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 Toluene

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 1(3) 150-165 https://doi.org/10.1071/EN04069
Submitted: 17 September 2004  Accepted: 20 October 2004   Published: 7 December 2004



88 articles found in Crossref database.

A computational study on the adsorption and ring cleavage of para-chlorophenol on anatase TiO2 surface
Wahab Hilal S., Bredow Thomas, Aliwi Salah M.
Surface Science. 2009 603(4). p.664
Investigation of dark condition nitrate radical- and ozone-initiated aging of toluene secondary organic aerosol: Importance of nitrate radical reactions with phenolic products
Ramasamy Sathiyamurthi, Nakayama Tomoki, Imamura Takashi, Morino Yu, Kajii Yoshizumi, Sato Kei
Atmospheric Environment. 2019 219 p.117049
PM2.5-mediated photochemical reaction of typical toluene in real air matrix with identification of products by isotopic tracing and FT-ICR MS
Li Qianqian, Liu Yalu, Wang Mengjing, Su Guijin, Wang Qingliang, Zhao Xu, Zhang Qifan, Meng Jing, Shi Bin
Environmental Pollution. 2022 313 p.120181
Potential of secondary aerosol formation from Chinese gasoline engine exhaust
Du Zhuofei, Hu Min, Peng Jianfei, Guo Song, Zheng Rong, Zheng Jing, Shang Dongjie, Qin Yanhong, Niu He, Li Mengren, Yang Yudong, Lu Sihua, Wu Yusheng, Shao Min, Shuai Shijin
Journal of Environmental Sciences. 2018 66 p.348
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
Secondary organic aerosol formation from styrene photolysis and photooxidation with hydroxyl radicals
Tajuelo Mercedes, Rodríguez Diana, Baeza-Romero M. Teresa, Díaz-de-Mera Yolanda, Aranda Alfonso, Rodríguez Ana
Chemosphere. 2019 231 p.276
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
Molecular characterization of brown carbon (BrC) chromophores in secondary organic aerosol generated from photo-oxidation of toluene
Lin Peng, Liu Jiumeng, Shilling John E., Kathmann Shawn M., Laskin Julia, Laskin Alexander
Physical Chemistry Chemical Physics. 2015 17(36). p.23312
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
Simulation of aromatic SOA formation using the lumping model integrated with explicit gas-phase kinetic mechanisms and aerosol-phase reactions
Im Y., Jang M., Beardsley R. L.
Atmospheric Chemistry and Physics. 2014 14(8). p.4013
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 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
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
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
Evaluation of the UNC toluene-SOA mechanism with respect to other chamber studies and key model parameters
Hu Di, Kamens Richard M.
Atmospheric Environment. 2007 41(31). p.6465
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
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
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
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
Effects of NOxon the Volatility of Secondary Organic Aerosol from Isoprene Photooxidation
Xu Lu, Kollman Matthew S., Song Chen, Shilling John E., Ng Nga L.
Environmental Science & Technology. 2014 48(4). p.2253
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
Hydrolysis of Organonitrate Functional Groups in Aerosol Particles
Liu Shang, Shilling John E., Song Chen, Hiranuma Naruki, Zaveri Rahul A., Russell Lynn M.
Aerosol Science and Technology. 2012 46(12). p.1359
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
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
Composition and yields of secondary organic aerosol formed from OH radical-initiated reactions of linear alkenes in the presence of NOx: Modeling and measurements
Matsunaga Aiko, Docherty Kenneth S., Lim Yong B., Ziemann Paul J.
Atmospheric Environment. 2009 43(6). p.1349
Enhanced secondary organic aerosol formation from the photo-oxidation of mixed anthropogenic volatile organic compounds
Li Junling, Li Hong, Li Kun, Chen Yan, Zhang Hao, Zhang Xin, Wu Zhenhai, Liu Yongchun, Wang Xuezhong, Wang Weigang, Ge Maofa
Atmospheric Chemistry and Physics. 2021 21(10). p.7773
Simulation and Assessment of Chemical Processes in a Multiphase Environment (2008)
Ziemann P. J.
