3,285
Views
59
CrossRef citations to date
0
Altmetric
Articles

Evaluation of the new capture vaporizer for aerosol mass spectrometers (AMS) through field studies of inorganic species

ORCID Icon, ORCID Icon, ORCID Icon, , , , ORCID Icon & ORCID Icon show all
Pages 735-754 | Received 25 Nov 2016, Accepted 01 Feb 2017, Published online: 08 Mar 2017

References

  • Aiken, A. C., Decarlo, P. F., Kroll, J. H., Worsnop, D. R., Huffman, J. A., Docherty, K. S., Ulbrich, I. M., Mohr, C., Kimmel, J. R., Sueper, D., Sun, Y., Zhang, Q., Trimborn, A., Northway, M., Ziemann, P. J., Canagaratna, M. R., Onasch, T. B., Alfarra, M. R., Prevot, A. S. H., Dommen, J., Duplissy, J., Metzger, A., Baltensperger, U., and Jimenez, J. L. (2008). O/C and OM/OC Ratios of Primary, Secondary, and Ambient Organic Aerosols with High-Resolution Time-of-Flight Aerosol Mass Spectrometry. Environ. Sci. Technol., 42:4478–4485. DOI:10.1021/Es703009q.
  • Allan, J. D., Alfarra, M. R., Bower, K. N., Williams, P. I., Gallagher, M. W., Jimenez, J. L., McDonald, A. G., Nemitz, E., Canagaratna, M. R., Jayne, J. T., Coe, H., and Worsnop, D. R. (2003a). Quantitative Sampling Using an Aerodyne Aerosol Mass Spectrometer - 2. Measurements of Fine Particulate Chemical Composition in two U.K. Cities. J. Geophys. Res.-Atmos., 108(D3):4091. DOI:10.1029/2002jd002359.
  • Allan, J. D., Bower, K. N., Coe, H., Boudries, H., Jayne, J. T., Canagaratna, M. R., Millet, D. B., Goldstein, A. H., Quinn, P. K., Weber, R. J., and Worsnop, D. R. (2004a). Submicron Aerosol Composition at Trinidad Head, California, during ITCT 2K2: Its Relationship With Gas Phase Volatile Organic Carbon and Assessment of Instrument Performance. J. Geophys. Res.-Atmos., 109:D23S24. DOI:10.1029/2003jd004208.
  • Allan, J. D., Delia, A. E., Coe, H., Bower, K. N., Alfarra, M. R., Jimenez, J. L., Middlebrook, A. M., Drewnick, F., Onasch, T. B., Canagaratna, M. R., Jayne, J. T., and Worsnop, D. R. (2004b). A Generalised Method for the Extraction of Chemically Resolved Mass Spectra From Aerodyne Aerosol Mass Spectrometer Data. J. Aerosol Sci., 35:909–922. DOI:10.1016/j.jaerosci.2004.02.007.
  • Allan, J. D., Jimenez, J. L., Williams, P. I., Alfarra, M. R., Bower, K. N., Jayne, J. T., Coe, H., and Worsnop, D. R. (2003b). Quantitative Sampling Using an Aerodyne Aerosol Mass Spectrometer: 1. Techniques of Data Interpretation and Error Analysis. J. Geophys. Res.-Atmos., 108:4091. DOI:10.1029/2003jd001607.
  • Ayres, B. R., Allen, H. M., Draper, D. C., Brown, S. S., Wild, R. J., Jimenez, J. L., Day, D. A., Campuzano-Jost, P., Hu, W., de Gouw, J., Koss, A., Cohen, R. C., Duffey, K. C., Romer, P., Baumann, K., Edgerton, E., Takahama, S., Thornton, J. A., Lee, B. H., Lopez-Hilfiker, F. D., Mohr, C., Wennberg, P. O., Nguyen, T. B., Teng, A., Goldstein, A. H., Olson, K., and Fry, J. L. (2015). Organic Nitrate Aerosol Formation via NO3 + biogenic Volatile Organic Compounds in the Southeastern United States. Atmos. Chem. Phys., 15:13377–13392. DOI:10.5194/acp-15-13377-2015.
