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Emission factors of gaseous carbonaceous species from residential combustion of coal and crop residue briquettes 被引量:17

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摘要 Experiments were performed to measure the emission factors (EFs) of gaseous carbonaceous species, such as CO2, CO, CH4, and non-methane volatile organic compounds (NMVOCs), from the combustion of five types of coal of varying organic maturity and two types of biomass briquettes under residential burning conditions. Samples were collected in stainless steel canisters and 2,4- dinitrophenylhydrazine (DNPH) cartridges and were analyzed by GC FID/MS and HPLC, respectively. The EFs from crop residue briquette burning were generally higher than those from coals, with the exception of CO2. The dominant NMVOC species identified in coal smoke were carbonyls (41.7%), followed by C2 unsaturated hydrocarbons (29.1%) and aromatics (12.1%), while C2 unsaturated hydrocarbons were the dominant species (68.9%) emitted from the combustion of crop residue briquettes, followed by aromatics (14.4%). A comparison of burning normal crop residues in stoves and the open field indicated that briquettes emitted a larger proportion of ethene and acetylene. Both combustion efficiency and coal organic maturity had a significant impact on NMVOC EFs from burning coal: NMVOC emissions increased with increasing coal organic maturity but decreased as the combustion efficiency improved. Emissions from the combustion of crop residue briquettes from stoves occurred mainly during the smoldering process, with low combustion efficiency. Therefore, an improved stove design to allow higher combustion efficiency would be beneficial for reducing emissions of carbonaceous air pollutants.
出处 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2013年第1期66-76,共11页 环境科学与工程前沿(英文)
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  • 1Crutzen P J, Andreae M O. Biomass burning in the tropics: impact on atmospheric chemistry and biogeochemical cycles. Science, 1990, 250(4988): 1669-1678.
  • 2IPCC. Summary for Policymakers. In: Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, prepared by Intergovernmental Panel on Climate Change (IPCC). Geneva, 2007.
  • 3Andreae M O, Merlet P. Emission of trace gases and aerosols from biomass burning. Global Biogeochemical Cycles, 2001, 15(4): 955-966.
  • 4Saamak C F. A shift from natural to human-driven fire regime: implications for trace-gas emissions. Holocene, 2001, 11(3): 373-375.
  • 5Fullerton D G, Bruce N, Gordon S B. Indoor air pollution from biomass fuel smoke is a major health concern in the developing world. Transactions of the Royal Society of Tropical Medicine and Hygiene, 2008, 102(9): 843-851.
  • 6de Gouw J, Cooper O, Wameke C, Hudson P, Fehsenfeld F, Holloway J, Hubler G, Nicks D, Nowak J, Parrish D. Chemical composition of air masses transported from Asia to the US West Coast during ITCT 2K2: Fossil fuel combustion versus biomass-burning signatures. Journal of Geophysical Research, 2004, 109 (D23): D23S20.
  • 7Ho K F, Lee S C, Ho W K, Blake D R, Cheng Y, Li Y S, Ho S S H, Fung K, Louie P K K, Park D. Vehicular emission of volatile organic compounds (VOCs) from a tunnel study in Hong Kong. Atmospheric Chemistry and Physics, 2009, 9(19): 7491-7504.
  • 8Li X H, Wang S X, Duan L, Hao J M. Characterization of nonmethane hydrocarbons emitted from open burning of wheat straw and com stover in China. Environmental Research Letters, 2009, 4(4): 044015.
  • 9Schauer J, Kleeman M, Cass G, Simoneit B. Measurement of emissions from air pollution sources. 2. Cl through C30 organic compounds from medium duty diesel trucks. Environmental Science & Technology, 1999, 33(10): 1578-1587.
  • 10Yokelson R J, Crounse J D, DeCarlo P F, Karl T, Urbanski S, Atlas E, Campos T, Shinozuka Y, Kapustin V, Clarke A D, Weinheimer A, Knapp D J, Montzka D D, Holloway J, Weibring P, Flocke F, Zheng W, Toohey D, Wennberg P O, Wiedinmyer C, Mauldin L, Fried A, Richter D, Walega J, Jimenez J L, Adachi K, Buseck P R, Hall S R, Shetter R. Emissions from biomass burning in the Yucatan. Atmospheric Chemistry and Physics, 2009, 9(15): 5785-5812.

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