PUBLICATIONS

Google Scholar: https://scholar.google.com/citations?user=e5NyT6IAAAAJ&hl=en

§: Corresponding Author; G: Graduate student advisee; U: Undergraduate student advisee

[58] DeMarsh, K.G, Wang, H., Gao, Y., Moo, Z.G, Hao, P.G, Jing, S., Lou, S., Huang, C., Guo, S., Lu, S., Zeng, L., Elias, A.U, Wang, S., and Zhang, X.§, Isoprene peroxy chemistry operates competitively in areas of East China, Appl. Geochem., 157, 105778, 2023. 

[57] Nguyen T., Bates, K. H., Buenconsejo, R. S., Charan, S. M., Cavanna, E. E., Cocker III, D. R., Day, D. A., DeVault, M. P., Donahue, N. M., Finewax, Z., Habib, L. F., Handschy, A. V., Hildebrandt Ruiz, L., Hou, C. S., Jimenez, J. L., Joo, T., Klodt, A. L., Kong, W., Le, C., Masoud, C. G., Mayernik, M. S., Ng, N. L., Nienhouse, E. J., Nizkorodov, S. A., Orlando, J. J., Post, J. J., Sturm, P. O., Thrasher, B. L., Tyndall, G. S., Seinfeld, J. H., Worley, S. J., Zhang, X., and Ziemann. P. J., Overview of ICARUS─A curated, open Access, online repository for atmospheric simulation chamber data, ACS Earth Space Chem., 7(6), 1235-1246, 2023.

[56] Peng, Y.G, Wang H., Gao, Y., Jing, S., Zhu, S., Huang D., Hao, P.G, Lou, S., Cheng, T., Huang, C., and Zhang, X.§, Realtime measurement of phase partitioning of organic compounds using a Proton-Transfer-Reaction Time-of-Flight Mass Spectrometer coupled to a CHARON inlet, Atmos. Meas. Tech., 16, 15–28, 2023.

[55] Zhang, X.§, Wang S., Apel, E. C., Schwantes, R. H., Hornbrook, R. S., Hills, A. J., DeMarsh, K. E.G, Moo, Z.G, Ortega, J., Brune, W. H., Mauldin III, R. L., Cantrell, C. A., Teng, A. P., Blake, D. R., Campos, T., Daube, B., Emmons, L. K., Hall, S. R., Wofsy, S. C., Wennberg, P. O., Tyndall, G. S., and Orlando, J. J., Probing Isoprene Photochemistry at Atmospheric Relevant Nitric Oxide Levels, accepted by Chem, 2022.

[54] Shuman, J. K., Balch, J. K., Barnes, R. T., Higuera, P. E., Roos, C. I., Schwilk D. W., Stavros, E. N., Banerjee, T. et al., and Zhang, X., Reimagine fire science for the Anthropocene, PNAS Nexus, pgac115, 2022. 

[53] Fredrickson, C. D., Palm, B. B., Peng, Q., Lee, B. H., Zhang, X., Orlando, J. J., Tyndall G. S., Garofalo, L. A., Pothier, M. A., Farmer, D. K., Decker, Z. C. J., Robinson, M. A., Brown, S. S., Murphy, S. M., Shen, Y., Sullivan, A. P., Schobesberger, S., and Thornton, J. A., Formation and evolution of catechol-derived SOA mass, composition, volatility, and light absorption, ACS Earth Space Chem., 6(4), 1067-1079, 2022.

[52] Gao, Y., Wang, H., Liu, Y., Zhang, X., Jing, S., Peng, Y., Huang, D., Li, X., Chen, S., Lou, S. Li, Y., and Huang, C., Unexpected high contribution of residential biomass burning to non‐methane organic gases (NMOGs) in the Yangtze River Delta region of China. J. Geophys. Res. Atmos., 127, e2021JD035050, 2022. 

[51] Garofalo, L. A., He, Y., Jathar, S. H., Pierce, J. R., Dredrickson, C. D., Palm, B. B., Thornton, J. A., Mahrt, F., Crescenzo, G. V., Bertram, A. K., Draper, D. C., Fry, J. L., Orlando, J. J., Zhang, X., and Farmer, D. K., Heterogeneous nucleation drives particle size segregation in sequential ozone and nitrate radical oxidation of catechol, Environ. Sci. Technol., 55(23), 15637-15645, 2021.

