Grantee Research Project Results
Publications Details for Grant Number R828176
Predicting Day and Nighttime Aerosol Yields from Biogenic Hydrocarbons with a GasBParticle Phase Kinetic Model
RFA:
Exploratory Research - Engineering, Chemistry, and Physics) (1999)
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Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
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Journal Article | Gas-particle partitioning of semi-volatile organics on organic aerosols using a predictive activity coefficient model: analysis of the effects of parameter choices on model performance. | None | Chandramouli B, Jang M, Kamens RM | Chandramouli B, Jang M, Kamens RM. Gas-particle partitioning of semi-volatile organics on organic aerosols using a predictive activity coefficient model:analysis of the effects of parameter choices on model performance. Atmospheric Environment 2003;37(6):853-864. |
R826771 (2000) R828176 (Final) |
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Journal Article | Gas-particle partitioning of semivolatile organic compounds (SOCs) on mixtures of aerosols in a smog chamber. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Chandramouli B, Jang M, Kamens RM | Chandramouli B, Jang M, Kamens RM. Gas-particle partitioning of semivolatile organic compounds (SOCs) on mixtures of aerosols in a smog chamber. Environmental Science & Technology 2003;37(18):4113-4121. |
R826771 (Final) R828176 (Final) |
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Journal Article | Continuous real-time analysis of products from the reaction of some monoterpenes with ozone using atmospheric sampling glow discharge ionization coupled to a quadrupole ion trap mass spectrometer. | ANALYTICAL CHEMISTRY | Dalton CN, Jaoui M, Kamens RM, Glish GL | Dalton CN, Jaoui M, Kamens RM, Glish GL. Continuous real-time analysis of products from the reaction of some monoterpenes with ozone using atmospheric sampling glow discharge ionization coupled to a quadrupole ion trap mass spectrometer. Analytical Chemistry 2005;77(10):3156-3163. |
R826771 (Final) R828176 (2002) R828176 (Final) |
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Journal Article | Particle growth by acid-catalyzed heterogeneous reactions of organic carbonyls on preexisting aerosols. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Jang M, Carroll B, Chandramouli B, Kamens RM | Jang M, Carroll B, Chandramouli B, Kamens RM. Particle growth by acid-catalyzed heterogeneous reactions of organic carbonyls on preexisting aerosols. Environmental Science & Technology 2003;37(17):3828-3837. |
R828176 (Final) |
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Journal Article | Atmospheric secondary aerosol formation by heterogeneous reactions of aldehydes in the presence of a sulfuric acid aerosol catalyst. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Jang M, Kamens RM | Jang M, Kamens RM. Atmospheric secondary aerosol formation by heterogeneous reactions of aldehydes in the presence of a sulfuric acid aerosol catalyst. Environmental Science & Technology 2001;35(24):4758-4766. |
R828176 (2002) R828176 (Final) |
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Journal Article | Heterogeneous atmospheric aerosol production by acid-catalyzed particle-phase reactions. | SCIENCE | Jang M, Czoschke NM, Lee S, Kamens RM | Jang M, Czoschke NM, Lee S, Kamens RM. Heterogeneous atmospheric aerosol production by acid-catalyzed particle-phase reactions. Science 2002;298(5594):814-817. |
R828176 (Final) |
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Journal Article | Organic aerosol growth by acid-catalyzed heterogeneous reactions of octanal in a flow reactor. | ATMOSPHERIC ENVIRONMENT | Jang M, Lee S, Kamens RM | Jang M, Lee S, Kamens RM. Organic aerosol growth by acid-catalyzed heterogeneous reactions of octanal in a flow reactor. Atmospheric Environment 2003;37(15):2125-2138. |
R828176 (Final) |
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Journal Article | Atmospheric organic aerosol production by heterogeneous acid-catalyzed reactions. | CHEMPHYSCHEM | Jang M, Czoschke NM, Northcross AL | Jang M, Czoschke NM, Northcross AL. Atmospheric organic aerosol production by heterogeneous acid-catalyzed reactions. ChemPhysChem 2004;5(11):1647-1661. |
R828176 (Final) |
