Measurement of Emissions from Air Pollution Sources. 3. C1−C29 Organic Compounds from Fireplace Combustion of Wood
Top Cited Papers
- 24 March 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Environmental Science & Technology
- Vol. 35 (9) , 1716-1728
- https://doi.org/10.1021/es001331e
Abstract
Organic compound emission rates for volatile organic compounds (VOC), gas-phase semivolatile organic compounds, and particle-phase organic compounds are measured from residential fireplace combustion of wood. Firewood from a conifer tree (pine) and from two deciduous trees (oak and eucalyptus) is burned to determine organic compound emissions profiles for each wood type including the distribution of the alkanes, alkenes, aromatics, polycyclic aromatic hydrocarbons (PAH), phenol and substituted phenols, guaiacol and substituted guaiacols, syringol and substituted syringols, carbonyls, alkanoic acids, resin acids, and levoglucosan. Levoglucosan is the major constituent in the fine particulate emissions from all three wood types, contributing 18−30% of the fine particulate organic compound emissions. Guaiacol (2-methoxyphenol), and guaiacols with additional substituents at position 4 on the molecule, and resin acids are emitted in significant quantities from pine wood combustion. Syringol (2,6-dimethoxyphenol) and syringols with additional substituents at position 4 on the molecule are emitted in large amounts from oak and eucalyptus firewood combustion, but these compounds are not detected in the emissions from pine wood combustion. Syringol and most of the substituted syringols are found to be semivolatile compounds that are present in both the gas and particle phases, but two substituted syringols that have not been previously quantified in wood smoke emissions, propionylsyringol and butyrylsyringol, are found exclusively in the particle phase and can be used to help trace hardwood smoke particles in the atmosphere. Benzene, ethene, and acetylene are often used as tracers for motor vehicle exhaust in the urban atmosphere. The contribution of wood smoke to the ambient concentrations of benzene, ethene, and acetylene could lead to an overestimate of the contribution of motor vehicle tailpipe exhaust to atmospheric VOC concentrations.Keywords
This publication has 16 references indexed in Scilit:
- Sources of Fine Organic Aerosol. 9. Pine, Oak, and Synthetic Log Combustion in Residential FireplacesEnvironmental Science & Technology, 1998
- Air Quality Model Evaluation Data for Organics. 4. C2−C36 Non-Aromatic HydrocarbonsEnvironmental Science & Technology, 1997
- Source apportionment of airborne particulate matter using organic compounds as tracersAtmospheric Environment, 1996
- Elemental Carbon-Based Method for Monitoring Occupational Exposures to Particulate Diesel ExhaustAerosol Science and Technology, 1996
- Organic, elemental, and isotopic tracers of air pollution sources in Albuquerque, NMAtmospheric Environment, 1994
- Predicting the night-time NO3 radical reactivity in the troposphereAtmospheric Environment. Part A. General Topics, 1990
- Collection and quantitation of methoxylated phenol tracers for atmospheric pollution from residential wood stovesEnvironmental Science & Technology, 1989
- Identification of methoxylated phenols as candidate tracers for atmospheric wood smoke pollutionEnvironmental Science & Technology, 1988
- Characterization and source apportionment of wintertime aerosol in a wood-burning communityAtmospheric Environment (1967), 1985
- Visibility-reducing species in the denver “brown cloud”—II. Sources and temporal patternsAtmospheric Environment (1967), 1981