Molecular transformations of phenolic SOA during photochemical aging in the aqueous phase: competition among oligomerization, functionalization, and fragmentation

被引:109
作者
Yu, Lu [1 ]
Smith, Jeremy [2 ]
Laskin, Alexander [3 ]
George, Katheryn M. [4 ]
Anastasio, Cort [2 ]
Laskin, Julia [5 ]
Dillner, Ann M. [4 ]
Zhang, Qi [1 ]
机构
[1] Univ Calif Davis, Dept Environm Toxicol, 1 Shields Ave, Davis, CA 95616 USA
[2] Univ Calif Davis, Dept Land Air & Water Resources, 1 Shields Ave, Davis, CA 95616 USA
[3] Pacific NW Natl Lab, Environm Mol Sci Lab, Richland, WA 99352 USA
[4] Univ Calif Davis, Crocker Nucl Lab, 1 Shields Ave, Davis, CA 95616 USA
[5] Pacific NW Natl Lab, Div Phys Sci, Richland, WA 99352 USA
基金
美国国家科学基金会;
关键词
SECONDARY ORGANIC AEROSOL; IONIZATION-MASS-SPECTROMETRY; TRIPLET EXCITED-STATE; PURE COMPONENT PROPERTIES; ATMOSPHERIC BROWN CARBON; PART; CHEMISTRY; EVOLUTION; CLOUD; WOOD;
D O I
10.5194/acp-16-4511-2016
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Organic aerosol is formed and transformed in atmospheric aqueous phases (e.g., cloud and fog droplets and deliquesced airborne particles containing small amounts of water) through a multitude of chemical reactions. Understanding these reactions is important for a predictive understanding of atmospheric aging of aerosols and their impacts on climate, air quality, and human health. In this study, we investigate the chemical evolution of aqueous secondary organic aerosol (aqSOA) formed during reactions of phenolic compounds with two oxidants - the triplet excited state of an aromatic carbonyl (C-3(a-)) and hydroxyl radical ((OH)-O-< mo > aEuro cent </mo >). Changes in the molecular composition of aqSOA as a function of aging time are characterized using an offline nanospray desorption electrospray ionization mass spectrometer (nano-DESI MS) whereas the real-time evolution of SOA mass, elemental ratios, and average carbon oxidation state (OSC) are monitored using an online aerosol mass spectrometer (AMS). Our results indicate that oligomerization is an important aqueous reaction pathway for phenols, especially during the initial stage of photooxidation equivalent to similar to aEuro parts per thousand aEuro-2aEuro-h irradiation under midday winter solstice sunlight in Northern California. At later reaction times functionalization (i.e., adding polar oxygenated functional groups to the molecule) and fragmentation (i.e., breaking of covalent bonds) become more important processes, forming a large variety of functionalized aromatic and open-ring products with higher OSC values. Fragmentation reactions eventually dominate the photochemical evolution of phenolic aqSOA, forming a large number of highly oxygenated ring-opening molecules with carbon numbers (n(C)) below 6. The average n(C) of phenolic aqSOA decreases while average OSC increases over the course of photochemical aging. In addition, the saturation vapor pressures (Ca-) of dozens of the most abundant phenolic aqSOA molecules are estimated. A wide range of Ca- values is observed, varying from < aEuro-10(-20)aEuro-A mu gaEuro-m(-3) for functionalized phenolic oligomers to > aEuro-10aEuro-A mu gaEuro-m(-3) for small open-ring species. The detection of abundant extremely low-volatile organic compounds (ELVOC) indicates that aqueous reactions of phenolic compounds are likely an important source of ELVOC in the atmosphere.
引用
收藏
页码:4511 / 4527
页数:17
相关论文
共 47 条
[1]   O/C and OM/OC ratios of primary, secondary, and ambient organic aerosols with high-resolution time-of-flight aerosol mass spectrometry [J].
Aiken, Allison C. ;
Decarlo, Peter F. ;
Kroll, Jesse H. ;
Worsnop, Douglas R. ;
Huffman, J. Alex ;
Docherty, Kenneth S. ;
Ulbrich, Ingrid M. ;
Mohr, Claudia ;
Kimmel, Joel R. ;
Sueper, Donna ;
Sun, Yele ;
Zhang, Qi ;
Trimborn, Achim ;
Northway, Megan ;
Ziemann, Paul J. ;
Canagaratna, Manjula R. ;
Onasch, Timothy B. ;
Alfarra, M. Rami ;
Prevot, Andre S. H. ;
Dommen, Josef ;
Duplissy, Jonathan ;
Metzger, Axel ;
Baltensperger, Urs ;
Jimenez, Jose L. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2008, 42 (12) :4478-4485
[2]   Molecular characterization of water soluble organic nitrogen in marine rainwater by ultra-high resolution electrospray ionization mass spectrometry [J].
Altieri, K. E. ;
Hastings, M. G. ;
Peters, A. J. ;
Sigman, D. M. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2012, 12 (07) :3557-3571
[3]   Aromatic carbonyl compounds as aqueous-phase photochemical sources of hydrogen peroxide in acidic sulfate aerosols, fogs, and clouds .1. Non-phenolic methoxybenzaldehydes and methoxyacetophenones with reductants (phenols) [J].
Anastasio, C ;
Faust, BC ;
Rao, CJ .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1997, 31 (01) :218-232
[4]   Black carbon or brown carbon?: The nature of light-absorbing carbonaceous aerosols [J].
Andreae, M. O. ;
Gelencser, A. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2006, 6 :3131-3148
[5]   Applications of High-Resolution Electrospray Ionization Mass Spectrometry to Measurements of Average Oxygen to Carbon Ratios in Secondary Organic Aerosols [J].
Bateman, Adam P. ;
Laskin, Julia ;
Laskin, Alexander ;
Nizkorodov, Sergey A. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (15) :8315-8324
[6]   Secondary organic aerosol formation in cloud and fog droplets: a literature evaluation of plausibility [J].
Blando, JD ;
Turpin, BJ .
ATMOSPHERIC ENVIRONMENT, 2000, 34 (10) :1623-1632
[7]   Characterization of colored products formed during irradiation of aqueous solutions containing H2O2 and phenolic compounds [J].
Chang, Jonathan L. ;
Thompson, Jonathan E. .
ATMOSPHERIC ENVIRONMENT, 2010, 44 (04) :541-551
[8]  
Collett JL, 1999, ATMOS ENVIRON, V33, P129, DOI 10.1016/S1352-2310(98)00136-8
[9]   A two-dimensional volatility basis set - Part 2: Diagnostics of organic-aerosol evolution [J].
Donahue, N. M. ;
Kroll, J. H. ;
Pandis, S. N. ;
Robinson, A. L. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2012, 12 (02) :615-634
[10]   Secondary organic aerosol formation in cloud droplets and aqueous particles (aqSOA): a review of laboratory, field and model studies [J].
Ervens, B. ;
Turpin, B. J. ;
Weber, R. J. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2011, 11 (21) :11069-11102