  • Bahreini, R., Ervens, B., Middlebrook, A. M., Warneke, C., de Gouw, J. A., DeCarlo, P. F., Jimenez, J. L., Brock, C. A., Neuman, J. A., Ryerson, T. B., Stark, H., Atlas, E., Brioude, J., Fried, A., Holloway, J. S., Peischl, J., Richter, D., Walega, J., Weibring, P., Wollny, A. G., and Fehsenfeld, F. C. (2009). Organic Aerosol Formation in Urban and Industrial Plumes near Houston and Dallas, Texas. J. Geophys. Res.: Atmos., 114:D00F16. DOI:10.1029/2008jd011493.
  • Berresheim, H., Tanner, D. J., and Eisele, F. L. (1993). Method for Real-Time Detection of Dimethyl Sulfone in Ambient Air. Anal. Chem., 65:3168–3170. DOI:10.1021/ac00069a037.
  • Brown, S. S., and Stutz, J. (2012). Nighttime Radical Observations and Chemistry. Chem. Soc. Rev., 41:6405–6447.
  • Canagaratna, M. R., Jayne, J. T., Jimenez, J. L., Allan, J. D., Alfarra, M. R., Zhang, Q., Onasch, T. B., Drewnick, F., Coe, H., Middlebrook, A., Delia, A., Williams, L. R., Trimborn, A. M., Northway, M. J., DeCarlo, P. F., Kolb, C. E., Davidovits, P., and Worsnop, D. R. (2007). Chemical and Microphysical Characterization of Ambient Aerosols With the Aerodyne Aerosol Mass Spectrometer. Mass Spectrom. Rev., 26:185–222. DOI:10.1002/Mas.20115.
  • Canagaratna, M. R., Jimenez, J. L., Kroll, J. H., Chen, Q., Kessler, S. H., Massoli, P., Hildebrandt Ruiz, L., Fortner, E., Williams, L. R., Wilson, K. R., Surratt, J. D., Donahue, N. M., Jayne, J. T., and Worsnop, D. R. (2015). Elemental Ratio Measurements of Organic Compounds Using Aerosol Mass Spectrometry: Characterization, Improved Calibration, and Implications. Atmos. Chem. Phys., 15:253–272. DOI:10.5194/acp-15-253-2015.
  • Carlton, A. M., de Gouw, J., Jimenez, J. L., Ambrose, J. L., Brown, S., Baker, K. R., Brock, C. A., Cohen, R. C., Edgerton, S., Farkas, C., Farmer, D., Goldstein, A. H., Gratz, L., Guenther, A., Hunt, S., Jaeglé, L., Jaffe, D. A., Mak, J., McClure, C., Nenes, A., Nguyen, T. K. V., Pierce, J. R., Selin, N., Shah, V., Shaw, S., Shepson, P. B., Song, S., Stutz, J., Surratt, J., Turpin, B. J., Warneke, C., Washenfelder, R. A., Wennberg, P. O., X., Z. (2017). The Southeast Atmosphere Studies (SAS): Coordinated Investigation and Discovery to Answer Critical Questions About Fundamental Atmospheric Processes. Bull. Am. Met. Soc. In review.
  • Crenn, V., Sciare, J., Croteau, P. L., Verlhac, S., Fröhlich, R., Belis, C. A., Aas, W., Äijälä, M., Alastuey, A., Artiñano, B., Baisnée, D., Bonnaire, N., Bressi, M., Canagaratna, M., Canonaco, F., Carbone, C., Cavalli, F., Coz, E., Cubison, M. J., Esser-Gietl, J. K., Green, D. C., Gros, V., Heikkinen, L., Herrmann, H., Lunder, C., Minguillón, M. C., Močnik, G., O'Dowd, C. D., Ovadnevaite, J., Petit, J. E., Petralia, E., Poulain, L., Priestman, M., Riffault, V., Ripoll, A., Sarda-Estève, R., Slowik, J. G., Setyan, A., Wiedensohler, A., Baltensperger, U., Prévôt, A. S. H., Jayne, J. T., and Favez, O. (2015). ACTRIS ACSM intercomparison – Part 1: Reproducibility of Concentration and Fragment Results from 13 Individual Quadrupole Aerosol Chemical Speciation Monitors (Q-ACSM) and Consistency with Co-Located Instruments. Atmos. Meas. Tech., 8:5063–5087. DOI:10.5194/amt-8-5063-2015.
