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Estimation of the direct and indirect impacts of fireworks on the physicochemical characteristics of atmospheric PM_(10) and PM_(2.5)

机译:估算烟花爆竹对大气PM_(10)和PM_(2.5)的理化特性的直接和间接影响

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摘要

To quantify the total, direct and indirect impacts of fireworks individually, size-resolved PM samples were collected before, during and after a Chinese folk festival (Chinese New Year) in a megacity in China. Through chemical analysis and morphological characterisation, a strong influence of fireworks on the physicochemical characteristics of PM_(10) and PM_(2.5) was observed. The concentrations of many species exhibited an increasing trend during the heavy-firework period, especially for K~+, Mg~(2+) and Cr; the results of the non-sea-salt ions demonstrated an anthropogenic influence on K~+ and Mg~(2+). Then, source apportionment was conducted by receptor models and peak analysis (PA). The total influence of the fireworks was quantified by positive matrix factorisation (PMF), showing that the fireworks contributed higher fractions (23.40% for PM_(10) and 29.66% for PM_(2.5)) during the heavy-firework period than during the light-firework period (4.28%for PM_(10) and 7.18% for PM_(2.5)). The profiles of the total fireworks obtained by two independent methods (PMF and peak analysis) were consistent, with higher abundances of K~+, Al, Si, Ca and organic carbon (OC). Finally, the individual contributions of the direct and indirect impacts of fireworks were quantified by chemical mass balance (CMB). The percentage contributions of resuspended dust, biomass combustion and direct fireworks were 36.8±8.37 %, 14.1±2.82%and 44.4±8.26 %, respectively, for PM_(10) and 34.9±4.19 %, 16.6±3.05% and 52.5±9.69 %, respectively, for PM_(2.5), in terms of the total fireworks. The quantification of the total, direct and indirect impacts of fireworks in the ambient PM gives a original contribution for understanding the physicochemical characteristics and mechanisms of such high-intensity anthropogenic activities.
机译:为了分别量化烟花的总,直接和间接影响,在中国特大城市的中国民间节日(农历新年)之前,期间和之后收集了大小分辨的PM样本。通过化学分析和形态表征,观察到烟花爆竹对PM_(10)和PM_(2.5)的理化特性有很大影响。在大烟火期间,许多物种的浓度呈上升趋势,尤其是K〜+,Mg〜(2+)和Cr。非海盐离子的结果表明人为影响K〜+和Mg〜(2+)。然后,通过受体模型和峰分析(PA)进行源分配。烟火的总影响通过正矩阵分解(PMF)进行量化,表明烟火在重烟火期间的贡献率要高于轻烟期间(PM_(10)为23.40%,PM_(2.5)为29.66%)。 -烟火期(PM_(10)为4.28%,PM_(2.5)为7.18%)。通过两种独立的方法(PMF和峰值分析)获得的烟花总分布图是一致的,其中K〜+,Al,Si,Ca和有机碳(OC)含量较高。最后,通过化学物质平衡(CMB)量化了烟花直接和间接影响的个体贡献。对于PM_(10)和34.9±4.19%,16.6±3.05%和52.5±9.69%,重悬粉尘,生物质燃烧和直接烟花的百分比贡献分别为36.8±8.37%,14.1±2.82%和44.4±8.26%。就烟火总量而言,分别为PM_(2.5)。量化烟花在周围环境中的总,直接和间接影响,为理解此类高强度人为活动的理化特征和机理做出了贡献。

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