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Source profiles of particulate organic matters emitted from cereal straw burnings
作者姓名:ZHANG Yuan-xun  SHAO Min  ZHANG Yuan-hang  ZENG Li-min  HE Ling-yan  ZHU Bin  WEI Yong-jie  ZHU Xian-lei
作者单位:[1]State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences, Peking University, Beijing 100871, China [2]Shenzhen Graduate School, Peking University, Shenzhen 518055, China
基金项目:国家高技术研究发展计划(863计划) , 国家重点基础研究发展计划(973计划)
摘    要:Cereal straw is one of the most abundant biomass burned in China but its contribution to fine particulates is not adequately understood. In this study, three main kinds of cereal straws were collected from five grain producing areas in China. Fine particulate matters (PMzs) from the cereal straws subjected to control burnings, both under smoldering and flaming status, were sampled by using a custom made dilution chamber and sampling system in the laboratory. Element carbon (EC) and organic carbon (OC) was analyzed. 141 compounds of organic matters were measured by gas chromatography-mass spectrum (GC-MS). Source profiles of particulate organic matters emitted from cereal straw burnings were obtained. The results indicated that organic matters contribute a large fraction in fine particulate matters. Levoglucosan had the highest contributions with averagely 4.5% in mass of fine particulates and can be considered as the tracer of biomass burnings. Methyloxylated phenols from lignin degradation also had high concentrations in PM2.5, and contained approximately equal amounts of guaiacyl and syringyl compounds. 13-Sitostrol also made up relatively a large fraction of PMz5 compared with the other sterols (0.18%-0.63% of the total fine particle mass). Normal alkanes, PAHs, fatty acids, as well as normal alkanols had relatively lower concentrations compared with the compounds mentioned above. Carbon preference index (CPI) of normal alkanes and alkanoic acids showed characteristics of biogenic fuel burnings. Burning status significantly influenced the formations of EC and PAHs. The differences between the emission profiles of straw and wood combustions were displayed by the fingerprint compounds, which may be used to identify the contributions between wood and straw burnings in source apportionment researches.

关 键 词:有机物微粒  稻草  谷物燃烧  环境污染
收稿时间:2006-02-05
修稿时间:2006-03-08

Source profiles of particulate organic matters emitted from cereal straw burnings
ZHANG Yuan-xun,SHAO Min,ZHANG Yuan-hang,ZENG Li-min,HE Ling-yan,ZHU Bin,WEI Yong-jie,ZHU Xian-lei.Source profiles of particulate organic matters emitted from cereal straw burnings[J].Journal of Environmental Sciences,2007,19(2):167-175.
Authors:ZHANG Yuan-xun  SHAO Min  ZHANG Yuan-hang  ZENG Li-min  HE Ling-yan  ZHU Bin  WEI Yong-jie and ZHU Xian-lei
Institution:1. State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences, Peking University, Beijing 100871, China
2. Shenzhen Graduate School, Peking University, Shenzhen 518055, China
Abstract:Cereal straw is one of the most abundant biomass burned in China but its contribution to fine particulates is not adequately understood.In this study, three main kinds of cereal straws were collected from five grain producing areas in China. Fine particulate matters (PM2.5) from the cereal straws subjected to control burnings, both under smoldering and flaming status, were sampled by using a custom made dilution chamber and sampling system in the laboratory. Element carbon (EC) and organic carbon (OC) was analyzed.141 compounds of organic matters were measured by gas chromatography-mass spectrum (GC-MS). Source profiles of particulate organic matters emitted from cereal straw burnings were obtained. The results indicated that organic matters contribute a large fraction in fine particulate matters. Levoglucosan had the highest contributions with averagely 4.5% in mass of fine particulates and can be considered as the tracer of biomass burnings. Methyloxylated phenols from lignin degradation also had high concentrations in PM2.5,and contained approximately equal amounts of guaiacyl and syringyl compounds. β-Sitostrol also made up relatively a large fraction of PM2.5 compared with the other sterols (0.18%-0.63% of the total fine particle mass). Normal aikanes, PAHs, fatty acids, as well as normal alkanols had relatively lower concentrations compared with the compounds mentioned above. Carbon preference index (CPI) of normal alkanes and alkanoic acids showed characteristics of biogenic fuel burnings. Burning status significantly influenced the formations of EC and PAHs. The differences between the emission profiles of straw and wood combustions were displayed by the fingerprint compounds, which may be used to identify the contributions between wood and straw burnings in source apportionment researches.
Keywords:biomass burning  cereal straw  particulate organic matter  source profile  straw  organic matters  profiles  used  identify  source apportionment  researches  differences  emission  wood  fingerprint  Burning  alkanes  characteristics  fuel  preference  index  lower  above  fatty
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