  • Day, D. A., Campuzano-Jost, P., Palm, B. B., Hu, W., Nault, B. A., Wooldridge, P. J., Cohen, R. C., Docherty, K. S., Huffman, J. A., and Jimenez, J. L. (in preparation). Evaluation of Methods for Quantification of Bulk Particle-Phase Organic Nitrates Using Real-Time Aerosol Mass Spectrometry.
  • DeCarlo, P. F., Kimmel, J. R., Trimborn, A., Northway, M. J., Jayne, J. T., Aiken, A. C., Gonin, M., Fuhrer, K., Horvath, T., Docherty, K. S., Worsnop, D. R., and Jimenez, J. L. (2006). Field-Deployable, High-Resolution, Time-of-Flight Aerosol Mass Spectrometer. Anal. Chem., 78:8281–8289. DOI:10.1021/Ac061249n.
  • DeCarlo, P. F., Dunlea, E. J., Kimmel, J. R., Aiken, A. C., Sueper, D., Crounse, J., Wennberg, P. O., Emmons, L., Shinozuka, Y., Clarke, A., Zhou, J., Tomlinson, J., Collins, D. R., Knapp, D., Weinheimer, A. J., Montzka, D. D., Campos, T., and Jimenez, J. L. (2008). Fast Airborne Aerosol Size and Chemistry Measurements Above Mexico City and Central Mexico During the MILAGRO Campaign. Atmos. Chem. Phys., 8:4027–4048.
  • de Sá, S. S., Palm, B. B., Campuzano-Jost, P., Day, D. A., Hu, W., Newburn, M. K., Brito, J., Liu, Y., Isaacman-VanWertz, G., Yee, L. D., Goldstein, A. H., Artaxo, P., Souza, R., Manzi, A., Jimenez, J. L., Alexander, M. L., and Martin, S. T. (2016). Mass Spectral Observations of Fine Aerosol Particles and Production of SOM at an Anthropogenically Influenced Site During GoAmazon2014 Wet Season. Atmos. Chem. Phys. Discuss., 1–58. DOI:10.5194/acp-2016-1020
  • Docherty, K. S., Jaoui, M., Corse, E., Jimenez, J. L., Offenberg, J. H., Lewandowski, M., and Kleindienst, T. E. (2012). Collection Efficiency of the Aerosol Mass Spectrometer for Chamber-Generated Secondary Organic Aerosols. Aerosol Sci. Tech., 47:294–309. DOI:10.1080/02786826.2012.752572.
  • Drewnick, F., Diesch, J. M., Faber, P., and Borrmann, S. (2015). Aerosol Mass Spectrometry: Particle–Vaporizer Interactions and Their Consequences for the Measurements. Atmos. Meas. Tech., 8:3811–3830. DOI:10.5194/amt-8-3811-2015.
  • Drewnick, F., Hings, S. S., DeCarlo, P., Jayne, J. T., Gonin, M., Fuhrer, K., Weimer, S., Jimenez, J. L., Demerjian, K. L., Borrmann, S., and Worsnop, D. R. (2005). A New Time-of-Flight Aerosol Mass Spectrometer (TOF-AMS) - Instrument Description and First Field Deployment. Aerosol Sci. Technol., 39:637–658. DOI:10.1080/02786820500182040.
  • Eatough, D. J., and Hansen, L. D. (1984). Carbonaceous Particles in the Atmosphere 1983 Bis-hydroxymethyl Sulfone: A Major Aerosol Product of Atmospheric Reactions of SO2(g). Sci. Total Environ., 36:319–328.
  • Farmer, D. K., Matsunaga, A., Docherty, K. S., Surratt, J. D., Seinfeld, J. H., Ziemann, P. J., and Jimenez, J. L. (2010). Response of an Aerosol Mass Spectrometer to Organonitrates and Organosulfates and Implications for Atmospheric Chemistry. Proc. Natl. Acad. Sci. USA, 107:6670–6675. DOI:10.1073/pnas.0912340107.
  • Friedel, R. A., Shultz, J. L., and Sharkey, A. G. (1959). Mass Spectrum of Nitric Acid. Anal. Chem., 31:1128–1128. DOI:10.1021/ac60150a615.
