Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Simulating the Formation of Secondary Organic Aerosol from the Photooxidation of Aromatic Hydrocarbons

David Johnson A C , Michael E. Jenkin A , Klaus Wirtz B and Montserrat Martin-Reviejo B
+ Author Affiliations
- Author Affiliations

A Department of Environmental Science and Technology, Imperial College London, Silwood Park, SL5 7PY, UK.

B Fundacion CEAM, EUPHORE Laboratories, 46980 Paterno, Valencia, Spain.

C Corresponding author. Email: d.johnson@imperial.ac.uk

Environmental Chemistry 2(1) 35-48 https://doi.org/10.1071/EN04079
Submitted: 7 December 2004  Accepted: 9 February 2005   Published: 21 March 2005



94 articles found in Crossref database.

Optical properties of secondary organic aerosols generated by photooxidation of aromatic hydrocarbons
Li Kun, Wang Weigang, Ge Maofa, Li Jiangjun, Wang Dong
Scientific Reports. 2014 4(1).
Chemical Composition and Reaction Mechanisms for Aged p‐Xylene Secondary Organic Aerosol in the Presence of Ammonia
Xu Jun, Huang Ming‐Qiang, Cai Shun‐You, Liao Ying‐Min, Hu Chang‐Jin, Zhao Wei‐Xiong, Gu Xue‐Jun, Zhang Wei‐Jun
Journal of the Chinese Chemical Society. 2018 65(5). p.578
Secondary organic aerosol production from modern diesel engine emissions
Samy S., Zielinska B.
Atmospheric Chemistry and Physics. 2010 10(2). p.609
Factors influencing particle number concentrations, size distributions and modal parameters at a roof-level and roadside site in Leicester, UK
Agus Emily L., Young David T., Lingard Justin J.N., Smalley Robert J., Tate James E., Goodman Paul S., Tomlin Alison S.
Science of The Total Environment. 2007 386(1-3). p.65
Low‐Molecular Weight and Oligomeric Components in Secondary Organic Aerosol from the Photooxidation of p‐Xylene
Huang Ming‐Qiang, Zhang Wei‐Jun, Hao Li‐Qing, Wang Zhen‐Ya, Zhao Wen‐Wu, Gu Xue‐Jun, Fang Li
Journal of the Chinese Chemical Society. 2008 55(2). p.456
Suppression of the Phenolic Soa Formation in the Presence of Electrolytic Inorganic Seed
Choi Jiwon, Jang Myoseon
SSRN Electronic Journal. 2022
Secondary organic aerosol formation and source apportionment in Southeast Texas
Zhang Hongliang, Ying Qi
Atmospheric Environment. 2011 45(19). p.3217
Modeling regional secondary organic aerosol using the Master Chemical Mechanism
Li Jingyi, Cleveland Meredith, Ziemba Luke D., Griffin Robert J., Barsanti Kelley C., Pankow James F., Ying Qi
Atmospheric Environment. 2015 102 p.52
Peroxy radical chemistry and OH radical production during the NO<sub>3</sub>-initiated oxidation of isoprene
Kwan A. J., Chan A. W. H., Ng N. L., Kjaergaard H. G., Seinfeld J. H., Wennberg P. O.
Atmospheric Chemistry and Physics. 2012 12(16). p.7499
Effect of NO<sub>x</sub> level on secondary organic aerosol (SOA) formation from the photooxidation of terpenes
Ng N. L., Chhabra P. S., Chan A. W. H., Surratt J. D., Kroll J. H., Kwan A. J., McCabe D. C., Wennberg P. O., Sorooshian A., Murphy S. M., Dalleska N. F., Flagan R. C., Seinfeld J. H.
Atmospheric Chemistry and Physics. 2007 7(19). p.5159
Gas‐phase oxidation of cresol isomers initiated by OH or NO3 radicals in the presence of NO2
Jørgensen Solvejg
International Journal of Chemical Kinetics. 2012 44(3). p.165
Investigative modeling of new pathways for secondary organic aerosol formation
Pun B. K., Seigneur C.
