首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >EMISSION OF OXYGENATED SPECIES FROM THE COMBUSTION OF PINE WOOD AND ITS RELATION TO SOOT FORMATION
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EMISSION OF OXYGENATED SPECIES FROM THE COMBUSTION OF PINE WOOD AND ITS RELATION TO SOOT FORMATION

机译:松木燃烧产生的含氧物种的排放及其与烟尘形成的关系

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Combustion tests of pine wood cribs have been performed in different airflows in a fire test chamber.VOC in the flue gas has been monitored on-line using FTIR.Soot was collected at different heights above the bed on to quartz fibre filters and was characterized using pyrolysis-GC-MS.Correlation between combustion conditions and emission profiles were elucidated.The soot contained significant amounts of adsorbed oxygenated material derived from pyrolysis of the wood.Three types of material were identified:pyrolysis products,pyrolysis recombination products and PAH,and significant proportions of O-PAH are also present.Oxygenated PAH increased with temperature and higher air flow rate whereas oxygenated phenolic type material increased with lower temperature and lower air flow rate.Cooler flames from oxygen-starved fires akin to conditions in household fires produce significant higher proportions of phenolic material.Oxygen appears to play a significant role in the production of soot and there appear to be two routes by which PAH material can be synthesized.Firstly through conventional hydrocarbon mechanisms such as the HACA method and secondly through a route involving the polymerization of biomass pyrolysis fragments.A number of important species are identified which could be intermediates between these pyrolysis products and PAH.
机译:松木婴儿床的燃烧测试在燃烧室中以不同的气流进行,使用FTIR在线监测烟气中的挥发性有机化合物(VOC),在床上方不同高度收集烟灰,并利用石英纤维过滤器进行表征热解-GC-MS还存在O-PAH的比例。氧化的PAH随着温度和空气流量的增加而增加,而氧化的酚醛类材料则随着温度和空气流量的降低而增加。氧气似乎在烟尘和烟灰的产生中起着重要作用合成PAH材料的途径似乎有两种,首先是通过传统的碳氢化合物机理(例如HACA方法),其次是通过涉及生物质热解片段聚合的途径,发现了许多重要的物种,它们之间可能是中间体热解产物和多环芳烃。

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