  • Fry, J. L., Draper, D. C., Zarzana, K. J., Campuzano-Jost, P., Day, D. A., Jimenez, J. L., Brown, S. S., Cohen, R. C., Kaser, L., Hansel, A., Cappellin, L., Karl, T., Hodzic Roux, A., Turnipseed, A., Cantrell, C., Lefer, B. L., and Grossberg, N. (2013). Observations of Gas- and Aerosol-Phase Organic Nitrates at BEACHON-RoMBAS 2011. Atmos. Chem. Phys., 13:8585–8605. DOI:10.5194/acp-13-8585-2013.
  • Fry, J. L., Kiendler-Scharr, A., Rollins, A. W., Brauers, T., Brown, S. S., Dorn, H. P., Dubé, W. P., Fuchs, H., Mensah, A., Rohrer, F., Tillmann, R., Wahner, A., Wooldridge, P. J., and Cohen, R. C. (2011). SOA From Limonene: Role of NO3 in Its Generation and Degradation. Atmos. Chem. Phys., 11:3879–3894. DOI:10.5194/acp-11-3879-2011.
  • Gilardoni, S., Massoli, P., Paglione, M., Giulianelli, L., Carbone, C., Rinaldi, M., Decesari, S., Sandrini, S., Costabile, F., Gobbi, G. P., Pietrogrande, M. C., Visentin, M., Scotto, F., Fuzzi, S., and Facchini, M. C. (2016). Direct Observation of Aqueous Secondary Organic Aerosol From Biomass-Burning Emissions. Proc. Natl. Acad. Sci., 113:10013–10018. DOI:10.1073/pnas.1602212113.
  • Guo, H., Xu, L., Bougiatioti, A., Cerully, K. M., Capps, S. L., Hite Jr, J. R., Carlton, A. G., Lee, S. H., Bergin, M. H., Ng, N. L., Nenes, A., and Weber, R. J. (2015). Fine-Particle Water and pH in the Southeastern United States. Atmos. Chem. Phys., 15:5211–5228. DOI:10.5194/acp-15-5211-2015.
  • Harkel, M. J. T. (1997). The Effects of Particle-size Distribution and Chloride Depletion of Sea-Salt Aerosols on Estimating Atmospheric Deposition at a Coastal Site. Atmos. Environ., 31:417–427.
  • Haynes, W. (2015). CRC Handbook of Chemistry and Physics. 96th ed. CRC Press, Boca Raton, FL.
  • Hettiyadura, A. P. S., Stone, E. A., Kundu, S., Baker, Z., Geddes, E., Richards, K., and Humphry, T. (2015). Determination of Atmospheric Organosulfates using HILIC Chromatography with MS Detection. Atmos. Meas. Tech., 8:2347–2358. DOI:10.5194/amt-8-2347-2015.
  • Hogrefe, O., Drewnick, F., Lala, G. G., Schwab, J. J., and Demerjian, K. L. (2004). Development, Operation and Applications of an Aerosol Generation, Calibration and Research Facility. Aerosol Sci. Technol., 38:196–214. DOI:10.1080/02786820390229516.
  • Hu, W., Palm, B. B., Day, D. A., Campuzano-Jost, P., Krechmer, J. E., Peng, Z., de Sá, S. S., Martin, S. T., Alexander, M. L., Baumann, K., Hacker, L., Kiendler-Scharr, A., Koss, A. R., de Gouw, J. A., Goldstein, A. H., Seco, R., Sjostedt, S. J., Park, J. H., Guenther, A. B., Kim, S., Canonaco, F., Prévôt, A. S. H., Brune, W. H., and Jimenez, J. L. (2016a). Volatility and Lifetime Against OH Heterogeneous Reaction of Ambient Isoprene-Epoxydiols-Derived Secondary Organic Aerosol (IEPOX-SOA). Atmos. Chem. Phys., 16:11563–11580. DOI:10.5194/acp-16-11563-2016.
  • Hu, W. W., Campuzano-Jost, P., Day, D. A., Croteau, P. L., Canagaratna, M. R., Jayne, J. T., Worsnop, D. R., and Jimenez, J. L. (2016b). Evaluation of the New Capture Vaporizer for Aerosol Mass Spectrometers (AMS) Through Laboratory Studies of Inorganic Species. Atmos. Meas. Tech. Discuss., 2016:1–55. DOI:10.5194/amt-2016-337.