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Journal Article | Gas phase photolysis of pinonaldehyde in the presence of sunlight. | ATMOSPHERIC ENVIRONMENT | Jaoui M, Kamens RM | Jaoui M, Kamens RM. Gas phase photolysis of pinonaldehyde in the presence of sunlight. Atmospheric Environment 2003;37(13):1835-1851. |
R826771 (1999) R826771 (Final) R828176 (Final) |
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Journal Article | Gas and particle products distribution from the reaction of β-caryophyllene with ozone. | JOURNAL OF ATMOSPHERIC CHEMISTRY | Jaoui M, Leungsakul S, Kamens RM | Jaoui M, Leungsakul S, Kamens RM. Gas and particle products distribution from the reaction of β-caryophyllene with ozone. Journal of Atmospheric Chemistry 2003;45(3):261-287. |
R828176 (2002) R828176 (Final) |
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Journal Article | Mass balance of gaseous and particulate products from β-pinene/O3/air in the absence of light and β-pinene/NOx/air in the presence of natural sunlight. | JOURNAL OF ATMOSPHERIC CHEMISTRY | Jaoui M, Kamens RM | Jaoui M, Kamens RM. Mass balance of gaseous and particulate products from β-pinene/O3/air in the absence of light and β-pinene/NOx/air in the presence of natural sunlight. Journal of Atmospheric Chemistry 2003;45(2):101-141. |
R828176 (Final) |
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Journal Article | Gaseous and particulate oxidation products analysis of a mixture of α-pinene + β-pinene/O3/air in the absence of light and α-pinene + β-pinene/NOx/air in the presence of natural sunlight. | JOURNAL OF ATMOSPHERIC CHEMISTRY | Jaoui M, Kamens RM | Jaoui M, Kamens RM. Gaseous and particulate oxidation products analysis of a mixture of α-pinene + beta-pinene/O3/air in the absence of light and α-pinene + β-pinene/NOx/air in the presence of natural sunlight. Journal of Atmospheric Chemistry 2003;44(3):259-297. |
R828176 (Final) |
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Journal Article | Gas and particulate products distribution from the photooxidation of α-humulene in the presence of NOx, natural atmospheric air and sunlight. | JOURNAL OF ATMOSPHERIC CHEMISTRY | Jaoui M, Kamens RM | Jaoui M, Kamens RM. Gas and particulate products distribution from the photooxidation of α-humulene in the presence of NOx, natural atmospheric air and sunlight. Journal of Atmospheric Chemistry 2003;46(1):29-54. |
R828176 (2002) R828176 (Final) |
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Journal Article | Reaction of α-cedrene with ozone: mechanism, gas and particulate products distribution. | ATMOSPHERIC ENVIRONMENT | Jaoui M, Sexton KG, Kamens RM | Jaoui M, Sexton KG, Kamens RM. Reaction of α-cedrene with ozone: mechanism, gas and particulate products distribution. Atmospheric Environment 2004;38(17):2709-2725. |
R826771 (Final) R828176 (Final) |
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Journal Article | Modeling aerosol formation from α-pinene + NOx in the presence of natural sunlight using gas-phase kinetics and gas-particle partitioning theory. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Kamens RM, Jaoui M | Kamens RM, Jaoui M. Modeling aerosol formation from α-pinene + NOx in the presence of natural sunlight using gas-phase kinetics and gas-particle partitioning theory. Environmental Science & Technology 2001;35(7):1394-1405. |
R826771 (2000) R826771 (Final) R828176 (2002) R828176 (Final) |
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Journal Article | Kinetic mechanism for predicting secondary organic aerosol formation from the reaction of d-limonene with ozone. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Leungsakul S, Jaoui M, Kamens RM | Leungsakul S, Jaoui M, Kamens RM. Kinetic mechanism for predicting secondary organic aerosol formation from the reaction of d-limonene with ozone. Environmental Science & Technology 2005;39(24):9583-9594. |
R828176 (Final) R831084 (2007) |
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Journal Article | A kinetic mechanism for predicting secondary aerosol formation from the reactions of d-limonene in the presence of oxides of nitrogen and natural sunlight. | ATMOSPHERIC ENVIRONMENT | Leungsakul S, Jeffries HE, Kamens RM | Leungsakul S, Jeffries HE, Kamens RM. A kinetic mechanism for predicting secondary aerosol formation from the reactions of d-limonene in the presence of oxides of nitrogen and natural sunlight. Atmospheric Environment 2005;39(37):7063-7082. |
R828176 (Final) R831084 (2005) R831084 (2006) R831084 (2007) R831084 (Final) |
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.