Atmospheric Chemistry and Physics. 2007 7(9). p.2199
Effect of chemical structure on secondary organic aerosol formation from C<sub>12</sub> alkanes
Yee L. D., Craven J. S., Loza C. L., Schilling K. A., Ng N. L., Canagaratna M. R., Ziemann P. J., Flagan R. C., Seinfeld J. H.
Atmospheric Chemistry and Physics. 2013 13(21). p.11121
Insight into the crucial reason causing the difference in secondary organic aerosol yields of monocyclic aromatic hydrocarbons with different methyl substituent numbers
Yu Zhangqi, Wei Zhiyang, Zhang Zhongshen, Li Zhen, Zhang Peng, Yang Bo, Shu Jinian, Wang Haijie, Yan Zitao
Science of The Total Environment. 2023 898 p.166353
Gas phase precursors to anthropogenic secondary organic aerosol: detailed observations of 1,3,5-trimethylbenzene photooxidation
Wyche K. P., Monks P. S., Ellis A. M., Cordell R. L., Parker A. E., Whyte C., Metzger A., Dommen J., Duplissy J., Prevot A. S. H., Baltensperger U., Rickard A. R., Wulfert F.
Atmospheric Chemistry and Physics. 2009 9(2). p.635
Box model studies of the secondary organic aerosol formation under different HC/NOx conditions using the subset of the Master Chemical Mechanism for α‐pinene oxidation
Xia Adam G., Michelangeli Diane V., Makar Paul A.
Journal of Geophysical Research: Atmospheres. 2008 113(D10).
Coupling of highly explicit gas and aqueous chemistry mechanisms for use in 3-D
Ginnebaugh Diana L., Jacobson Mark Z.
Atmospheric Environment. 2012 62 p.408
Secondary organic aerosol formation from α-methylstyrene atmospheric degradation: Role of NO level, relative humidity and inorganic seed aerosol
Tajuelo Mercedes, Rodríguez Ana, Baeza-Romero María Teresa, Aranda Alfonso, Díaz-de-Mera Yolanda, Rodríguez Diana
Atmospheric Research. 2019 230 p.104631
Secondary organic aerosol formation from phenolic compounds in the absence of NO<sub>x</sub>
Nakao S., Clark C., Tang P., Sato K., Cocker III D.
Atmospheric Chemistry and Physics. 2011 11(20). p.10649
Characterizing summer and winter carbonyl compounds in Beijing atmosphere
Qian Xi, Shen Hengqing, Chen Zhongming
Atmospheric Environment. 2019 214 p.116845
Secondary organic aerosol formation from <i>m</i>-xylene, toluene, and benzene
Ng N. L., Kroll J. H., Chan A. W. H., Chhabra P. S., Flagan R. C., Seinfeld J. H.
Atmospheric Chemistry and Physics. 2007 7(14). p.3909
The SOA/VOC/NO<sub>x</sub> system: an explicit model of secondary organic aerosol formation
Camredon M., Aumont B., Lee-Taylor J., Madronich S.
Atmospheric Chemistry and Physics. 2007 7(21). p.5599
Chemical characterisation of benzene oxidation products under high- and low-NO<sub><i>x</i></sub> conditions using chemical ionisation mass spectrometry
Priestley Michael, Bannan Thomas J., Le Breton Michael, Worrall Stephen D., Kang Sungah, Pullinen Iida, Schmitt Sebastian, Tillmann Ralf, Kleist Einhard, Zhao Defeng, Wildt Jürgen, Garmash Olga, Mehra Archit, Bacak Asan, Shallcross Dudley E., Kiendler-Scharr Astrid, Hallquist Åsa M., Ehn Mikael, Coe Hugh, Percival Carl J., Hallquist Mattias, Mentel Thomas F., McFiggans Gordon
Atmospheric Chemistry and Physics. 2021 21(5). p.3473
Secondary Organic Aerosol Formation from Isoprene Photooxidation
Kroll Jesse H., Ng Nga L., Murphy Shane M., Flagan Richard C., Seinfeld John H.