  • Hu, W. W., Campuzano-Jost, P., Palm, B. B., Day, D. A., Ortega, A. M., Hayes, P. L., Krechmer, J. E., Chen, Q., Kuwata, M., Liu, Y. J., de Sá, S. S., McKinney, K., Martin, S. T., Hu, M., Budisulistiorini, S. H., Riva, M., Surratt, J. D., St. Clair, J. M., Isaacman-Van Wertz, G., Yee, L. D., Goldstein, A. H., Carbone, S., Brito, J., Artaxo, P., de Gouw, J. A., Koss, A., Wisthaler, A., Mikoviny, T., Karl, T., Kaser, L., Jud, W., Hansel, A., Docherty, K. S., Alexander, M. L., Robinson, N. H., Coe, H., Allan, J. D., Canagaratna, M. R., Paulot, F., and Jimenez, J. L. (2015). Characterization of a Real-time Tracer for Isoprene Epoxydiols-Derived Secondary Organic Aerosol (IEPOX-SOA) From Aerosol Mass Spectrometer Measurements. Atmos. Chem. Phys., 15:11807–11833. DOI:10.5194/acp-15-11807-2015.
  • Huang, D. D., Li, Y. J., Lee, B. P., and Chan, C. K. (2015). Analysis of Organic Sulfur Compounds in Atmospheric Aerosols at the HKUST Supersite in Hong Kong Using HR-ToF-AMS. Environ. Sci. Technol., 49:3672–3679. DOI:10.1021/es5056269.
  • Huffman, J. A., Jayne, J. T., Drewnick, F., Aiken, A. C., Onasch, T., Worsnop, D. R., and Jimenez, J. L. (2005). Design, Modeling, Optimization, and Experimental Tests of a Particle Beam Width Probe for the Aerodyne Aerosol Mass Spectrometer. Aerosol Sci. Technol., 39:1143–1163. DOI:10.1080/02786820500423782.
  • Jayne, J. T., Leard, D. C., Zhang, X. F., Davidovits, P., Smith, K. A., Kolb, C. E., and Worsnop, D. R. (2000). Development of an Aerosol Mass Spectrometer for Size and Composition Analysis of Submicron Particles. Aerosol Sci. Technol., 33:49–70.
  • Jayne, J. T., and Worsnop, D. R. (2016). Particle Capture Device. US Patent. US 20150040689 A1, Aerodyne Research, Inc.
  • Jimenez, J. L., Canagaratna, M. R., Donahue, N. M., Prevot, A. S. H., Zhang, Q., Kroll, J. H., DeCarlo, P. F., Allan, J. D., Coe, H., Ng, N. L., Aiken, A. C., Docherty, K. S., Ulbrich, I. M., Grieshop, A. P., Robinson, A. L., Duplissy, J., Smith, J. D., Wilson, K. R., Lanz, V. A., Hueglin, C., Sun, Y. L., Tian, J., Laaksonen, A., Raatikainen, T., Rautiainen, J., Vaattovaara, P., Ehn, M., Kulmala, M., Tomlinson, J. M., Collins, D. R., Cubison, M. J., Dunlea, E. J., Huffman, J. A., Onasch, T. B., Alfarra, M. R., Williams, P. I., Bower, K., Kondo, Y., Schneider, J., Drewnick, F., Borrmann, S., Weimer, S., Demerjian, K., Salcedo, D., Cottrell, L., Griffin, R., Takami, A., Miyoshi, T., Hatakeyama, S., Shimono, A., Sun, J. Y., Zhang, Y. M., Dzepina, K., Kimmel, J. R., Sueper, D., Jayne, J. T., Herndon, S. C., Trimborn, A. M., Williams, L. R., Wood, E. C., Middlebrook, A. M., Kolb, C. E., Baltensperger, U., and Worsnop, D. R. (2009). Evolution of Organic Aerosols in the Atmosphere. Science, 326:1525–1529. DOI:10.1126/science.1180353.
  • Jimenez, J. L., Canagaratna, M. R., Drewnick, F., Allan, J. D., Alfarra, M. R., Middlebrook, A. M., Slowik, J. G., Zhang, Q., Coe, H., Jayne, J. T., and Worsnop, D. R. (2016). Comment on “The Effects of Molecular Weight and Thermal Decomposition on the Sensitivity of a Thermal Desorption Aerosol Mass Spectrometer”. Aerosol Sci. Technol., 50:i–xv. DOI:10.1080/02786826.2016.1205728.