[50] Zhao, Z., Zhang, W., Alexander, T., Zhang, X., Martin, D. B. C., and Zhang, H.: Isolating α-Pinene Ozonolysis Pathways Reveals New Insights into Peroxy Radical Chemistry and Secondary Organic Aerosol Formation, Environ. Sci. Technol., 55(10), 6700-6709, 2021.

[49] Wang, H., Gao, Y.G, Wang, S., Wu, X., Liu, Y., Li, X., Huang, D., Lou, S., Wu, Z., Guo, S., Jing, S., Li, Y., Huang, C., Tyndall, G. S., Orlando, J. J., and Zhang, X.§: Atmospheric processing of nitrophenols and nitrocresols from biomass burning emissions, J. Geophys. Res. Atmos., 125, e2020JD033401, 2020. 

[48] Palm B. B., Peng, Q., Fredrickson, C. D., Lee, B. H., Lauren A. G., Pothier, M. A., Kreidenweis, S. M., Farmer, D. K., Pokhrel, R. P., Shen, Y., Murphy, S. M., Permar, W., Hu, L., Campos, T. L., Hall, S. R., Ullmann, K., Zhang, X., Flocke, F., Fischer, E. V., and Thornton, J. A.: Quantification of organic aerosol and brown carbon evolution in fresh wildfire plumes, Proc. Natl. Acad. Sci. USA, 117(47) 29469-29477, 2020. [Press Release]

[47] Li, J., Zhang, X., Orlando, J. J., and Tyndall G. S.: Quantifying the nitrogen equilibrium an photochemistry-induced isopopic effects between NO and NO2, Atmos. Chem. Phys., 20, 9805-9819, 2020. 

[46] Wang, H., Wang, Q., Gao, Y., Zhou, M., Jing, S., Qiao, L., Yuan, B., Huang, D., Huang, C., Lou, S., Yan, R., deGouw, J., Zhang, X., Chen, J., Chen, C., Tao, S., An, J., and Li, Y.: Estimation of secondary organic aerosol formation during a photochemical smog episode in Shanghai, China, J. Geophys. Res. Atmos., doi.org/10.1029/2019JD032033, 2020. 

[45] Li, L., Lu, C., Chan, P., Zhang, X., Yang H., Lan, Z., Zhang W., Liu, Y., Pan L., and Zhang L.: Tower observed vertical distribution of PM2.5, O3 and NOx in the Pearl River Delta, Atmos. Environ., 220, 117083, 2020. 

[44] Zhang, X.§, Zhang, H., Xu, W., Tyndall G. S., Orlando, J. J., Jayne, J. T., Worsnop D. R., and Canagaratna, M. R.: Molecular Characterization of Alkyl Nitrates in Atmospheric Aerosols by Ion Mobility Mass Spectrometry, Atmos. Meas. Tech., 12, 5535-5545, 2019. 

[43] Gao, Y., Wang, H., Zhang, X., Jing, S. A., Peng, Y., Qiao, L., Zhou, M., Huang, D. D., Wang, Q., Li, X., Li, L., Feng J., Ma, Y., and Li, Y.: Estimating Secondary Organic Aerosol Production from Toluene Photochemistry in a Megacity of China, Environ. Sci. Technol., 53, 15, 8664-8671, 2019. 

[42] Xu, W., Lambe, A. T., Silva, P., Hu, W. W., Onasch, T. B., Williams, L., Croteau, P., Zhang, X., Renbaum-Wolff, L., Fortner, E., Jimenez, J. L., Jayne, J. T., Worsnop D. R., and Canagaratna, M. R.: Laboratory evaluation of species-dependent relative ionization efficiencies in the Aerodyne Aerosol Mass Spectrometer, Aerosol Sci. & Technol., 52, 626-641, 2018. 

[41] Wennberg, P. O., Bates, K. H., Crounse, J. D., Dodson, L. G., McVay, R. C., Mertens, L. A., Nguyen, T. B., Praske, E., Schwantes, R. H., Smarte, M. D., St Clair, J. M., Teng, A. P., Zhang, X., and Seinfeld, J. H.: Gas-phase reactions of isoprene and its major oxidation products, Chem. Rev., 118, 3337-3390, 2018. 