Environmental Science & Technology. 2006 40(6). p.1869
Organosulfate Formation in Biogenic Secondary Organic Aerosol
Surratt Jason D., Gómez-González Yadian, Chan Arthur W. H., Vermeylen Reinhilde, Shahgholi Mona, Kleindienst Tadeusz E., Edney Edward O., Offenberg John H., Lewandowski Michael, Jaoui Mohammed, Maenhaut Willy, Claeys Magda, Flagan Richard C., Seinfeld John H.
The Journal of Physical Chemistry A. 2008 112(36). p.8345
Emissions of C6–C8 aromatic compounds in the United States: Constraints from tall tower and aircraft measurements
Hu Lu, Millet Dylan B., Baasandorj Munkhbayar, Griffis Timothy J., Travis Katherine R., Tessum Christopher W., Marshall Julian D., Reinhart Wesley F., Mikoviny Tomas, Müller Markus, Wisthaler Armin, Graus Martin, Warneke Carsten, de Gouw Joost
Journal of Geophysical Research: Atmospheres. 2015 120(2). p.826
Distribution of gaseous and particulate organic composition during dark α-pinene ozonolysis
Camredon M., Hamilton J. F., Alam M. S., Wyche K. P., Carr T., White I. R., Monks P. S., Rickard A. R., Bloss W. J.
Atmospheric Chemistry and Physics. 2010 10(6). p.2893
Chamber studies of SOA formation from aromatic hydrocarbons: observation of limited glyoxal uptake
Nakao S., Liu Y., Tang P., Chen C.-L., Zhang J., Cocker III D. R.
Atmospheric Chemistry and Physics. 2012 12(9). p.3927
The effects of α-pinene versus toluene-derived secondary organic aerosol exposure on the expression of markers associated with vascular disease
Lund Amie K., Doyle-Eisele Melanie, Lin Ying-Hsuan, Arashiro Maiko, Surratt Jason D., Holmes Tom, Schilling Katherine A., Seinfeld John H., Rohr Annette C., Knipping Eladio M., McDonald Jacob D.
Inhalation Toxicology. 2013 25(6). p.309
Ambient aromatic hydrocarbon measurements at Welgegund, South Africa
Jaars K., Beukes J. P., van Zyl P. G., Venter A. D., Josipovic M., Pienaar J. J., Vakkari V., Aaltonen H., Laakso H., Kulmala M., Tiitta P., Guenther A., Hellén H., Laakso L., Hakola H.
Atmospheric Chemistry and Physics. 2014 14(13). p.7075
Predicted change in global secondary organic aerosol concentrations in response to future climate, emissions, and land use change
Heald C. L., Henze D. K., Horowitz L. W., Feddema J., Lamarque J.‐F., Guenther A., Hess P. G., Vitt F., Seinfeld J. H., Goldstein A. H., Fung I.
Journal of Geophysical Research: Atmospheres. 2008 113(D5).
Simulating secondary organic aerosol formation using the volatility basis-set approach in a chemical transport model
Lane Timothy E., Donahue Neil M., Pandis Spyros N.
Atmospheric Environment. 2008 42(32). p.7439
Applications of Theoretical Methods to Atmospheric Science (2008)
Ryzhkov A., Ariya P.A., Raofie F., Niki H., Harris G.W.
Effect of NOx on secondary organic aerosol formation from the photochemical transformation of allyl acetate
Wang Shuyan, Tsona Narcisse T., Du Lin
Atmospheric Environment. 2021 255 p.118426
Role of methyl group number on SOA formation from monocyclic aromatic hydrocarbons photooxidation under low-NO<sub><i>x</i></sub> conditions
Li L., Tang P., Nakao S., Chen C.-L., Cocker III D. R.
Atmospheric Chemistry and Physics. 2016 16(4). p.2255
Effect of Relative Humidity on Gas/Particle Partitioning and Aerosol Mass Yield in the Photooxidation ofp-Xylene
Healy Robert M., Temime Brice, Kuprovskyte Kristina, Wenger John C.