  • Jimenez, J. L., Jayne, J. T., Shi, Q., Kolb, C. E., Worsnop, D. R., Yourshaw, I., Seinfeld, J. H., Flagan, R. C., Zhang, X. F., Smith, K. A., Morris, J. W., and Davidovits, P. (2003). Ambient Aerosol Sampling Using the Aerodyne Aerosol Mass Spectrometer. J. Geophys. Res.-Atmos., 108:8425. DOI:10.1029/2001jd001213.
  • Kuwata, M., Zorn, S. R., and Martin, S. T. (2012). Using Elemental Ratios to Predict the Density of Organic Material Composed of Carbon, Hydrogen, and Oxygen. Environ. Sci. Technol., 46:787–794. DOI:10.1021/es202525q.
  • Lee, B. H., Mohr, C., Lopez-Hilfiker, F. D., Lutz, A., Hallquist, M., Lee, L., Romer, P., Cohen, R. C., Iyer, S., Kurtén, T., Hu, W., Day, D. A., Campuzano-Jost, P., Jimenez, J. L., Xu, L., Ng, N. L., Guo, H., Weber, R. J., Wild, R. J., Brown, S. S., Koss, A., de Gouw, J., Olson, K., Goldstein, A. H., Seco, R., Kim, S., McAvey, K., Shepson, P. B., Starn, T., Baumann, K., Edgerton, E. S., Liu, J., Shilling, J. E., Miller, D. O., Brune, W., Schobesberger, S., D'Ambro, E. L., and Thornton, J. A. (2016). Highly Functionalized Organic Nitrates in the Southeast United States: Contribution to Secondary Organic Aerosol and Reactive Nitrogen Budgets. Proc. Natl. Acad. Sci., 1516–1521. DOI:10.1073/pnas.1508108113.
  • Liao, J., Froyd, K. D., Murphy, D. M., Keutsch, F. N., Yu, G., Wennberg, P. O., St. Clair, J. M., Crounse, J. D., Wisthaler, A., Mikoviny, T., Jimenez, J. L., Campuzano Jost, P., Day, D. A., Hu, W., Ryerson, T. B., Pollack, I. B., Peischl, J., Anderson, B. E., Ziemba, L. D., Blake, D. R., Meinardi, S., and Diskin, G. (2015). Airborne Measurements of Organosulfates Over the Continental US. J. Geophys. Res.: Atmos., 120:2990–3005. DOI:10.1002/2014jd022378.
  • Linstrom, P. J., and Mallard, W. G. (2016). NIST Chemistry WebBook, NIST Standard Reference Database Number 69. Available at http://webbook.nist.gov/chemistry.
  • Matthew, B. M., Middlebrook, A. M., and Onasch, T. B. (2008). Collection Efficiencies in an Aerodyne Aerosol Mass Spectrometer as a Function of Particle Phase for Laboratory Generated Aerosols. Aerosol Sci. Technol., 42:884–898. DOI:10.1080/02786820802356797.
  • Middlebrook, A. M., Bahreini, R., Jimenez, J. L., and Canagaratna, M. R. (2012). Evaluation of Composition-Dependent Collection Efficiencies for the Aerodyne Aerosol Mass Spectrometer using Field Data. Aerosol Sci. Technol., 46:258–271. DOI:10.1080/02786826.2011.620041.
  • Milic, A., Mallet, M. D., Cravigan, L. T., Alroe, J., Ristovski, Z. D., Selleck, P., Lawson, S. J., Ward, J., Desservettaz, M. J., Paton-Walsh, C., Williams, L. R., Keywood, M. D., and Miljevic, B. (2016). Aging of Aerosols Emitted from Biomass Burning in Northern Australia. Atmos. Chem. Phys. Discuss., 2016:1–24. DOI:10.5194/acp-2016-730.
  • Ng, N. L., Jayne, J. T., Herndon, S. C., Trimborn, A., Canagaratna, M. R., Croteau, P. L., Onasch, T. B., Sueper, D., Worsnop, D. R., Zhang, Q., and Sun, Y. L. (2011). An Aerosol Chemical Speciation Monitor (ACSM) for Routine Monitoring of the Composition and Mass Concentrations of Ambient Aerosol. Aerosol Sci. Technol., 45:780–794. DOI:10.1080/02786826.2011.560211.
