Articles | Volume 12, issue 24
https://doi.org/10.5194/acp-12-12277-2012
© Author(s) 2012. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/acp-12-12277-2012
© Author(s) 2012. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Gaseous VOCs rapidly modify particulate matter and its biological effects – Part 1: Simple VOCs and model PM
S. Ebersviller
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
K. Lichtveld
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
K. G. Sexton
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
J. Zavala
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
Y.-H. Lin
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
I. Jaspers
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
Center for Environmental Medicine and Lung Biology, Human Studies Facility, The University of North Carolina at Chapel Hill, USA
H. E. Jeffries
Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, USA
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- Alkali Metals Modified Activated Carbon for Enhanced Methanol and Acetone Selective Adsorption: A Theoretical Study X. Ma et al. 10.2139/ssrn.4102526
- Temperature dependence of the gas-particle partitioning of selected VOCs J. Ahn et al. 10.1039/D1EM00176K
- Partitioning of 1,2-dichlorobenzene onto organic and inorganic aerosols J. Ahn et al. 10.1071/EN21016
- How do built environments measured at two scales influence PM2.5 concentrations? C. Lee 10.1016/j.trd.2021.103014
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- Secondary organic aerosol from chlorine-initiated oxidation of isoprene D. Wang & L. Ruiz 10.5194/acp-17-13491-2017
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- New Directions: Questions surrounding suspended particle mass used as a surrogate for air quality and for regulatory control of ambient urban air pollution J. Hoare 10.1016/j.atmosenv.2014.04.004
- Revealing the mechanism of adsorption and separation of acetone/methanol by porous carbon via experimental and theoretical calculations W. Xu et al. 10.1016/j.cej.2023.145565
- Evaluation of an Air Quality Health Index for Predicting the Mutagenicity of Simulated Atmospheres J. Zavala et al. 10.1021/acs.est.8b00613
- Structural Characterization of Lactone-Containing MW 212 Organosulfates Originating from Isoprene Oxidation in Ambient Fine Aerosol P. Wach et al. 10.1021/acs.est.9b06190
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- A hybrid prediction model for PM2.5 mass and components using a chemical transport model and land use regression Q. Di et al. 10.1016/j.atmosenv.2016.02.002
- Oxidative potential of gas phase combustion emissions - An underestimated and potentially harmful component of air pollution from combustion processes S. Stevanovic et al. 10.1016/j.atmosenv.2017.03.041
- Alkali metals modified porous carbon for enhanced methanol and acetone selective adsorption: A theoretical study M. Fang et al. 10.1016/j.apsusc.2022.154271
- From the Field to the Laboratory: Air Pollutant-Induced Genomic Effects in Lung Cells W. Vizuete et al. 10.4137/EHI.S15656
- Predicting Daily Urban Fine Particulate Matter Concentrations Using a Random Forest Model C. Brokamp et al. 10.1021/acs.est.7b05381
- Assessment of biological responses of EpiAirway 3-D cell constructs versus A549 cells for determining toxicity of ambient air pollution J. Zavala et al. 10.3109/08958378.2016.1157227
- Partitioning of volatile organic compounds to aerosols: A review G. Rao & E. Vejerano 10.1016/j.chemosphere.2018.08.073
- The Gillings Sampler – An electrostatic air sampler as an alternative method for aerosol in vitro exposure studies J. Zavala et al. 10.1016/j.cbi.2014.06.026
- Application of chemical vapor generation systems to deliver constant gas concentrations for in vitro exposure to volatile organic compounds Y. Lin et al. 10.1039/C4EM00465E
- Epoxide as a precursor to secondary organic aerosol formation from isoprene photooxidation in the presence of nitrogen oxides Y. Lin et al. 10.1073/pnas.1221150110
- Assessing the oxidative potential of isoprene-derived epoxides and secondary organic aerosol A. Kramer et al. 10.1016/j.atmosenv.2015.10.018
- Overview of the Benzene and Other Toxics Exposure (BEE-TEX) Field Study E. Olaguer 10.4137/EHI.S15654
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- Gaseous VOCs rapidly modify particulate matter and its biological effects – Part 2: Complex urban VOCs and model PM S. Ebersviller et al. 10.5194/acp-12-12293-2012
- A comparative analysis of chemical components and cell toxicity properties of solid and semi-volatile PM from diesel and biodiesel blend N. Gali et al. 10.1016/j.jaerosci.2017.06.005
- Particulate Matter Toxicity Is Nrf2 and Mitochondria Dependent: The Roles of Metals and Polycyclic Aromatic Hydrocarbons M. Pardo et al. 10.1021/acs.chemrestox.0c00007
- Consumer exposures to laser printer-emitted engineered nanoparticles: A case study of life-cycle implications from nano-enabled products S. Pirela et al. 10.3109/17435390.2014.976602
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- Gaseous VOCs rapidly modify particulate matter and its biological effects – Part 1: Simple VOCs and model PM S. Ebersviller et al. 10.5194/acp-12-12277-2012
- Chemical characterization and in vitro toxicity of diesel exhaust particulate matter generated under varying conditions J. Fox et al. 10.1007/s11869-014-0301-8
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