Environmental Science & Technology. 2009 43(6). p.1884
Secondary organic aerosol formation from biomass burning intermediates: phenol and methoxyphenols
Yee L. D., Kautzman K. E., Loza C. L., Schilling K. A., Coggon M. M., Chhabra P. S., Chan M. N., Chan A. W. H., Hersey S. P., Crounse J. D., Wennberg P. O., Flagan R. C., Seinfeld J. H.
Atmospheric Chemistry and Physics. 2013 13(16). p.8019
Photochemical loss with consequential underestimation in active VOCs and corresponding secondary pollutions in a petrochemical refinery, China
Zhang Lili, Xu Tong, Wu Gengchen, Zhang Chengliang, Li Yang, Wang Hao, Gong Daocheng, Li Qinqin, Wang Boguang
Science of The Total Environment. 2024 918 p.170613
A thorough theoretical mechanistic study of OH-initiated oxidative degradation mechanism for large polycyclic aromatic hydrocarbons
Xing Lili, Meng Qinghui, Zhang Lidong
Computational and Theoretical Chemistry. 2020 1175 p.112730
Effect of high concentrations of inorganic seed aerosols on secondary organic aerosol formation in the m-xylene/NOx photooxidation system
Lu Zifeng, Hao Jiming, Takekawa Hideto, Hu Lanhua, Li Junhua
Atmospheric Environment. 2009 43(4). p.897
Changes in organic aerosol composition with aging inferred from aerosol mass spectra
Ng N. L., Canagaratna M. R., Jimenez J. L., Chhabra P. S., Seinfeld J. H., Worsnop D. R.
Atmospheric Chemistry and Physics. 2011 11(13). p.6465
Photochemistry of 2-butenedial and 4-oxo-2-pentenal under atmospheric boundary layer conditions
Newland Mike J., Rea Gerard J., Thüner Lars P., Henderson Alistair P., Golding Bernard T., Rickard Andrew R., Barnes Ian, Wenger John
Physical Chemistry Chemical Physics. 2019 21(3). p.1160
Evaluation of the chemical composition of gas- and particle-phase products of aromatic oxidation
Mehra Archit, Wang Yuwei, Krechmer Jordan E., Lambe Andrew, Majluf Francesca, Morris Melissa A., Priestley Michael, Bannan Thomas J., Bryant Daniel J., Pereira Kelly L., Hamilton Jacqueline F., Rickard Andrew R., Newland Mike J., Stark Harald, Croteau Philip, Jayne John T., Worsnop Douglas R., Canagaratna Manjula R., Wang Lin, Coe Hugh
Atmospheric Chemistry and Physics. 2020 20(16). p.9783
Modeling the molecular composition of secondary organic aerosol under highly polluted conditions: A case study in the Yangtze River Delta Region in China
Huang Qi, Lu Hutao, Li Jingyi, Ying Qi, Gao Yaqin, Wang Hongli, Guo Song, Lu Keding, Qin Momei, Hu Jianlin
Science of The Total Environment. 2024 938 p.173327
Influence of updated isoprene oxidation mechanisms on the formation of intermediate and secondary products in MCM v3.3.1
Ling Zhenhao, Guan Huatian, Wang Yonghong, Yu Xiaoyu, Sun Jiayin, Tham Yee Jun, Wang Xuemei, Wang Zhe, Guo Hai
Atmospheric Environment. 2024 325 p.120466
Regional variation of organic functional groups in aerosol particles on four U.S. east coast platforms during the International Consortium for Atmospheric Research on Transport and Transformation 2004 campaign
Gilardoni S., Russell L. M., Sorooshian A., Flagan R. C., Seinfeld J. H., Bates T. S., Quinn P. K., Allan J. D., Williams B., Goldstein A. H., Onasch T. B., Worsnop D. R.
Journal of Geophysical Research: Atmospheres. 2007 112(D10).
Sensitivities of the absorptive partitioning model of secondary organic aerosol formation to the inclusion of water
Barley M., Topping D. O., Jenkin M. E., McFiggans G.
