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Estimation of the impact of biomass burning based on regional transport of PM 2.5 in the Colombian Caribbean

机译:基于PM 2.5 在哥伦比亚加勒比地区运输估算生物量燃烧的影响

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摘要

Deterioration of air quality due to the increase in atmospheric emissions from biomass burning (BB) is one of the major environmental problems worldwide. In this study, we estimated the contributions of BB to PM2.5concentrations in the municipalities of Soledad and Malambo located in the Colombian Caribbean. The evaluation period ranged from February 24 to March 30, 2018, a period with a high number of BB events recorded in the surroundings of the evaluated sites. The contribution of BB to the two sampling sites was estimated using the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) dispersion model with forwarding trajectories from each of the burning points identified by satellite images (n?=?1089). The PM2.5emissions were determined using the fire radiative power (FRP), obtained by remote-sensing data, and corresponded to the radiant energy released per time unit by burning vegetation. The average PM2.5concentrations during the evaluation period were 19.91?μg/m3for Soledad and 22.44?μg/m3for Malambo. The average contribution of BB to these municipalities was 22.8% and 28.8%, respectively. The methodology used in this study allowed to estimate the contribution of this important source without knowledge of a previous tracer of BB, thereby increasing the use of the proposed procedure worldwide. This information would enable the implementation of effective mitigation, thereby diminishing the adverse impact of PM2.5on the health of the population.
机译:由于生物质燃烧(BB)的大气排放量增加,空气质量的恶化是全球主要的环境问题之一。在这项研究中,我们估计了BB在哥伦比亚加勒比地区的Soledad和Malambo市内的PM2.5间谍活动。评估期限于2018年2月24日至3月30日至3月30日,一段时间内记录在评估站点周围的BB事件。使用混合单粒子拉格朗日集成轨迹(HYSPLIT)分散模型来估计BB对两个采样网站的贡献,其中来自卫星图像识别的每个燃烧点的转发轨迹(n?= 1089)。使用通过遥感数据获得的火辐射功率(FRP)确定PM2.5 emissions,并且对应于通过燃烧植被释放的每个时间单位的辐射能量。评估期间的平均PM2.5间浓度为19.91μg/ m3for soledad和22.44μg/ m3for malambo。 BB对这些城市的平均贡献分别为22.8%和28.8%。本研究中使用的方法允许估计这一重要来源的贡献,而不知道先前的BB示踪剂,从而增加了全世界所提出的程序的使用。这些信息将使实施有效减缓,从而降低PM2.5群体的健康影响的不利影响。

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