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首页> 外文期刊>Aerosol and Air Quality Research >Characterization and Elemental Composition of Atmospheric Aerosol Loads during Springtime Dust Storm in Western Saudi Arabia
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Characterization and Elemental Composition of Atmospheric Aerosol Loads during Springtime Dust Storm in Western Saudi Arabia

机译:沙特西部春季沙尘暴期间大气气溶胶负荷的特征和元素组成

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摘要

Dust storm is a common phenomenonand, a severe environmental hazard in western Saudi Arabia. In this study, simultaneous measurement of PM10, PM2.5 and PM1.0 and elemental compositions analysis of PM2.5 in Jeddah city during springtime (March 2012) dust storm (DS) and non-dust storm (non-DS) periods were carried out to investigate the impact of DS on the levels, characterization and elemental compositions of atmospheric particles. Results indicate that PM fractions concentrations were higher in DS environment compared to non-DS. The diurnal variation of PM fractions concentrations was uni-modal in non-DS environment and bimodal in DS. PM1.0/PM10, PM2.5/PM10 and PM2.5/PM2.5–10 ratios were relatively lower in DS, indicating that sand-dust events in spring carry much more coarse than fine particles to Jeddah. PM10, PM2.5 and PM1.0 in DS and PM10 and PM2.5 in non-DS might originate from similar sources. PM10, PM2.5, PM1.0 in DS and PM10 in non-DS were correlated negatively with relative humidity and positively with wind speed. PM2.5 and PM1.0 in non-DS were correlated positively with relative humidity and negatively with wind speed. The crustal elements accounted for 44.62 and 67.53% of the total concentrations of elements in non-DS and DS, respectively. The elements concentrations increased in DS, with highest DSon-DS ratios for Ca, Si, Al and Fe. This indicates that the soil originating species contributed mainly in DS particles.The enrichment factors values and non-crustal fractions in both non-DS and DS indicate that the main sources of Na, Mg, Si, K, Ca, Ti, Cr, Mn, Fe, Rb and Sr are of a crustal type, whereas S, Cl, Co, Cu, Zn, Ga, As, Pb and Cd are anthropogenic. V and Ni in DS only are emitted from anthropogenic sources. The enrichment factors of these anthropogenic elements were lower in DS. They might originate mainly from local sources in Jeddah.
机译:沙尘暴是普遍现象,在沙特阿拉伯西部是严重的环境危害。在这项研究中,吉达市在春季(2012年3月)沙尘暴(DS)和非沙尘暴(non-DS)期间同时测量PM10,PM2.5和PM1.0以及PM2.5的元素组成分析。进行了研究,以研究DS对大气颗粒物的含量,特征和元素组成的影响。结果表明,与非DS相比,DS环境中的PM组分浓度更高。在非DS环境中,PM组分浓度的昼夜变化是单峰的,而在DS中则是双峰的。 DS中PM1.0 / PM10,PM2.5 / PM10和PM2.5 / PM2.5-10的比率相对较低,这表明春季的沙尘事件携带的颗粒比吉达的颗粒大得多。 DS中的PM10,PM2.5和PM1.0以及非DS中的PM10和PM2.5可能源自相似的来源。 DS中的PM10,PM2.5,PM1.0和非DS中的PM10与相对湿度呈负相关,与风速呈正相关。非DS中的PM2.5和PM1.0与相对湿度呈正相关,与风速呈负相关。非DS和DS中地壳元素分别占元素总浓度的44.62%和67.53%。元素浓度在DS中增加,其中Ca,Si,Al和Fe的DS /非DS比率最高。这表明土壤起源物种主要在DS颗粒中起作用。非DS和DS中的富集因子值和非壳部分表明Na,Mg,Si,K,Ca,Ti,Cr,Mn的主要来源,Fe,Rb和Sr是地壳类型,而S,Cl,Co,Cu,Zn,Ga,As,Pb和Cd是人为来源。 DS中的V和Ni仅来自人为来源。这些人为元素的富集因子在DS中较低。它们可能主要来自吉达的本地资源。

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