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城市街道峡谷中 PM1 主要成分的时间变化。

Temporal variations of PM1 major components in an urban street canyon.

机构信息

Atmospheric Pollution Laboratory (LCA), Department of Applied Physics, Miguel Hernández University, Avenida de la Universidad S/N, 03202, Elche, Spain,

出版信息

Environ Sci Pollut Res Int. 2015 Sep;22(17):13328-35. doi: 10.1007/s11356-015-4599-z. Epub 2015 May 5.

Abstract

Seasonal changes in the levels of PM1 and its main components (organic carbon (OC), elemental carbon (EC), SO4 (2-), NO3 (-) and NH4 (+)) were studied in an urban street canyon in southeastern Spain. Although PM1 levels did not show an evident seasonal cycle, strong variations in the concentrations of its major components were observed. Ammonium sulfate, the main secondary inorganic compound, was found to be of regional origin. Its formation was favored during summer due to increased photochemical activity. In contrast, the concentrations of particulate ammonium nitrate, which is thermally unstable, were highest in winter. Although traffic emissions are the dominant source of EC in the city, variations in traffic intensity could not explain the seasonal cycle of this component. The higher EC concentrations during the cold months were attributed to the lower dispersion conditions and the increase in EC emissions. Special attention has been given to variations in organic carbon levels since it accounted for about one third of the total PM1 mass. The concentrations of both total OC and secondary OC (SOC) were maxima in winter. The observed seasonal variation in SOC levels is similar to that found in other southern European cities where the frequency of sunny days in winter is high enough to promote photochemical processes.

摘要

在西班牙东南部的城市街道峡谷中,研究了 PM1 及其主要成分(有机碳 (OC)、元素碳 (EC)、SO4 (2-)、NO3 (-) 和 NH4 (+)) 的季节性变化。尽管 PM1 水平没有明显的季节性周期,但主要成分的浓度却存在强烈的变化。发现主要的二次无机化合物硫酸铵具有区域性来源。由于光化学反应活性增加,夏季有利于其形成。相比之下,在冬季,热不稳定的颗粒状硝酸铵的浓度最高。尽管交通排放是城市中 EC 的主要来源,但交通强度的变化不能解释该成分的季节性周期。在寒冷月份 EC 浓度较高是由于较低的扩散条件和 EC 排放量的增加。由于有机碳水平约占 PM1 总质量的三分之一,因此特别关注其变化。总 OC 和二次 OC(SOC)的浓度在冬季达到最大值。SOC 水平的观测季节性变化与其他南欧城市相似,在这些城市中,冬季晴天的频率足以促进光化学反应过程。

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