[40] Huang, Y. L., Zhao, R., Charan, S. M., Kenseth, C. M., Zhang, X., and Seinfeld, J. H.: Unified theory of vapor-wall mass transport in Teflon-walled environmental chambers, Environ. Sci. & Technol., 52 (4), 2134-2142, 2018. 

[39] Zhang, X.§, Ortega, J., Huang Y. L, Shertz S., Tyndall G. S., and Orlando, J. J.: A steady state continuous flow chamber for the Study of daytime and nighttime chemistry under atmospherically relevant NO levels, Atmos. Meas. Tech., 11, 2537-2551 , 2018. 

[38] Zhang, X.§, Lambe, A. T., Upshur, M. A., Brooks, W. A., Bé, A. G., Thomson, R. G., Geiger, F. M., Surratt, J. D., Zhang, Z. F., Gold, A., Graf, S., Cubison, M. J., Groessl, M., Jayne, J. T., Worsnop, D. R., and Canagaratna, M. R.: Highly oxygenated multifunctional compounds in α-pinene secondary organic aerosol, Environ. Sci. & Technol., 51, 5932-5940, 2017. 

[37] Lambe, A. T., Massoli, P., Zhang, X., Canagaratna, M. R., Nowak, J., Yan, C., Nie, W., Onasch, T. B., Jayne, J. T., Kolb, C. E., Davidovits, P., Worsnop, D. R., and Brune, W.: Controlled nitric oxide production via O(1D)+N2O reactions for use in oxidation flow reactor studies, Atmos. Meas. Tech., 10, 2283-2298, 2017. 

[36] Schwantes, R. H., Schilling, K., McVay, R. C., Lignell, H., Coggon, M. M., Zhang, X., Wennberg, P. O., and Seinfeld, J. H.: Formation of highly oxygenated low-volatility products from cresol oxidation, Atmos. Chem. Phys., 17, 3453-3474, 2017. 

[35] Schwantes, R. H., McVay, R. C., Zhang, X., Lignell, H., Coggon, M. M., Flagan, R. C., Wennberg, P. O., and Seinfeld, J. H.: Science of the Environmental Chamber, Advances in Chemistry of the Contemporary Atmosphere, 1-93, 2017. 

[34] Xu, W., Croteau, P., Williams, L., Canagaratna, M. R., Onasch, T., Lambe, A., Cross, E., Zhang, X., Robinson, W., Worsnop, D. R., and Jayne, J. T.: Laboratory characterization of an Aerosol Chemical Speciation Monitor with PM2.5 measurement capability, Aerosol Sci. & Technol., 51, 69-83, 2017. 

[33] Huang, D. D., Zhang, X., Dalleska, N. F., Lignell, H., Coggon, M. M., Chan, C. M., Flagan, R. C., Seinfeld, J. H., and Chan, C. K.: A note on the effects of inorganic seed aerosol on the oxidation state of secondary organic aerosol—α‐pinene ozonolysis, J. Geophys. Res. Atmos., 121, 12-476, 2016. 

[32] Kirkby, J., Duplissy, J., Sengupta, K., Frege, C., Gordon, H., Williamson, C., Heinritzi, M., Simon, M., Yan, C., João, A., Tröstl, J., Nieminen, T., Ortega, I. K., Wagner, R., Adamov, A., Amorim, A., Bernhammer, A.-K., Bianchi, F., Breitenlechner, M., Brilke, S., Chen, X., Craven, J., Dias, A., Ehrhart, S., Flagan, R. C., Franchin, A., Fuchs, C., Guida, R., Hakala, J., Hoyle, C. R., Jokinen, T., Junninen, H., Kangasluoma, J., Kim, J., Krapf, M., Kürten, A., Laaksonen, A., Lehtipalo, K., Makhmutov, V., Mathot, S., Molteni, U., Onnela, A., Peräkylä, O., Piel, F., Petäjä, T., Praplan, A. P., Pringle, K., Rap, A., Richards, N. A. D., Riipinen, I., Rissanen, M. P., Rondo, L., Sarnela, N., Schobesberger, S., Scott, C. E., Seinfeld, J. H., Sipilä, M., Steiner, G., Stozhkov, Y., Stratmann, F., Tomé, A., Virtanen, A., Vogel, A. L., Wagner, A. C., Wagner, P. E., Weingartner, E., Wimmer, D., Winkler, P. M., Ye, P., Zhang, X., Hansel, A., Dommen, J., Donahue, N. M., Worsnop, D. R., Baltensperger, U., Kulmala, M., Carslaw, K. S., and Curtius, J.: Ion-induced nucleation of pure biogenic particles, Nature, 533, 521-526, 2016. [Press Release]

