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An Integrated Approach to Asses the PCDD/F Emissions of the Coal Fired Stoves Combining Emission Measurements, Receptor and Dispersion Modelling

机译:结合排放测量,接收器和扩散模型评估燃煤炉PCDD / F排放的综合方法

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摘要

Very high emissions of PCDD/Fs up to 1300 µg TEQ per ton of coal were measured during combustion of commercial high chlorine content coal in a stove. A pronounced effect of the temperature profile in the chimney on PCDD/Fs emissions was identified, suggesting formation in the chimney. Emissions of PCDD/Fs were one order of magnitude higher with an insulated chimney than with a non-insulated one. Insulation of the chimney did not influence the emissions of regulated pollutants and PAHs. Under laboratory conditions, the thermal properties of the chimney usually differ from those in residential dwellings. For that reason it is concluded that PCDD/F emission measurements performed under laboratory conditions may not be representative for derivation of emission factors in emission inventory compilations. Thus the emission factor of 1300 µg TEQ per ton of coal represents the maximum value for individual stove emissions. Complementary air dispersion modelling and congener profile based receptor modelling performed in the Krakow area, Poland confirm a high contribution of the residential combustion to the ambient air PCDD/Fs levels in that area and indicate an emission factor for coal combustion in stoves in the order of 100 µg TEQ per ton.
机译:在炉子中燃烧高氯含量的商用煤期间,测得非常高的PCDD / Fs排放量,高达每吨煤1300 µg TEQ。烟囱中温度分布对PCDD / Fs排放的影响已得到明显证实,表明烟囱中形成了烟囱。绝缘烟囱的PCDD / Fs排放量比非绝缘烟囱高出一个数量级。烟囱的隔热不影响管制污染物和多环芳烃的排放。在实验室条件下,烟囱的热特性通常不同于住宅。因此,得出的结论是,在实验室条件下进行的PCDD / F排放测量可能无法代表排放清单汇编中的排放因子。因此,每吨煤1300 µg TEQ的排放因子代表了单个火炉排放的最大值。在波兰克拉科夫地区进行的补充空气扩散建模和基于同类特征的受体建模证实了该区域居民燃烧对周围空气PCDD / Fs水平的重要贡献,并指出了炉灶中煤燃烧的排放因子约为每吨100 µg TEQ。

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