Publication: Mechanism of the hydroxyl radical oxidation of methacryloyl peroxynitrate (MPAN) and its pathway toward secondary organic aerosol formation in the atmosphere

Publication - Mechanism of the hydroxyl radical oxidation of methacryloyl peroxynitrate (MPAN) and its pathway toward secondary organic aerosol formation in the atmosphere

Title: Mechanism of the hydroxyl radical oxidation of methacryloyl peroxynitrate (MPAN) and its pathway toward secondary organic aerosol formation in the atmosphere
DOI: 10.1039/C5CP02001H
Publication Year: 2015
Author list: Tran B Nguyen, Kelvin H Bates, John D Crounse, Rebecca H Schwantes, Xuan Zhang, Henrik G Kjaergaard, Jason D Surratt, Peng Lin, Alexander Laskin, John H Seinfeld, Paul O Wennberg
Journal Short Name: PCCP
Publisher: RSC

Abstract
Methacryloyl peroxynitrate (MPAN), the acyl peroxynitrate of methacrolein, has been suggested to be an important secondary organic aerosol (SOA) precursor from isoprene oxidation. Yet, the mechanism by which MPAN produces SOA through reaction with the hydroxyl radical (OH) is unclear. We systematically evaluate three proposed mechanisms in controlled chamber experiments and provide the first experimental support for the theoretically-predicted lactone formation pathway from the MPAN + OH reaction, producing hydroxymethyl-methyl-α-lactone (HMML). The decomposition of the MPAN–OH adduct yields HMML + NO3 (∼75%) and hydroxyacetone + CO + NO3 (∼25%), out-competing its reaction with atmospheric oxygen. The production of other proposed SOA precursors, e.g., methacrylic acid epoxide (MAE), from MPAN and methacrolein are negligible (<2%). Furthermore, we show that the beta-alkenyl moiety of MPAN is critical for lactone formation. Alkyl radicals formed cold via H-abstraction by OH do not decompose to HMML, even if they are structurally identical to the MPAN–OH adduct. The SOA formation from HMML, from polyaddition of the lactone to organic compounds at the particle interface or in the condensed phase, is close to unity under dry conditions. However, the SOA yield is sensitive to particle liquid water and solvated ions. In hydrated inorganic particles, HMML reacts primarily with H2O to produce the monomeric 2-methylglyceric acid (2MGA) or with aqueous sulfate and nitrate to produce the associated organosulfate and organonitrate, respectively. 2MGA, a tracer for isoprene SOA, is semivolatile and its accommodation in aerosol water decreases with decreasing pH. Conditions that enhance the production of neutral 2MGA suppress SOA mass from the HMML channel. Considering the liquid water content and pH ranges of ambient particles, 2MGA will exist largely as a gaseous compound in some parts of the atmosphere.

Additional Notes



Experiments (14)

