开罗南部不同来源挥发性多环芳烃(PAHs)的季节变化

A. Zahran, Mahmoud A. Howaihe, M. H. Ragab, M. Eldeen
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摘要

基于2014年1月至11月的全年数据集,对南El-Tabbin市四个不同功能点进行了密集的空气采样,研究了气态和颗粒态多环芳烃(PAHs)的时空特征。该地区被认为是埃及污染最严重的地区之一,因为这里有重工业工厂,而且交通繁忙。采用大容量主动空气采样器共采集了48份大气样品。采用气相色谱/质谱联用技术对多环芳烃的气相和颗粒相进行了提取和分析。研究区空气中16种多环芳烃(美国环境保护局优先级)的总浓度范围为76.48±19.44µg/m 3 ~ 26995.86±2835.91µg/m 3。焦炭生产场地的多环芳烃平均浓度约为居住区场地的355倍。对于整个研究区域;4、5、6环多环芳烃占主导地位,占~66% ~ ~84%。燃烧源多环芳烃总浓度范围为63.24±17.35µg/m 3 ~ 17546.97±1848.55µg/m 3,占总多环芳烃浓度的65% ~ 83%,表明塔宾市南部存在大量燃烧源。多环芳烃浓度呈冬季高夏季低的季节变化趋势,冬季多环芳烃平均浓度约为夏季的1.6倍。
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Seasonal Variation of Volatile Poly Aromatic Hydrocarbons (PAHs) Released from Different Sources in South Cairo
Based on a year-round data-set (from January to November 2014), an intensive air sampling program was conducted during 2014 in four different function sites in South El-Tabbin city to study the temporally and spatially characteristics of Poly Aromatic Hydrocarbons (PAHs) in the gaseous and particulate phases. This area is considered as one of the most polluted areas in Egypt as it includes heavy industrial plants, as well as it is bounded by heavy traffic. A total of 48 atmospheric samples were collected by a high-volume active air sampler. The gaseous and particulate phases of PAHs were extracted and analyzed using Gas chromatography/mass spectrometry together. The total concentrations of the sixteen PAHs (which tagged the United States Environmental Protection Agency priority) in the air of the study area ranged from 76.48 ± 19.44 µg/m 3 to 26995.86 ± 2835.91 µg/m 3 . The average PAHs concentration in the coke production site was ~ 355 times of that in the residential area site. For the whole study area; 4, 5, and 6 rings PAHs were dominant and accounting for ~66% – ~84%. The total concentrations of combustion derived PAHs were ranged from 63.24 ± 17.35 µg/m 3 to 17546.97 ± 1848.55 µg/m 3 covering 65% − 83% of total PAHs which indicating large amounts of combustion sources existed from them in South El-Tabbin city. Seasonal trends of PAHs concentrations were observed with a high concentration in winter and low in summer where the average concentration of PAHs in winter was ~1.6 times higher than that in summer.
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