Atmospheric Chemistry and Physics. 2009 9(9). p.2919
Secondary Organic Aerosol Formation from the Photooxidation ofp- ando-Xylene
Song Chen, Na Kwangsam, Warren Bethany, Malloy Quentin, Cocker David R.
Environmental Science & Technology. 2007 41(21). p.7403
A kinetic mechanism for predicting secondary organic aerosol formation from toluene oxidation in the presence of NOx and natural sunlight
Hu Di, Tolocka Michael, Li Qianfeng, Kamens Richard M.
Atmospheric Environment. 2007 41(31). p.6478
Reactive oxidation products promote secondary organic aerosol formation from green leaf volatiles
Hamilton J. F., Lewis A. C., Carey T. J., Wenger J. C., Borrás i Garcia E., Muñoz A.
Atmospheric Chemistry and Physics. 2009 9(11). p.3815
Atmospheric reactivity of hydroxyl radicals with guaiacol (2-methoxyphenol), a biomass burning emitted compound: Secondary organic aerosol formation and gas-phase oxidation products
Lauraguais Amélie, Coeur-Tourneur Cécile, Cassez Andy, Deboudt Karine, Fourmentin Marc, Choël Marie
Atmospheric Environment. 2014 86 p.155
Secondary Formation and Impacts of Gaseous Nitro-Phenolic Compounds in the Continental Outflow Observed at a Background Site in South China
Chen Yi, Zheng Penggang, Wang Zhe, Pu Wei, Tan Yan, Yu Chuan, Xia Men, Wang Weihao, Guo Jia, Huang Dandan, Yan Chao, Nie Wei, Ling Zhenhao, Chen Qi, Lee Shuncheng, Wang Tao
Environmental Science & Technology. 2022 56(11). p.6933
Secondary organic aerosol formation from isoprene photooxidation under high‐NOx conditions
Kroll Jesse H., Ng Nga L., Murphy Shane M., Flagan Richard C., Seinfeld John H.
Geophysical Research Letters. 2005 32(18).
Multiphase Chemistry at the Atmosphere–Biosphere Interface Influencing Climate and Public Health in the Anthropocene
Pöschl Ulrich, Shiraiwa Manabu
Chemical Reviews. 2015 115(10). p.4440
Formation of secondary organic aerosols from anthropogenic precursors in laboratory studies
Srivastava Deepchandra, Vu Tuan V., Tong Shengrui, Shi Zongbo, Harrison Roy M.
npj Climate and Atmospheric Science. 2022 5(1).
Modeling Secondary Organic Aerosol Formation via Multiphase Partitioning with Molecular Data
Pun Betty K., Seigneur Christian, Lohman Kristen
Environmental Science & Technology. 2006 40(15). p.4722
Formation kinetics and mechanisms of ozone and secondary organic aerosols from photochemical oxidation of different aromatic hydrocarbons: dependence on NO<sub><i>x</i></sub> and organic substituents
Luo Hao, Chen Jiangyao, Li Guiying, An Taicheng
Atmospheric Chemistry and Physics. 2021 21(10). p.7567
Global modeling of secondary organic aerosol formation from aromatic hydrocarbons: high- vs. low-yield pathways
Henze D. K., Seinfeld J. H., Ng N. L., Kroll J. H., Fu T.-M., Jacob D. J., Heald C. L.
Atmospheric Chemistry and Physics. 2008 8(9). p.2405
Characterization of low-temperature vapour pressure estimates for secondary organic aerosol applications
Schnitzler Elijah G., McDonald Karen M.
Atmospheric Environment. 2012 56 p.9
Mechanism reduction for the formation of secondary organic aerosol for integration into a 3-dimensional regional air quality model: <i>α</i>-pinene oxidation system
Xia A. G., Michelangeli D. V., Makar P. A.
Atmospheric Chemistry and Physics. 2009 9(13). p.4341
Formation and sink of glyoxal and methylglyoxal in a polluted subtropical environment: observation-based photochemical analysis and impact evaluation
Ling Zhenhao, Xie Qianqian, Shao Min, Wang Zhe, Wang Tao, Guo Hai, Wang Xuemei
Atmospheric Chemistry and Physics. 2020 20(19). p.11451
Evidence of Formation of Bicyclic Species in the Early Stages of Atmospheric Benzene Oxidation
Glowacki David R., Wang Liming, Pilling Michael J.