[31] Gordon, H., Sengupta, K., Rap, A., Duplissy, J., Frege, C., Williamson, C., Heinritzi, M., Simon, M., Yan, C., Almeida, J., Tröstl, J., Nieminen, T., Ortega, I. K., Wagner, R., Dunne, E. M., Adamov, A., Amorim, A., Bernhammer, A.-K., Bianchi, F., Breitenlechner, M., Brilke, S., Chen, X., Craven, J. S., Dias, A., Ehrhart, S., Fischer, L., Flagan, R. C., Franchin, A., Fuchs, C., Guida, R., Hakala, J., Hoyle, C. R., Jokinen, T., Junninen, H., Kangasluoma, J., Kim, J., Kirkby, J., Krapf, M., Kürten, A., Laaksonen, A., Lehtipalo, K., Makhmutov, V., Mathot, S., Molteni, U., Monks, S. A., Onnela, A., Peräkylä, O., Piel, F., Petäjä, T., Praplan, A. P., Pringle, K. J., Richards, N. A. D., Rissanen, M. P., Rondo, L., Sarnela, N., Schobesberger, S., Scott, C. E., Seinfeld, J. H., Sharma, S., Sipilä, M., Steiner, G., Stozhkov, Y., Stratmann, F., Tomé, A., Virtanen, A., Vogel, A. L., Wagner, A. C., Wagner, P. E., Weingartner, E., Wimmer, D., Winkler, P. M., Ye, P., Zhang, X., Hansel, A., Dommen, J., Donahue, N. M., Worsnop, D. R., Baltensperger, U., Kulmala, M., Curtius, J., and Carslaw, K. S.: Reduced anthropogenic aerosol radiative forcing caused by biogenic new particle formation, Proc. Natl. Acad. Sci. USA, 113, 12053-12058, 2016. [Press Release]

[30] Zhang, X., Krechmer, J. E., Groessl, M., Xu, W., Graf, S., Cubison, M., Jayne, J. T., Jimenez, J. L., Worsnop, D. R., and Canagaratna, M. R.: A novel framework for molecular characterization of atmospherically relevant organic compounds based on collision cross section and mass-to-charge ratio, Atmos. Chem. Phys., 16, 12945-12959, 2016. 

[29] Zhang, X., Dalleska, N. F., Huang, D. D., Bates, K. H., Sorooshian, A., Flagan, R. C., and Seinfeld, J. H.: Time-resolved molecular characterization of organic aerosols by PILS+ UPLC/ESI-Q-TOFMS, Atmos. Environ., 130, 180-189, 2016. 

[28] Krechmer, J. E., Groessl, M., Zhang, X., Junninen, H., Massoli, P., Lambe, A. T., Kimmel, J. R., Cubison, M. J., Graf, S., Lin, Y. H., Budisulistiorini, S. H., Zhang, H., Surratt, J. D., Knochenmuss, R., Jayne, J. T., Worsnop, D. R., Jimenez, J. L., and Canagaratna, M. R.: Ion mobility spectrometry–mass spectrometry (IMS–MS) for on- and offline analysis of atmospheric gas and aerosol species, Atmos. Meas. Tech., 9, 3245-3262, 2016.

[27] McVay, R. C., Zhang, X., Aumont, B., Valorso, R., Camredon, M., La, Y. S., Wennberg, P. O., and Seinfeld, J. H.: SOA formation from the photooxidation of α-pinene: systematic exploration of the simulation of chamber data, Atmos. Chem. Phys., 16, 2785-2802, 2016. 

[26] Nah, T., McVay, R. C., Zhang, X., Boyd, C. M., Seinfeld, J. H., and Ng, N. L.: Influence of seed aerosol surface area and oxidation rate on vapor wall deposition and SOA mass yields: a case study with α-pinene ozonolysis, Atmos. Chem. Phys., 16, 9361-9379, 2016.

[25] Riva, M., Budisulistiorini, S. H., Chen, Y., Zhang, Z., D’Ambro, E. L., Zhang, X., Gold, A., Turpin, B. J., Thornton, J. A., and Canagaratna, M. R.: Chemical characterization of secondary organic aerosol from oxidation of isoprene hydroxyhydroperoxides, Environ. Sci. Technol., 50, 9889-9899, 2016. 