Regional and global impacts of Criegee intermediates on atmospheric sulphuric acid concentrations and first steps of aerosol formation
Percival Carl J., Welz Oliver, Eskola Arkke J., Savee John D., Osborn David L., Topping David O., Lowe Douglas, Utembe Steven R., Bacak Asan, McFiggans Gordon, Cooke Michael C., Xiao Ping, Archibald† Alexander T., Jenkin Michael E., Derwent Richard G., Riipinen Ilona, Mok Daniel W. K., Lee Edmond P. F., Dyke John M., Taatjes Craig A., Shallcross Dudley E.
Faraday Discussions. 2013 165 p.45
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
A secondary organic aerosol formation model considering successive oxidation aging and kinetic condensation of organic compounds: global scale implications
Yu F.
Atmospheric Chemistry and Physics. 2011 11(3). p.1083
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).
A large-scale outdoor atmospheric simulation smog chamber for studying atmospheric photochemical processes: Characterization and preliminary application
Li Junling, Li Hong, Wang Xuezhong, Wang Weigang, Ge Maofa, Zhang Hao, Zhang Xin, Li Kun, Chen Yan, Wu Zhenhai, Chai Fahe, Meng Fan, Mu Yujing, Mellouki Abdelwahid, Bi Fang, Zhang Yujie, Wu Lingyan, Liu Yongchun
Journal of Environmental Sciences. 2021 102 p.185
Exploring the formation potential and optical properties of secondary organic aerosol from the photooxidation of selected short aliphatic ethers
Zhu Jianqiang, Li Jianlong, Du Lin
Journal of Environmental Sciences. 2020 95 p.82
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
Chemical Composition of Gas and Particle Phase Products of Toluene Photooxidation Reaction under High OH Exposure Condition
Lau Yik-Sze, Chan Man-Nin, Poon Hon-Yin, Tan Yan, Lee Shun-Cheng, Li Jianjun, Ho Kin-Fai
Atmosphere. 2021 12(7). p.915
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
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
Computational investigation of the adsorption and photocleavage of chlorobenzene on anatase TiO2 surfaces
Wahab Hilal S., Bredow Thomas, Aliwi Salah M.
Chemical Physics. 2008 353(1-3). p.93
Simulating the Formation of Secondary Organic Aerosol from the Photooxidation of Aromatic Hydrocarbons
Johnson David, Jenkin Michael E., Wirtz Klaus, Martin-Reviejo Montserrat
Environmental Chemistry. 2005 2(1). p.35
Secondary organic aerosol formation from photooxidation of a mixture of dimethyl sulfide and isoprene
Chen Tianyi, Jang Myoseon
Atmospheric Environment. 2012 46 p.271
Measurement of Secondary Products During Oxidation Reactions of Terpenes and Ozone Based on the PTR-MS Analysis: Effects of Coexistent Carbonyl Compounds
Ishizuka Yusuke, Tokumura Masahiro, Mizukoshi Atsushi, Noguchi Miyuki, Yanagisawa Yukio
International Journal of Environmental Research and Public Health. 2010 7(11). p.3853
Volatile organic compounds emissions from traditional and clean domestic heating appliances in Guanzhong Plain, China: Emission factors, source profiles, and effects on regional air quality
Sun Jian, Shen Zhenxing, Zhang Leiming, Zhang Yue, Zhang Tian, Lei Yali, Niu Xinyi, Zhang Qian, Dang Wei, Han Wenping, Cao Junji, Xu Hongmei, Liu Pingping, Li Xuxiang
Environment International. 2019 133 p.105252
A core-shell box model for simulating viscosity dependent secondary organic aerosol (CSVA) and its application
Jia Long, Xu YongFu
Science of The Total Environment. 2021 789 p.147954
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
Pm2.5-Mediated Photochemical Reaction of Typical Toluene in Real Air Matrix with Identification of Products by Isotopic Tracing and Ft-Icr Ms
Li Qianqian, Liu Yalu, Wang Mengjing, Su Guijin, Wang Qingliang, Zhao Xu, Zhang Qifan, Meng Jing, Shi Bin
SSRN Electronic Journal . 2022
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
A new smog chamber system for atmospheric multiphase chemistry study: design and characterization
Zong Taomou, Wu Zhijun, Wang Junrui, Bi Kai, Fang Wenxu, Yang Yanrong, Yu Xuena, Bao Zhier, Meng Xiangxinyue, Zhang Yuheng, Guo Song, Chen Yang, Liu Chunshan, Zhang Yue, Li Shao-Meng, Hu Min
Atmospheric Measurement Techniques. 2023 16(15). p.3679
Secondary organic aerosol formation in urban air: Temporal variations and possible contributions from unidentified hydrocarbons
Matsui H., Koike M., Takegawa N., Kondo Y., Griffin R. J., Miyazaki Y., Yokouchi Y., Ohara T.