The Journal of Physical Chemistry A. 2009 113(18). p.5385
Atmospheric composition change – global and regional air quality
Monks P.S., Granier C., Fuzzi S., Stohl A., Williams M.L., Akimoto H., Amann M., Baklanov A., Baltensperger U., Bey I., Blake N., Blake R.S., Carslaw K., Cooper O.R., Dentener F., Fowler D., Fragkou E., Frost G.J., Generoso S., Ginoux P., Grewe V., Guenther A., Hansson H.C., Henne S., Hjorth J., Hofzumahaus A., Huntrieser H., Isaksen I.S.A., Jenkin M.E., Kaiser J., Kanakidou M., Klimont Z., Kulmala M., Laj P., Lawrence M.G., Lee J.D., Liousse C., Maione M., McFiggans G., Metzger A., Mieville A., Moussiopoulos N., Orlando J.J., O'Dowd C.D., Palmer P.I., Parrish D.D., Petzold A., Platt U., Pöschl U., Prévôt A.S.H., Reeves C.E., Reimann S., Rudich Y., Sellegri K., Steinbrecher R., Simpson D., ten Brink H., Theloke J., van der Werf G.R., Vautard R., Vestreng V., Vlachokostas Ch., von Glasow R.
Atmospheric Environment. 2009 43(33). p.5268
Atmospheric benzenoid emissions from plants rival those from fossil fuels
Misztal P.K., Hewitt C.N., Wildt J., Blande J.D., Eller A.S.D., Fares S., Gentner D.R., Gilman J.B., Graus M., Greenberg J., Guenther A.B., Hansel A., Harley P., Huang M., Jardine K., Karl T., Kaser L., Keutsch F.N., Kiendler-Scharr A., Kleist E., Lerner B.M., Li T., Mak J., Nölscher A.C., Schnitzhofer R., Sinha V., Thornton B., Warneke C., Wegener F., Werner C., Williams J., Worton D.R., Yassaa N., Goldstein A.H.
Scientific Reports. 2015 5(1).
Light Intensity and Light Source Influence on Secondary Organic Aerosol Formation for the m-Xylene/NOx Photooxidation System
Warren Bethany., Song Chen., Cocker David R.
Environmental Science & Technology. 2008 42(15). p.5461
Gas/particle partitioning of carbonyls in the photooxidation of isoprene and 1,3,5-trimethylbenzene
Healy R. M., Wenger J. C., Metzger A., Duplissy J., Kalberer M., Dommen J.
Atmospheric Chemistry and Physics. 2008 8(12). p.3215
Surface components of PM2.5 during clear and hazy days in Shanghai by ToF-SIMS
Huang Di, Xiu Guangli, Li Meng, Hua Xin, Long Yitao
Atmospheric Environment. 2017 148 p.175
Characterization of Polar Compounds and Oligomers in Secondary Organic Aerosol Using Liquid Chromatography Coupled to Mass Spectrometry
Hamilton Jacqueline F., Lewis Alastair C., Carey Trevor J., Wenger John C.
Analytical Chemistry. 2008 80(2). p.474
Role of aldehyde chemistry and NO<sub>x</sub> concentrations in secondary organic aerosol formation
Chan A. W. H., Chan M. N., Surratt J. D., Chhabra P. S., Loza C. L., Crounse J. D., Yee L. D., Flagan R. C., Wennberg P. O., Seinfeld J. H.
Atmospheric Chemistry and Physics. 2010 10(15). p.7169
Implementation and initial application of the near-explicit Master Chemical Mechanism in the 3D Community Multiscale Air Quality (CMAQ) model
Ying Qi, Li Jingyi
Atmospheric Environment. 2011 45(19). p.3244
Computational Study of the Effect of Mineral Dust on Secondary Organic Aerosol Formation by Accretion Reactions of Closed-Shell Organic Compounds
Keshavarz Fatemeh, Shcherbacheva Anna, Kubečka Jakub, Vehkamäki Hanna, Kurtén Theo
The Journal of Physical Chemistry A. 2019 123(42). p.9008
Evidence for liquid-like and nonideal behavior of a mixture of organic aerosol components
Cappa Christopher D., Lovejoy Edward R., Ravishankara A. R.
