Proton-transfer-reaction mass spectrometry: applications in atmospheric sciences

B Yuan, AR Koss, C Warneke, M Coggon… - Chemical …, 2017 - ACS Publications
Proton-transfer-reaction mass spectrometry (PTR-MS) has been widely used to study the
emissions, distributions, and chemical evolution of volatile organic compounds (VOCs) in …

Review of urban secondary organic aerosol formation from gasoline and diesel motor vehicle emissions

DR Gentner, SH Jathar, TD Gordon… - … science & technology, 2017 - ACS Publications
Secondary organic aerosol (SOA) is formed from the atmospheric oxidation of gas-phase
organic compounds leading to the formation of particle mass. Gasoline-and diesel-powered …

Volatile chemical products emerging as largest petrochemical source of urban organic emissions

BC McDonald, JA De Gouw, JB Gilman, SH Jathar… - Science, 2018 - science.org
A gap in emission inventories of urban volatile organic compound (VOC) sources, which
contribute to regional ozone and aerosol burdens, has increased as transportation …

[HTML][HTML] Persistent growth of anthropogenic non-methane volatile organic compound (NMVOC) emissions in China during 1990–2017: drivers, speciation and ozone …

M Li, Q Zhang, B Zheng, D Tong, Y Lei… - Atmospheric …, 2019 - acp.copernicus.org
Non-methane volatile organic compounds (NMVOCs) are important ozone and secondary
organic aerosol precursors and play important roles in tropospheric chemistry. In this work …

Asphalt-related emissions are a major missing nontraditional source of secondary organic aerosol precursors

P Khare, J Machesky, R Soto, M He, AA Presto… - Science …, 2020 - science.org
Asphalt-based materials are abundant and a major nontraditional source of reactive organic
compounds in urban areas, but their emissions are essentially absent from inventories. At …

[HTML][HTML] Full-volatility emission framework corrects missing and underestimated secondary organic aerosol sources

X Chang, B Zhao, H Zheng, S Wang, S Cai, F Guo… - One Earth, 2022 - cell.com
Organic aerosol (OA) is the largest and most complicated component of aerosols that greatly
affect human health and global climate. However, widely used models cannot reproduce …

[HTML][HTML] Secondary organic aerosols from anthropogenic volatile organic compounds contribute substantially to air pollution mortality

BA Nault, DS Jo, BC McDonald… - Atmospheric …, 2021 - acp.copernicus.org
Anthropogenic secondary organic aerosol (ASOA), formed from anthropogenic emissions of
organic compounds, constitutes a substantial fraction of the mass of submicron aerosol in …

Criteria pollutant impacts of volatile chemical products informed by near-field modelling

M Qin, BN Murphy, KK Isaacs, BC McDonald, Q Lu… - Nature …, 2021 - nature.com
Consumer, industrial and commercial product use is a source of exposure to potentially
hazardous chemicals. In addition, cleaning agents, personal care products, coatings and …

VOC characteristics, emissions and contributions to SOA formation during hazy episodes

J Sun, F Wu, B Hu, G Tang, J Zhang, Y Wang - Atmospheric Environment, 2016 - Elsevier
Volatile organic compounds (VOC) are important precursors of secondary organic aerosols
(SOA). The pollution processes in Beijing were investigated from 18th October to 6th …

[HTML][HTML] Modeling secondary organic aerosol formation from volatile chemical products

EA Pennington, KM Seltzer, BN Murphy… - Atmospheric …, 2021 - acp.copernicus.org
Volatile chemical products (VCPs) are commonly used consumer and industrial items that
are an important source of anthropogenic emissions. Organic compounds from VCPs …