Journal of Geophysical Research: Atmospheres. 2009 114(D4).
A perspective on the development of gas-phase chemical mechanisms for Eulerian air quality models
Stockwell William R., Saunders Emily, Goliff Wendy S., Fitzgerald Rosa M.
Journal of the Air & Waste Management Association. 2020 70(1). p.44
Major solutes, metals, and alkylated aromatic compounds in high-latitude maritime snowpacks near the trans-Alaska pipeline terminal, Valdez, Alaska
Bower Jonathan P, Hood Eran, Hoferkamp Lisa A
Environmental Research Letters. 2008 3(4). p.045010
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
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
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
Co-adsorption of gaseous benzene, toluene, ethylbenzene, m-xylene (BTEX) and SO2 on recyclable Fe3O4 nanoparticles at 0–101% relative humidities
Ye Connie Z., Ariya Parisa A.
Journal of Environmental Sciences. 2015 31 p.164
Effect of NOx on Secondary Organic Aerosol Concentrations
Lane Timothy E., Donahue Neil M., Pandis Spyros N.
Environmental Science & Technology. 2008 42(16). p.6022
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
Development of a sensitive long path absorption photometer to quantify peroxides in aerosol particles (Peroxide-LOPAP)
Mertes P., Pfaffenberger L., Dommen J., Kalberer M., Baltensperger U.
Atmospheric Measurement Techniques. 2012 5(10). p.2339
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
A Smog Chamber Facility for Qualitative and Quantitative Study on Atmospheric Chemistry and Secondary Organic Aerosol
Hu Chang-jin, Cheng Yue, Pan Gang, Gai Yan-bo, Gu Xue-jun, Zhao Wei-xiong, Wang Zhen-ya, Zhang Wei-jun, Chen Jun, Liu Fu-yi, Shan Xiao-bin, Sheng Liu-si
Chinese Journal of Chemical Physics. 2014 27(6). p.631
Secondary organic aerosol formation from toluene in an atmospheric hydrocarbon mixture: Water and particle seed effects
Kamens Richard M., Zhang Haofei, Chen Eric H., Zhou Yang, Parikh Harshal M., Wilson Rebecca L., Galloway Katherine E., Rosen Elias P.
Atmospheric Environment. 2011 45(13). p.2324
A New Type of Quartz Smog Chamber: Design and Characterization
Ma Wei, Liu Yongchun, Zhang Yusheng, Feng Zemin, Zhan Junlei, Hua Chenjie, Ma Li, Guo Yishuo, Zhang Ying, Zhou Wenshuo, Yan Chao, Chu Biwu, Chen Tianzeng, Ma Qingxin, Liu Chunshan, Kulmala Markku, Mu Yujing, He Hong
Environmental Science & Technology. 2022 56(4). p.2181
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
Reactions of Semivolatile Organics and Their Effects on Secondary Organic Aerosol Formation
Kroll Jesse H., Chan Arthur W. H., Ng Nga L., Flagan Richard C., Seinfeld John H.
Environmental Science & Technology. 2007 41(10). p.3545
Design and characterization of a smog chamber for studying gas-phase chemical mechanisms and aerosol formation
Wang X., Liu T., Bernard F., Ding X., Wen S., Zhang Y., Zhang Z., He Q., Lü S., Chen J., Saunders S., Yu J.
Atmospheric Measurement Techniques. 2014 7(1). p.301
Secondary Organic Aerosol Formation during the Photooxidation of Toluene:  NOxDependence of Chemical Composition
Sato Kei, Hatakeyama Shiro, Imamura Takashi
The Journal of Physical Chemistry A. 2007 111(39). p.9796
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
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
Secondary organic aerosol production from modern diesel engine emissions
Samy S., Zielinska B.