Proceedings of the National Academy of Sciences. 2008 105(48). p.18687
Determination of the biogenic secondary organic aerosol fraction in the boreal forest by NMR spectroscopy
Finessi E., Decesari S., Paglione M., Giulianelli L., Carbone C., Gilardoni S., Fuzzi S., Saarikoski S., Raatikainen T., Hillamo R., Allan J., Mentel Th. F., Tiitta P., Laaksonen A., Petäjä T., Kulmala M., Worsnop D. R., Facchini M. C.
Atmospheric Chemistry and Physics. 2012 12(2). p.941
Impact of NO<sub><i>x</i></sub> and OH on secondary organic aerosol formation from <i>β</i>-pinene photooxidation
Sarrafzadeh Mehrnaz, Wildt Jürgen, Pullinen Iida, Springer Monika, Kleist Einhard, Tillmann Ralf, Schmitt Sebastian H., Wu Cheng, Mentel Thomas F., Zhao Defeng, Hastie Donald R., Kiendler-Scharr Astrid
Atmospheric Chemistry and Physics. 2016 16(17). p.11237
Comparison of secondary organic aerosol (SOA) formation during o-, m-, and p-xylene photooxidation
Zhang Peng, Huang Jingyun, Shu Jinian, Yang Bo
Environmental Pollution. 2019 245 p.20
The formation, properties and impact of secondary organic aerosol: current and emerging issues
Hallquist M., Wenger J. C., Baltensperger U., Rudich Y., Simpson D., Claeys M., Dommen J., Donahue N. M., George C., Goldstein A. H., Hamilton J. F., Herrmann H., Hoffmann T., Iinuma Y., Jang M., Jenkin M. E., Jimenez J. L., Kiendler-Scharr A., Maenhaut W., McFiggans G., Mentel Th. F., Monod A., Prévôt A. S. H., Seinfeld J. H., Surratt J. D., Szmigielski R., Wildt J.
Atmospheric Chemistry and Physics. 2009 9(14). p.5155
Rate constant and secondary organic aerosol yields for the gas-phase reaction of hydroxyl radicals with syringol (2,6-dimethoxyphenol)
Lauraguais Amélie, Coeur-Tourneur Cécile, Cassez Andy, Seydi Abdoulaie
Atmospheric Environment. 2012 55 p.43
Simulation of SOA formation from the photooxidation of monoalkylbenzenes in the presence of aqueous aerosols containing electrolytes under various NO<sub><i>x</i></sub> levels
Zhou Chufan, Jang Myoseon, Yu Zechen
Atmospheric Chemistry and Physics. 2019 19(8). p.5719
AMS and LC/MS analyses of SOA from the photooxidation of benzene and 1,3,5-trimethylbenzene in the presence of NO<sub>x</sub>: effects of chemical structure on SOA aging
Sato K., Takami A., Kato Y., Seta T., Fujitani Y., Hikida T., Shimono A., Imamura T.
Atmospheric Chemistry and Physics. 2012 12(10). p.4667
Cloud condensation nuclei activity, droplet growth kinetics, and hygroscopicity of biogenic and anthropogenic secondary organic aerosol (SOA)
Zhao D. F., Buchholz A., Kortner B., Schlag P., Rubach F., Fuchs H., Kiendler-Scharr A., Tillmann R., Wahner A., Watne Å. K., Hallquist M., Flores J. M., Rudich Y., Kristensen K., Hansen A. M. K., Glasius M., Kourtchev I., Kalberer M., Mentel Th. F.
Atmospheric Chemistry and Physics. 2016 16(2). p.1105
Identifying organic aerosol sources by comparing functional group composition in chamber and atmospheric particles
Russell Lynn M., Bahadur Ranjit, Ziemann Paul J.
