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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Laboratory investigation of fire radiative energy and smoke aerosol emissions
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Laboratory investigation of fire radiative energy and smoke aerosol emissions

机译:实验室调查火灾的辐射能量和烟雾气溶胶排放

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Fuel biomass samples from southern Africa and the United States were burned in a laboratory combustion chamber while measuring the biomass consumption rate, the fire radiative energy (FRE) release rate (R fre), and the smoke concentrations of carbon monoxide (CO), carbon dioxide (CO2), and particulate matter (PM). The PM mass emission rate (R PM) was quantified from aerosol optical thickness (AOT) derived from smoke extinction measurements using a custom-made laser transmissometer. The R PM and R fre time series for each fire were integrated to total PM mass and FRE, respectively, the ratio of which represents its FRE-based PM emission coefficient (C e PM). A strong correlation (r 2 = 0.82) was found between the total FRE and total PM mass, from which an average C e PM value of 0.03 kg MJ?1 was calculated. This value agrees with those derived similarly from satellite-borne measurements of R fre and AOT acquired over large-scale wildfires.
机译:生物质燃料从非洲南部和样品美国在实验室中被烧死燃烧室同时测量生物量消费率,火辐射能量)释放率(R),吸烟浓度的一氧化碳(CO),碳二氧化碳(CO2)和可吸入颗粒物(PM)。下午点质量发射率(R)是量化气溶胶光学厚度(AOT)来自使用一个定制的烟消光测量激光大气透射表。系列为每个火被集成点质量和,分别的比例代表其FRE-based PM排放系数(C e点)。发现总和总点之间的质量,从平均C e点0.03公斤的价值乔丹吗?同样来自星载测量R和AOT收购大规模的森林大火。

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