Matches in SemOpenAlex for { <https://semopenalex.org/work/W2093720968> ?p ?o ?g. }
- W2093720968 endingPage "140206134439008" @default.
- W2093720968 startingPage "140206134439008" @default.
- W2093720968 abstract "Sulfur driven diesel exhaust nucleation particle formation processes were studied in an aerosol laboratory, on engine dynamometers, and on the road. All test engines were equipped with a combination of a diesel oxidation catalyst (DOC) and a partial diesel particulate filter (pDPF). At steady operating conditions, the formation of semivolatile nucleation particles directly depended on SO2 conversion in the catalyst. The nucleation particle emission was most significant after a rapid increase in engine load and exhaust gas temperature. Results indicate that the nucleation particle formation at transient driving conditions does not require compounds such as hydrocarbons or sulfated hydrocarbons, however, it cannot be explained only by the nucleation of sulfuric acid. A real-world exhaust study with a heavy duty diesel truck showed that the nucleation particle formation occurs even with ultralow sulfur diesel fuel, even at downhill driving conditions, and that nucleation particles can contribute 60% of total particle number emissions. In general, due to sulfur storage and release within the exhaust aftertreatment systems and transients in driving, emissions of nucleation particles can even be the dominant part of modern diesel vehicle exhaust particulate number emissions." @default.
- W2093720968 created "2016-06-24" @default.
- W2093720968 creator A5028074329 @default.
- W2093720968 creator A5032035270 @default.
- W2093720968 creator A5043841592 @default.
- W2093720968 creator A5047700738 @default.
- W2093720968 creator A5053211471 @default.
- W2093720968 creator A5060468365 @default.
- W2093720968 creator A5072133779 @default.
- W2093720968 creator A5073123356 @default.
- W2093720968 creator A5087614842 @default.
- W2093720968 date "2014-02-06" @default.
- W2093720968 modified "2023-10-05" @default.
- W2093720968 title "Sulfur Driven Nucleation Mode Formation in Diesel Exhaust under Transient Driving Conditions" @default.
- W2093720968 cites W1486086861 @default.
- W2093720968 cites W1509689223 @default.
- W2093720968 cites W1527522905 @default.
- W2093720968 cites W1908548661 @default.
- W2093720968 cites W1965230672 @default.
- W2093720968 cites W1972620685 @default.
- W2093720968 cites W2002006205 @default.
- W2093720968 cites W2002743879 @default.
- W2093720968 cites W2003730572 @default.
- W2093720968 cites W2010349666 @default.
- W2093720968 cites W2021598671 @default.
- W2093720968 cites W2025116732 @default.
- W2093720968 cites W2031276789 @default.
- W2093720968 cites W2032000003 @default.
- W2093720968 cites W2040327890 @default.
- W2093720968 cites W2046466130 @default.
- W2093720968 cites W2056561352 @default.
- W2093720968 cites W2063271742 @default.
- W2093720968 cites W2068165404 @default.
- W2093720968 cites W2073330650 @default.
- W2093720968 cites W2080531238 @default.
- W2093720968 cites W2086569693 @default.
- W2093720968 cites W2086917178 @default.
- W2093720968 cites W2086955273 @default.
- W2093720968 cites W2091342080 @default.
- W2093720968 cites W2091977576 @default.
- W2093720968 cites W2094349762 @default.
- W2093720968 cites W2096448872 @default.
- W2093720968 cites W2099545695 @default.
- W2093720968 cites W2122639687 @default.
- W2093720968 cites W2166852852 @default.
- W2093720968 cites W2260734463 @default.
- W2093720968 cites W2285894894 @default.
- W2093720968 cites W2318698569 @default.
- W2093720968 cites W2325221115 @default.
- W2093720968 cites W2329567101 @default.
- W2093720968 doi "https://doi.org/10.1021/es405009g" @default.
- W2093720968 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24471707" @default.
- W2093720968 hasPublicationYear "2014" @default.
- W2093720968 type Work @default.
- W2093720968 sameAs 2093720968 @default.
- W2093720968 citedByCount "13" @default.
- W2093720968 countsByYear W20937209682015 @default.
- W2093720968 countsByYear W20937209682016 @default.
- W2093720968 countsByYear W20937209682017 @default.
- W2093720968 countsByYear W20937209682019 @default.
- W2093720968 countsByYear W20937209682020 @default.
- W2093720968 countsByYear W20937209682022 @default.
- W2093720968 countsByYear W20937209682023 @default.
- W2093720968 crossrefType "journal-article" @default.
- W2093720968 hasAuthorship W2093720968A5028074329 @default.
- W2093720968 hasAuthorship W2093720968A5032035270 @default.
- W2093720968 hasAuthorship W2093720968A5043841592 @default.
- W2093720968 hasAuthorship W2093720968A5047700738 @default.
- W2093720968 hasAuthorship W2093720968A5053211471 @default.
- W2093720968 hasAuthorship W2093720968A5060468365 @default.
- W2093720968 hasAuthorship W2093720968A5072133779 @default.
- W2093720968 hasAuthorship W2093720968A5073123356 @default.
- W2093720968 hasAuthorship W2093720968A5087614842 @default.
- W2093720968 hasConcept C103206924 @default.
- W2093720968 hasConcept C111368507 @default.
- W2093720968 hasConcept C121332964 @default.
- W2093720968 hasConcept C127313418 @default.
- W2093720968 hasConcept C127413603 @default.
- W2093720968 hasConcept C129871844 @default.
- W2093720968 hasConcept C138171918 @default.
- W2093720968 hasConcept C168255717 @default.
- W2093720968 hasConcept C171146098 @default.
- W2093720968 hasConcept C178790620 @default.
- W2093720968 hasConcept C183762115 @default.
- W2093720968 hasConcept C185592680 @default.
- W2093720968 hasConcept C20556612 @default.
- W2093720968 hasConcept C24245907 @default.
- W2093720968 hasConcept C2778517922 @default.
- W2093720968 hasConcept C2779139147 @default.
- W2093720968 hasConcept C2780804531 @default.
- W2093720968 hasConcept C3432839 @default.
- W2093720968 hasConcept C42360764 @default.
- W2093720968 hasConcept C518881349 @default.
- W2093720968 hasConcept C548081761 @default.
- W2093720968 hasConcept C61048295 @default.
- W2093720968 hasConcept C74412414 @default.
- W2093720968 hasConcept C97355855 @default.
- W2093720968 hasConceptScore W2093720968C103206924 @default.