Proceedings of the National Academy of Sciences. 2011 108(9). p.3516
Instantaneous nitric oxide effect on secondary organic aerosol formation from m-xylene photooxidation
Li Lijie, Tang Ping, Cocker David R.
Atmospheric Environment. 2015 119 p.144
Differences in BVOC oxidation and SOA formation above and below the forest canopy
Schulze Benjamin C., Wallace Henry W., Flynn James H., Lefer Barry L., Erickson Matt H., Jobson B. Tom, Dusanter Sebastien, Griffith Stephen M., Hansen Robert F., Stevens Philip S., VanReken Timothy, Griffin Robert J.
Atmospheric Chemistry and Physics. 2017 17(3). p.1805
Chemical Composition of Secondary Organic Aerosol Formed from the Photooxidation of Isoprene
Surratt Jason D., Murphy Shane M., Kroll Jesse H., Ng Nga L., Hildebrandt Lea, Sorooshian Armin, Szmigielski Rafal, Vermeylen Reinhilde, Maenhaut Willy, Claeys Magda, Flagan Richard C., Seinfeld John H.
The Journal of Physical Chemistry A. 2006 110(31). p.9665
Role of sea salt aerosols in the formation of aromatic secondary organic aerosol: yields and hygroscopic properties
Beardsley Ross, Jang Myoseon, Ori Baber, Im Yunseok, Delcomyn Carrie A., Witherspoon Ned
Environmental Chemistry. 2013 10(3). p.167
Chemistry of secondary organic aerosol: Formation and evolution of low-volatility organics in the atmosphere
Kroll Jesse H., Seinfeld John H.
Atmospheric Environment. 2008 42(16). p.3593
Suppression of the phenolic SOA formation in the presence of electrolytic inorganic seed
Choi Jiwon, Jang Myoseon
Science of The Total Environment. 2022 851 p.158082
Physico-chemical characterization of SOA derived from catechol and guaiacol – a model substance for the aromatic fraction of atmospheric HULIS
Ofner J., Krüger H.-U., Grothe H., Schmitt-Kopplin P., Whitmore K., Zetzsch C.
Atmospheric Chemistry and Physics. 2011 11(1). p.1
The contributions of high- and low altitude emission sources to the near ground concentrations of air pollutants
Đorđević Dragana S., Šolević Tatjana M.
Atmospheric Research. 2008 87(2). p.170
Aerosol formation yields from the reaction of catechol with ozone
Coeur-Tourneur Cécile, Tomas Alexandre, Guilloteau Angélique, Henry Françoise, Ledoux Frédéric, Visez Nicolas, Riffault Véronique, Wenger John C., Bedjanian Yuri
Atmospheric Environment. 2009 43(14). p.2360
Modelling non-equilibrium secondary organic aerosol formation and evaporation with the aerosol dynamics, gas- and particle-phase chemistry kinetic multilayer model ADCHAM
Roldin P., Eriksson A. C., Nordin E. Z., Hermansson E., Mogensen D., Rusanen A., Boy M., Swietlicki E., Svenningsson B., Zelenyuk A., Pagels J.
Atmospheric Chemistry and Physics. 2014 14(15). p.7953
A Common Representative Intermediates (CRI) mechanism for VOC degradation. Part 3: Development of a secondary organic aerosol module
Utembe S.R., Watson L.A., Shallcross D.E., Jenkin M.E.
Atmospheric Environment. 2009 43(12). p.1982
Design and construction of a simple Knudsen Effusion Mass Spectrometer (KEMS) system for vapour pressure measurements of low volatility organics
Booth A. M., Markus T., McFiggans G., Percival C. J., Mcgillen M. R., Topping D. O.
Atmospheric Measurement Techniques. 2009 2(2). p.355
Simulated impact of NO x on SOA formation from oxidation of toluene and m -xylene
Xu Jialu, Griffin Robert J., Liu Ying, Nakao Shunsuke, Cocker David R.
Atmospheric Environment. 2015 101 p.217

Committee on Publication Ethics


Abstract Export Citation Get Permission