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Combustion efficiency and emission factors for wildfire-season fires in mixed conifer forests of the northern Rocky Mountains, US

机译:燃烧效率和野火季节火灾中的燃烧效率和排放因子北岩石山脉混合针叶树林

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In the US, wildfires and prescribed burning present significant challenges to air regulatory agencies attempting to achieve and maintain compliance with air quality regulations. Fire emission factors (EF) are essential input for the emission models used to develop wildland fire emission inventories. Most previous studies quantifying wildland fire EF of temperate ecosystems have focused on emissions from prescribed burning conducted outside of the wildfire season. Little information is available on EF for wildfires in temperate forests of the conterminous US. The goal of this work is to provide information on emissions from wildfire-season forest fires in the northern Rocky Mountains, US. In August 2011, we deployed airborne chemistry instruments and sampled emissions over eight days from three wildfires and a prescribed fire that occurred in mixed conifer forests of the northern Rocky Mountains. We measured the combustion efficiency, quantified as the modified combustion efficiency (MCE), and EF for CO2, CO, and CH4. Our study average values for MCE, EFCO2, EFCO, and EFCH4 were 0.883, 1596 g kg?1, 135 g kg?1, 7.30 g kg?1, respectively. Compared with previous field studies of prescribed fires in temperate forests, the fires sampled in our study had significantly lower MCE and EFCO2 and significantly higher EFCO and EFCH4. The fires sampled in this study burned in areas reported to have moderate to heavy components of standing dead trees and down dead wood due to insect activity and previous fire, but fuel consumption data was not available. However, an analysis of MCE and fuel consumption data from 18 prescribed fires reported in the literature indicates that the availability of coarse fuels and conditions favorable for the combustion of these fuels favors low MCE fires. This analysis suggests that fuel composition was an important factor contributing to the low MCE of the fires measured in this study. This study only measured EF for CO2, CO, and CH4; however, we used our study average MCE to provide rough estimates of wildfire-season EF for PM2.5 and four non-methane organic compounds (NMOC) using MCE and EF data reported in the literature. This analysis suggests the EFPM2.5 for wildfires that occur in forests of the northern Rocky Mountains may be significantly larger than those reported for temperate forests in the literature and that used in a recent national emission inventory. If the MCE of the fires sampled in this work are representative of the combustion characteristics of wildfire-season fires in similar forest types across the western US then the use of EF based on prescribed fires may result in an underestimate of wildfire PM2.5 and NMOC emissions. Given the magnitude of biomass consumed by western US wildfires, this may have important implications for the forecasting and management of regional air quality.
机译:在美国,野火和规定的燃烧将对试图实现和维持空气质量法规遵守的空中监管机构具有重大挑战。灭火因子(EF)是用于开发荒地火灾排放库存的排放模型的必要投入。大多数以前的研究量化温带生态系统的威胁EFFEF侧重于在野火季节外部进行的规定燃烧的排放。在孔雀石的温带森林中,EF提供一些信息。这项工作的目标是提供有关野火季森林火灾的排放信息,我们在北罗基山区,美国。 2011年8月,我们从三个野火和北落矶山脉混合针叶树林发生的八天内部署了空中化学工具和采样的排放量。我们测量了燃烧效率,量化为改性燃烧效率(MCE)和CO2,CO和CH4的EF。我们的研究MCE,EFCO2,EFCO和EFCH4的平均值为0.883,1596g kg?1,135g kg?1,7.30g kg?1。与先前的温带森林中规定火灾的实地研究相比,我们研究中采样的火灾显着降低了MCE和EFCO2,其效率明显高,EFCH4。在本研究中取样的火灾在据报道的地区燃烧,由于昆虫活动和以前的火灾,由于昆虫活性和死亡而落后的死木,但燃料消耗数据不可用。然而,从文献中报告的18个规定的火灾的MCE和燃料消耗数据分析表明,粗燃料和燃烧燃烧的条件的可用性有利于低MCE火灾。该分析表明,燃料组合是有助于在本研究中测量的燃烧低MCE的重要因素。本研究仅测量了CO2,CO和CH4的EF;然而,我们使用研究平均MCE提供了使用文献中报告的MCE和EF数据的PM2.5和四种非甲烷有机化合物(NMOC)的野生季Ef的粗略估计。该分析表明,北落矶山脉森林中发生的野火的EFPM2.5可能明显大于文献中据报道的温带森林的野火,并用于最近的国家排放库存。如果在这项工作中采样的火灾的MCE代表野火季节燃烧的燃烧特征,在美国西部的类似森林类型中,那么基于规定的火灾的EF使用可能导致野火PM2.5和NMOC的低估排放。鉴于西方野火消耗的生物量的大小,这可能对区域空气质量的预测和管理具有重要意义。

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