[24] Thomas, D. A., Coggon, M. M., Lignell, H., Schilling, K. A., Zhang, X., Schwantes, R. H., Flagan, R. C., Seinfeld, J. H., and Beauchamp, J. L.: Real-time studies of iron oxalate-mediated oxidation of glycolaldehyde as a model for photochemical aging of aqueous tropospheric aerosols, Environ. Sci. Technol., 50, 12241-12249 2016. 

[23] Krechmer, J. E., Coggon, M. M., Massoli, P., Nguyen, T. B., Crounse, J. D., Hu, W., Day, D. A., Tyndall, G. S., Henze, D. K., Rivera-Rios, J. C., Nowak, J. B., Kimmel, J. R., III, R. L. M., Stark, H., Jayne, J. T., Sipila, M., Junninen, H., Clair, J. M. S., Zhang, X., Feiner, P. A., Zhang, L., Miller, D. O., Brune, W. H., Keutsch, F. N., Wennberg, P. O., Seinfeld, J. H., Worsnop, D. R., Jimenez, J. L., and Canagaratna, M. R.: Formation of low volatility organic compounds and secondary organic aerosol from isoprene hydroxyhydroperoxide low-NO oxidation, Environ. Sci. Technol., 49, 10330-10339, 2015. 

[22] Nguyen, T. B., Bates, K. H., Crounse, J. D., Schwantes, R. H., Zhang, X., Kjaergaard, H. G., Surratt, J. D., Lin, P., Laskin, A., and Seinfeld, J. H.: Mechanism of the hydroxyl radical oxidation of methacryloyl peroxynitrate (MPAN) and its pathway toward secondary organic aerosol formation in the atmosphere, Phys. Chem. Chem. Phys., 17, 17914-17926, 2015. 

[21] Schwantes, R. H., Teng, A. P., Nguyen, T. B., Coggon, M. M., Crounse, J. D., St. Clair, J. M., Zhang, X., Schilling, K. A., Seinfeld, J. H., and Wennberg, P. O.: Isoprene NO3 oxidation products from the RO2+ HO2 pathway, J. Phys. Chem. A, 119, 10158-10171, 2015. 

[20] Zhang, X., McVay, R. C., Huang, D. D., Dalleska, N. F., Aumont, B., Flagan, R. C., and Seinfeld, J. H.: Formation and evolution of molecular products in α-pinene secondary organic aerosol, Proc. Natl. Acad. Sci., 112, 14168-14173, 2015. [Press Release]

[19] Zhang, X., Schwantes, R. H., McVay, R. C., Lignell, H., Coggon, M. M., Flagan, R. C., and Seinfeld, J. H.: Vapor wall deposition in Teflon chambers, Atmos. Chem. Phys., 15, 4197-4214, 2015.

[18] Loza, C. L., Craven, J. S., Yee, L. D., Coggon, M. M., Schwantes, R. H., Shiraiwa, M., Zhang, X., Schilling, K. A., Ng, N. L., and Canagaratna, M. R.: Secondary organic aerosol yields of 12-carbon alkanes, Atmos. Chem. Phys., 14, 1423-1439, 2014. 

[17] Nguyen, T. B., Coggon, M. M., Bates, K. H., Zhang, X., Schwantes, R. H., Schilling, K. A., Loza, C. L., Flagan, R. C., Wennberg, P. O., and Seinfeld, J. H.: Organic aerosol formation from the reactive uptake of isoprene epoxydiols (IEPOX) onto non-acidified inorganic seeds, Atmos. Chem. Phys., 14, 3497-3510, 2014. 

[16] Nguyen, T. B., Crounse, J. D., Schwantes, R. H., Teng, A. P., Bates, K. H., Zhang, X., St Clair, J. M., Brune, W. H., Tyndall, G. S., and Keutsch, F. N.: Overview of the Focused Isoprene eXperiment at the California Institute of Technology (FIXCIT): mechanistic chamber studies on the oxidation of biogenic compounds, Atmos. Chem. Phys., 14, 13531-13549, 2014. 

