首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Profiles of polycyclic aromatic hydrocarbons in smoke from combustion and thermal decomposition of poplar wood pellets and sawdust
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Profiles of polycyclic aromatic hydrocarbons in smoke from combustion and thermal decomposition of poplar wood pellets and sawdust

机译:从糖粉木颗粒和锯末的燃烧和热分解烟雾中多环芳烃谱

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摘要

The aim of this paper is to determine the level and distribution of the sixteen polycyclic aromatic hydrocarbons (PAHs) listed by the US Environmental Protection Agency (US-EPA) in smoke from poplar wood pellets and sawdust combustion and thermal decomposition, respectively. Namely, the growth of selected poplar plantations, wood cultivation and production in the north part of the Republic of Serbia, Vojvodina Province, considerably increased. However, mechanical wood processing creates a lot of sawdust, which causes an occupational and environmental risk and also poses a fire hazard. Furthermore, in order to protect the environment and provide additional energy sources, sawdust is commonly pelletized and further used as a fuel. Thus, the assessment of environmental impact of its use becomes an important issue. Therefore, the intention of the authors was to determine the level and profile of PAH5 emitted by combustion and thermal decomposition under atmospheric conditions of poplar wood pellets and sawdust. The 16 US-EPA PAH5 were analyzed by gas chromatograph with mass selective detector. The level of total US-EPA 16 PAH5 formed during combustion of wood pellets was 4.7 mg kg(-1) whereas during the sawdust combustion it was 3.8 mg kg(-1), while the resulting total PAHs concentration during thermal degradation under atmospheric conditions of pellets and sawdust was 3.4 mg kg(-1) and 3.7 mg kg(-1), respectively. The most common PAH5 present in smoke from the combustion and thermal decomposition under atmospheric conditions of poplar wood pellets were phenanthrene, fluorene and naphthalene, while from the sawdust were phenanthrene, naphthalene, acenaphthylene and fluorene, respectively. BaPeq value obtained during the combustion of wood pellets was 0.081 mg kg(-1), whereas from the combustion of sawdust it was 0.047 mg kri, while the resulting BaPeq value during the thermal degradation under atmospheric conditions of pellets and sawdust was 0.057 mg kg(-1) and 0.049 m
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