ID Name Start date Experiment Category Reaction Type Reactant(s) Oxidant Name Temperature Humidity Type of Seed RO2 Main Fate Data Sets (count) Actions
609 Caltech Atmospheric Chamber_20140722_Methacrylolyl peroxynitrate(MPAN)/ALPHA-PINENE/hydrogen peroxide_Hydroxyl radical_No Seed_Dry 2014-07-22 Gas phase chemical reaction, Aerosol formation Photooxidation Methacrylolyl peroxynitrate(MPAN), ALPHA-PINENE, hydrogen peroxide Hydroxyl radical 15 4 HO2 4 Download
610 Caltech Atmospheric Chamber_20140724_Methacrylolyl peroxynitrate(MPAN)/ALPHA-PINENE/hydrogen peroxide/Methacrylic acid epoxide (MAE)_Hydroxyl radical_No Seed_Dry 2014-07-24 Gas phase chemical reaction, Aerosol formation Photooxidation Methacrylolyl peroxynitrate(MPAN), ALPHA-PINENE, hydrogen peroxide, Methacrylic acid epoxide (MAE) Hydroxyl radical 15 4 HO2 4 Download
611 Caltech Atmospheric Chamber_20140726_Methacrylolyl peroxynitrate(MPAN)/hydrogen peroxide_Hydroxyl radical_No Seed_Dry 2014-07-26 Gas phase chemical reaction, Aerosol formation Photooxidation Methacrylolyl peroxynitrate(MPAN), hydrogen peroxide Hydroxyl radical 15 4 HO2 4 Download
612 Caltech Atmospheric Chamber_20140802_Methacrylolyl peroxynitrate(MPAN)/ALPHA-PINENE/hydrogen peroxide/Methacrylic acid epoxide (MAE)_Hydroxyl radical_No Seed_Dry 2014-08-02 Gas phase chemical reaction, Aerosol formation Photooxidation Methacrylolyl peroxynitrate(MPAN), ALPHA-PINENE, hydrogen peroxide, Methacrylic acid epoxide (MAE) Hydroxyl radical 15 4 HO2 5 Download
613 Caltech Atmospheric Chamber_20140729_METHACROLEIN/hydrogen peroxide/10102-44-0_Hydroxyl radical_No Seed_Dry 2014-07-29 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, hydrogen peroxide, 10102-44-0 Hydroxyl radical 15 4 NO2 5 Download
614 Caltech Atmospheric Chamber_20140731_METHACROLEIN/Methyl nitrite/10102-44-0_Hydroxyl radical_No Seed_Dry 2014-07-31 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, Methyl nitrite, 10102-44-0 Hydroxyl radical 25 4 NO2 5 Download
615 Caltech Atmospheric Chamber_20140805_Tridecane/hydrogen peroxide_Hydroxyl radical_No Seed_Dry 2014-08-05 Gas phase chemical reaction, Aerosol formation Photooxidation Tridecane, hydrogen peroxide Hydroxyl radical 15 4 HO2 4 Download
616 Caltech Atmospheric Chamber_20140807_Methacrylolyl peroxynitrate(MPAN)/hydrogen peroxide_Hydroxyl radical_No Seed_Dry 2014-08-07 Gas phase chemical reaction, Aerosol formation Photooxidation Methacrylolyl peroxynitrate(MPAN), hydrogen peroxide Hydroxyl radical 15 4 HO2 5 Download
617 Caltech Atmospheric Chamber_20140812_METHACROLEIN/Methyl nitrite/10102-44-0_Hydroxyl radical_No Seed_Dry 2014-08-12 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, Methyl nitrite, 10102-44-0 Hydroxyl radical 15 4 NO2 5 Download
618 Caltech Atmospheric Chamber_20140814_ISOBUTYRALDEHYDE/Methyl nitrite/10102-44-0_Hydroxyl radical_No Seed_Dry 2014-08-14 Gas phase chemical reaction, Aerosol formation Photooxidation ISOBUTYRALDEHYDE, Methyl nitrite, 10102-44-0 Hydroxyl radical 26 4 NO2 5 Download
619 Caltech Atmospheric Chamber_20140816_2-Methyl-3-buten-1-ol/Methyl nitrite/10102-44-0/OZONE_Hydroxyl radical_No Seed_Dry 2014-08-16 Gas phase chemical reaction, Aerosol formation Photooxidation 2-Methyl-3-buten-1-ol, Methyl nitrite, 10102-44-0, OZONE Hydroxyl radical 25 4 NO2 4 Download
620 Caltech Atmospheric Chamber_20140819_METHACROLEIN/Methyl nitrite/10102-44-0_Hydroxyl radical_No Seed_Dry 2014-08-19 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, Methyl nitrite, 10102-44-0 Hydroxyl radical 25 4 NO2 5 Download
621 Caltech Atmospheric Chamber_20150130_METHACROLEIN/Methyl nitrite/10102-44-0_Hydroxyl radical_Ammonium sulfate_RH40% 2015-01-30 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, Methyl nitrite, 10102-44-0 Hydroxyl radical 25 40 Ammonium sulfate NO2 5 Download
622 Caltech Atmospheric Chamber_20150208_METHACROLEIN/Methyl nitrite/10102-44-0_Hydroxyl radical_Ammonium sulfate_RH85% 2015-02-08 Gas phase chemical reaction, Aerosol formation Photooxidation METHACROLEIN, Methyl nitrite, 10102-44-0 Hydroxyl radical 25 85 Ammonium sulfate NO2 4 Download