Atmospheric Chemistry and Physics. 2010 10(2). p.609
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
Modeling secondary organic aerosol using a dynamic partitioning approach incorporating particle aqueous-phase chemistry
Parikh Harshal M., Carlton Annmarie G., Vizuete William, Kamens Richard M.
Atmospheric Environment. 2011 45(5). p.1126
Secondary Organic Aerosol Production from Terpene Ozonolysis. 2. Effect of NOx Concentration
Presto Albert A., Huff Hartz Kara E., Donahue Neil M.
Environmental Science & Technology. 2005 39(18). p.7046
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
Size distribution dynamics reveal particle-phase chemistry in organic aerosol formation
Shiraiwa Manabu, Yee Lindsay D., Schilling Katherine A., Loza Christine L., Craven Jill S., Zuend Andreas, Ziemann Paul J., Seinfeld John H.
Proceedings of the National Academy of Sciences. 2013 110(29). p.11746
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
A review of Secondary Organic Aerosol (SOA) formation from isoprene
Carlton A. G., Wiedinmyer C., Kroll J. H.
Atmospheric Chemistry and Physics. 2009 9(14). p.4987
Thermodynamics of oligomer formation: implications for secondary organic aerosol formation and reactivity
DePalma Joseph W., Horan Andrew J., Hall IV Wiley A., Johnston Murray V.
Physical Chemistry Chemical Physics. 2013 15(18). p.6935
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).
Box model studies of the secondary organic aerosol formation under different HC/NOxconditions using the subset of the Master Chemical Mechanism forα‐pinene oxidation
Xia Adam G., Michelangeli Diane V., Makar Paul A.
Journal of Geophysical Research: Atmospheres. 2008 113(D10).
Role of ammonia in forming secondary aerosols from gasoline vehicle exhaust
Liu Tengyu, Wang Xinming, Deng Wei, Zhang Yanli, Chu Biwu, Ding Xiang, Hu Qihou, He Hong, Hao Jiming
Science China Chemistry. 2015 58(9). p.1377
Insights into the Formation and Evolution of Individual Compounds in the Particulate Phase during Aromatic Photo-Oxidation
Pereira Kelly L., Hamilton Jacqueline F., Rickard Andrew R., Bloss William J., Alam Mohammed S., Camredon Marie, Ward Martyn W., Wyche Kevin P., Muñoz Amalia, Vera Teresa, Vázquez Mónica, Borrás Esther, Ródenas Milagros
Environmental Science & Technology. 2015 49(22). p.13168
Aerosol speciation and mass prediction from toluene oxidation under high NOx conditions
Kelly Janya L., Michelangeli Diane V., Makar Paul A., Hastie Donald R., Mozurkewich Michael, Auld Janeen
Atmospheric Environment. 2010 44(3). p.361
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
Using Proton Transfer Reaction Mass Spectrometry for Online Analysis of Secondary Organic Aerosols
Hellén Heidi, Dommen Josef, Metzger Axel, Gascho Astrid, Duplissy Jonathan, Tritscher Torsten, Prevot Andre S. H., Baltensperger Urs
Environmental Science & Technology. 2008 42(19). p.7347
Secondary Organic Aerosol Formation from m-Xylene in the Absence of NOx
Song Chen, Na Kwangsam, Warren Bethany, Malloy Quentin, Cocker David R.
Environmental Science & Technology. 2007 41(21). p.7409
Secondary Organic Aerosol Formation by Glyoxal Hydration and Oligomer Formation:  Humidity Effects and Equilibrium Shifts during Analysis
Hastings William P., Koehler Charles A., Bailey Earl L., De Haan David O.
Environmental Science & Technology. 2005 39(22). p.8728
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
Profiles and Source Apportionment of Nonmethane Volatile Organic Compounds in Winter and Summer in Xi’an, China, based on the Hybrid Environmental Receptor Model
Sun Jian, Shen Zhenxing, Zhang Yue, Dai Wenting, He Kun, Xu Hongmei, Zhang Zhou, Cui Long, Li Xuxiang, Huang Yu, Cao Junji
Advances in Atmospheric Sciences. 2021 38(1). p.116

Committee on Publication Ethics


Abstract Export Citation Get Permission