  • Palm, B. B., Campuzano-Jost, P., Day, D. A., Ortega, A. M., Fry, J. L., Brown, S. S., Zarzana, K., Dube, W., Wagner, N., Draper, D., Kaser, L., Jud, W., Karl, T., Hansel, A., and Jimenez, J. L. (2017). Secondary Organic Aerosol Formation From in situ OH, O3, and NO3 Oxidation of Ambient Air in an Oxidation Flow Reactor. Atmos. Chem. Phys. Discuss., 2017:1–46. DOI:10.5194/acp-2016-1080.
  • Peck, J., Gonzalez, L. A., Williams, L. R., Xu, W., Croteau, P. L., Timko, M. T., Jayne, J. T., Worsnop, D. R., Miake-Lye, R. C., and Smith, K. A. (2016). Development of an Aerosol Mass Spectrometer Lens System for PM2.5. Aerosol Sci. Technol., 50:781–789. DOI:10.1080/02786826.2016.1190444.
  • Pieber, S. M., El Haddad, I., Slowik, J. G., Canagaratna, M. R., Jayne, J. T., Platt, S. M., Bozzetti, C., Daellenbach, K. R., Fröhlich, R., Vlachou, A., Klein, F., Dommen, J., Miljevic, B., Jiménez, J. L., Worsnop, D. R., Baltensperger, U., and Prévôt, A. S. H. (2016). Inorganic Salt Interference on CO2+ in Aerodyne AMS and ACSM Organic Aerosol Composition Studies. Environ. Sci. Technol., 50: 10494–10503. DOI:10.1021/acs.est.6b01035
  • Quinn, P. K., Bates, T. S., Coffman, D., Onasch, T. B., Worsnop, D., Baynard, T., de Gouw, J. A., Goldan, P. D., Kuster, W. C., Williams, E., Roberts, J. M., Lerner, B., Stohl, A., Pettersson, A., and Lovejoy, E. R. (2006). Impacts of Sources and Aging on Submicrometer Aerosol Properties in the Marine Boundary Layer Across the Gulf of Maine. J. Geophys. Res.-Atmos., 111:D23S36. DOI:10.1029/2006JD007582.
  • Riva, M., Budisulistiorini, S. H., Zhang, Z., Gold, A., and Surratt, J. D. (2016). Chemical Characterization of Secondary Organic Aerosol Constituents from Isoprene Ozonolysis in the Presence of Acidic Aerosol. Atmos. Environ., 130:5–13.
  • Robinson, E. S., Onasch, T. B., Worsnop, D., and Donahue, N. M. (2016). Collection Efficiency of a-Pinene Secondary Organic Aerosol Particles Explored via Light Scattering Single Particle Aerosol Mass Spectrometry. Atmos. Meas. Tech. Discuss., 2016:1–29. DOI:10.5194/amt-2016-271.
  • Rollins, A. W., Kiendler-Scharr, A., Fry, J. L., Brauers, T., Brown, S. S., Dorn, H. P., Dubé, W. P., Fuchs, H., Mensah, A., Mentel, T. F., Rohrer, F., Tillmann, R., Wegener, R., Wooldridge, P. J., and Cohen, R. C. (2009). Isoprene Oxidation by Nitrate Radical: Alkyl Nitrate and Secondary Organic Aerosol Yields. Atmos. Chem. Phys., 9:6685–6703. DOI:10.5194/acp-9-6685-2009.
  • Seinfeld, J. H., and Pandis, S. N. (1998). Atmospheric Chemistry and Physics: From Air Pollution to Climate Change. John Wiley, New York.
  • Xu, L., Suresh, S., Guo, H., Weber, R. J., and Ng, N. L. (2015). Aerosol Characterization Over the Southeastern United States Using High-Resolution Aerosol Mass Spectrometry: Spatial and Seasonal Variation of Aerosol Composition and Sources with a Focus on Organic Nitrates. Atmos. Chem. Phys., 15:7307–7336. DOI:10.5194/acp-15-7307-2015.
  • Xu, W., Croteau, P., Williams, L., Canagaratna, M., Onasch, T., Cross, E., Zhang, X., Robinson, W., Worsnop, D., and Jayne, J. (2017). Laboratory Characterization of an Aerosol Chemical Speciation Monitor with PM2.5 Measurement Capability. Aerosol Sci. Technol., 51:69–83. 10.1080/02786826.2016.1241859.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.