOC) on smoke emissions, particulate mass and number concentrations and size distributions were analyzed. Tests were conducted on a 4-cylinder turbo-charged, inter-cooling, mechanical in-line fuel injection pump diesel engine modified to DMDF combustion mode. Testing results showed that, before the DDOC and the DPOC, the dry-soot and smoke opacity efficiency decreases with the increase of substitution ratio of methanol at high engine load. There is a significant decrease of smoke opacity in DMDF mode after the DDOC, while the DPOC has a significant effect on the reduction in dry-soot emission. There is an average reduction in dry-soot by 25% in pure diesel fuel mode after the DDOC, while in DMDF mode, the average reduction is more than 60%, and the maximum reduction in dry-soot is up to 96%. There is a slightly reduction in PM emissions at low substitution ratio of methanol, while the high substitution ratio of methanol leads to more reduction in PM emissions. After the DDOC and the DPOC, particulate number and mass concentrations, especially nuclear particles, can be significantly reduced when the exhaust gas temperature is enough high. (C) 2015 Elsevier Ltd. All rights reserved.

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