[15] Schilling Fahnestock, K. A., Yee, L. D., Loza, C. L., Coggon, M. M., Schwantes, R., Zhang, X., Dalleska, N. F., and Seinfeld, J. H.: Secondary organic aerosol composition from C12 alkanes, J. Phys. Chem. A, 119, 4281-4297, 2014. 

[14] Zhang, X., Cappa, C. D., Jathar, S. H., McVay, R. C., Ensberg, J. J., Kleeman, M. J., and Seinfeld, J. H.: Influence of vapor wall loss in laboratory chambers on yields of secondary organic aerosol, Proc. Natl. Acad. Sci. USA, 111, 5802-5807, 2014. [Press Release]

[13] Zhang, X., Schwantes, R. H., Coggon, M. M., Loza, C. L., Schilling, K. A., Flagan, R. C., and Seinfeld, J. H.: Role of ozone in SOA formation from alkane photooxidation, Atmos. Chem. Phys., 14, 1733-1753, 2014. 

[12] Cappa, C. D., Zhang, X., Loza, C. L., Craven, J. S., Lee, Y. D., and Seinfeld, J. H.: Application of the statistical oxidation model (SOM) to secondary organic aerosol formation from photooxidation of C12 alkanes, Atmos. Chem. Phys., 13, 1591-1606, 2013. 

[11] Zhang, X., and Seinfeld, J. H.: A functional group oxidation model (FGOM) for SOA formation and aging, Atmos. Chem. Phys., 13, 5907-5926, 2013. 

[10] Zhang, X., He, S. Z., Chen, Z. M., Zhao, Y., and Hua, W.: Methyl hydroperoxide (CH3OOH) in urban, suburban and rural atmosphere: ambient concentration, budget, and contribution to the atmospheric oxidizing capacity, Atmos. Chem. Phys., 12, 8951-8962, 2012. 

[09] Wang, H. L., Huang, D., Zhang, X., Zhao, Y., and Chen, Z. M.: Understanding the aqueous phase ozonolysis of isoprene: distinct product distribution and mechanism from the gas phase reaction, Atmos. Chem. Phys., 12, 7187-7198, 2012. 

[08] He, S., Chen, Z., and Zhang, X.: Photochemical reactions of methyl and ethyl nitrate: a dual role for alkyl nitrates in the nitrogen cycle, Environ. Chem., 8, 529-542, 2011. 

[07] Huang, D., Zhang, X., Chen, Z. M., Zhao, Y., and Shen, X. L.: The kinetics and mechanism of an aqueous phase isoprene reaction with hydroxyl radical, Atmos. Chem. Phys., 11, 7399-7415, 2011.

[06] Zhao, Y., Chen, Z., Shen, X., and Zhang, X.: Kinetics and mechanisms of heterogeneous reaction of gaseous hydrogen peroxide on mineral oxide particles, Environ. Sci. Technol., 45, 3317-3324, 2011. 

[05] He, S. Z., Chen, Z. M., Zhang, X., Zhao, Y., Huang, D. M., Zhao, J. N., Zhu, T., Hu, M., and Zeng, L. M.: Measurement of atmospheric hydrogen peroxide and organic peroxides in Beijing before and during the 2008 Olympic Games: Chemical and physical factors influencing their concentrations, J. Geophys. Res. Atmos., 115, D17307, 2010. 

[04] Zhang, X., Chen, Z. M., He, S. Z., Hua, W., Zhao, Y., and Li, J. L.: Peroxyacetic acid in urban and rural atmosphere: concentration, feedback on PAN-NOx cycle and implication on radical chemistry, Atmos. Chem. Phys., 10, 737-748, 2010. 

[03] Zhang, X., Chen, Z. M., and Zhao, Y.: Laboratory simulation for the aqueous OH-oxidation of methyl vinyl ketone and methacrolein: significance to the in-cloud SOA production, Atmos. Chem. Phys., 10, 9551-9561, 2010. 

[02] Zhang, X., Chen, Z., Wang, H., He, S., and Huang, D.: An important pathway for ozonolysis of alpha-pinene and beta-pinene in aqueous phase and its atmospheric implications, Atmos. Environ., 43, 4465-4471, 2009. 

[01] Wang, H., Zhang, X., and Chen, Z.: Development of DNPH/HPLC method for the measurement of carbonyl compounds in the aqueous phase: applications to laboratory simulation and field measurement, Environ. Chem., 6, 389-397, 2009.