Matches in SemOpenAlex for { <https://semopenalex.org/work/W2023697913> ?p ?o ?g. }
- W2023697913 endingPage "2416" @default.
- W2023697913 startingPage "2403" @default.
- W2023697913 abstract "The size distribution of atmospheric secondary organic aerosol is simulated by a Lagrangian trajectory model that includes descriptions of gas-phase chemistry, inorganic and organic aerosol thermodynamics, condensation/evaporation of aerosol species, dry deposition and emission of primary gaseous and particulate pollutants. The model is applied to simulate the dynamics of aerosol size and composition along trajectories on 27–28 August 1987 during the Southern California Air Quality Study (SCAQS). The secondary organic aerosol material is predicted to condense almost exclusively on the submicron aerosol in agreement with the available measurements, and its size distribution for Claremont, CA, is predicted to be unimodal with a mass mean diameter of roughly 0.2 μm. The distributions of the various secondary organic aerosol species are predicted to be essentially the same. The secondary organic aerosol (SOA) size distribution is found to depend crucially on the mass and size distribution of primary aerosol on which the secondary species condense and on the surface accomodation coefficient of the condensable species. The SOA size distribution is predicted not to be significantly affected by diffusional dry deposition, sources and sinks of ammonia, emissions of VOC, and secondary aerosol yields from precursor hydrocarbons. A bimodal secondary organic aerosol size distribution is predicted only if the submicron primary dust particles reside mainly in the 0.5–1.0 μm diameter size range, or if the condensable species have a strong preference (an accomodation coefficient difference of two orders of magnitude) for the 0.5–1.0 μm diameter particles. The secondary organic aerosol distribution in Claremont is predicted to shift slightly towards the larger aerosol particles during the nighttime hours with it mass mean diameter peaking around midnight at 0.21 μm and having its minimum in early afternoon at 0.18 μm. In coastal locations of the Los Angeles basin, secondary organic material exists in relatively smaller particles (mass mean diameter 0.16 μm) but in far inland locations it condenses on the available larger particles (mass mean diameter 0.23 μm)." @default.
- W2023697913 created "2016-06-24" @default.
- W2023697913 creator A5001370428 @default.
- W2023697913 creator A5024811084 @default.
- W2023697913 creator A5084603540 @default.
- W2023697913 date "1993-10-01" @default.
- W2023697913 modified "2023-09-29" @default.
- W2023697913 title "Secondary organic aerosol formation and transport — II. Predicting the ambient secondary organic aerosol size distribution" @default.
- W2023697913 cites W1569981483 @default.
- W2023697913 cites W1969775679 @default.
- W2023697913 cites W1971042746 @default.
- W2023697913 cites W1988485184 @default.
- W2023697913 cites W1990193387 @default.
- W2023697913 cites W1995120256 @default.
- W2023697913 cites W2001028746 @default.
- W2023697913 cites W2003493363 @default.
- W2023697913 cites W2004336358 @default.
- W2023697913 cites W2004531022 @default.
- W2023697913 cites W2010668724 @default.
- W2023697913 cites W2011025705 @default.
- W2023697913 cites W2011050374 @default.
- W2023697913 cites W2015664409 @default.
- W2023697913 cites W2019773833 @default.
- W2023697913 cites W2020610099 @default.
- W2023697913 cites W2022045129 @default.
- W2023697913 cites W2029931639 @default.
- W2023697913 cites W2031408186 @default.
- W2023697913 cites W2033968515 @default.
- W2023697913 cites W2035282815 @default.
- W2023697913 cites W2038555113 @default.
- W2023697913 cites W2041412046 @default.
- W2023697913 cites W2047200826 @default.
- W2023697913 cites W2048393367 @default.
- W2023697913 cites W2053308491 @default.
- W2023697913 cites W2054714137 @default.
- W2023697913 cites W2057232037 @default.
- W2023697913 cites W2063639612 @default.
- W2023697913 cites W2069001610 @default.
- W2023697913 cites W2073482054 @default.
- W2023697913 cites W2079606358 @default.
- W2023697913 cites W2088774479 @default.
- W2023697913 cites W2094938847 @default.
- W2023697913 cites W4233126248 @default.
- W2023697913 doi "https://doi.org/10.1016/0960-1686(93)90408-q" @default.
- W2023697913 hasPublicationYear "1993" @default.
- W2023697913 type Work @default.
- W2023697913 sameAs 2023697913 @default.
- W2023697913 citedByCount "147" @default.
- W2023697913 countsByYear W20236979132012 @default.
- W2023697913 countsByYear W20236979132013 @default.
- W2023697913 countsByYear W20236979132014 @default.
- W2023697913 countsByYear W20236979132015 @default.
- W2023697913 countsByYear W20236979132016 @default.
- W2023697913 countsByYear W20236979132017 @default.
- W2023697913 countsByYear W20236979132018 @default.
- W2023697913 countsByYear W20236979132019 @default.
- W2023697913 countsByYear W20236979132020 @default.
- W2023697913 countsByYear W20236979132021 @default.
- W2023697913 countsByYear W20236979132022 @default.
- W2023697913 countsByYear W20236979132023 @default.
- W2023697913 crossrefType "journal-article" @default.
- W2023697913 hasAuthorship W2023697913A5001370428 @default.
- W2023697913 hasAuthorship W2023697913A5024811084 @default.
- W2023697913 hasAuthorship W2023697913A5084603540 @default.
- W2023697913 hasConcept C107872376 @default.
- W2023697913 hasConcept C121332964 @default.
- W2023697913 hasConcept C151730666 @default.
- W2023697913 hasConcept C153294291 @default.
- W2023697913 hasConcept C178790620 @default.
- W2023697913 hasConcept C185592680 @default.
- W2023697913 hasConcept C2779345167 @default.
- W2023697913 hasConcept C2816523 @default.
- W2023697913 hasConcept C61441594 @default.
- W2023697913 hasConcept C64297162 @default.
- W2023697913 hasConcept C86803240 @default.
- W2023697913 hasConceptScore W2023697913C107872376 @default.
- W2023697913 hasConceptScore W2023697913C121332964 @default.
- W2023697913 hasConceptScore W2023697913C151730666 @default.
- W2023697913 hasConceptScore W2023697913C153294291 @default.
- W2023697913 hasConceptScore W2023697913C178790620 @default.
- W2023697913 hasConceptScore W2023697913C185592680 @default.
- W2023697913 hasConceptScore W2023697913C2779345167 @default.
- W2023697913 hasConceptScore W2023697913C2816523 @default.
- W2023697913 hasConceptScore W2023697913C61441594 @default.
- W2023697913 hasConceptScore W2023697913C64297162 @default.
- W2023697913 hasConceptScore W2023697913C86803240 @default.
- W2023697913 hasIssue "15" @default.
- W2023697913 hasLocation W20236979131 @default.
- W2023697913 hasOpenAccess W2023697913 @default.
- W2023697913 hasPrimaryLocation W20236979131 @default.
- W2023697913 hasRelatedWork W1989116413 @default.
- W2023697913 hasRelatedWork W2054975931 @default.
- W2023697913 hasRelatedWork W2071381270 @default.
- W2023697913 hasRelatedWork W2072961217 @default.
- W2023697913 hasRelatedWork W2080087704 @default.
- W2023697913 hasRelatedWork W2084800353 @default.
- W2023697913 hasRelatedWork W2940857400 @default.
- W2023697913 hasRelatedWork W4238774760 @default.