东南沿海和郊区大气气溶胶中大小分离的有机碳和元素碳的一年测量。

Zhenchuan Niu, Fuwang Zhang, Xiangrui Kong, Jinsheng Chen, Liqian Yin, Lingling Xu
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引用次数: 18

摘要

为了解城市化进程对城市周边地区空气质量的影响,在厦门市沿海和郊区研究了气溶胶中元素碳和有机碳的大小分布和季节变化。在2009年6月至2010年5月为期一年的测量活动中,共获得87份样本。结果表明:有机碳(OC)的79.3±3.2%和元素碳(EC)的88.3±1.7%与细颗粒物(PM(2.5))有关,细颗粒物占总碳质气溶胶(TCA)的32.0±8.3%。PM(2.5)中OC和EC的浓度分别为17.8±11.2和3.8±1.9 μ m(-3),当风向为东北(NE)时OC和EC浓度较高。PM(2.5)中较高的OC/EC比值(平均5.1)表明次生有机碳(SOC)的形成,其对OC的贡献为60.0%,对颗粒物的贡献为11.0%。土壤有机碳与气温呈显著负相关(R(2) = 0.42),冬季是土壤有机碳形成的有利气象条件。OC/EC比值随粒径的增大而增大,而含碳气溶胶占颗粒物的比例则减小。OC、EC和SOC浓度及OC/EC比值呈现冬季>春季>秋季>夏季的季节变化规律,这主要是由于不同季节气团来源不同所致。本研究指出了厦门市沿海及近郊地区碳质气溶胶污染的缓解需求。
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One-year measurement of organic and elemental carbon in size-segregated atmospheric aerosol at a coastal and suburban site in Southeast China.

To understand the influence of the urbanization process on the air quality in the urban neighbourhood area, the size distribution and seasonal variations of elemental and organic carbon in aerosols were studied at a coastal and suburban site in Xiamen City, China. A total of 87 samples were obtained during the one-year measurement campaign from June 2009 to May 2010. The results indicated that 79.3 ± 3.2% of the organic carbon (OC) and 88.3 ± 1.7% of the elemental carbon (EC) were associated with fine particles (PM(2.5)), which consist of 32.0 ± 8.3% of the total carbonaceous aerosol (TCA). The concentrations of the OC and EC in PM(2.5) were 17.8 ± 11.2 and 3.8 ± 1.9 μg m(-3), respectively, and high concentrations were usually observed when the wind direction was northeast (NE). High OC/EC ratios (average 5.1) in PM(2.5) indicated the formation of secondary organic carbon (SOC), which contributed 60.0% to the OC and 11.0% to the particulate matter. At this site, SOC had a significant negative correlation with the temperature (R(2) = 0.42), and a favorable meteorological condition for SOC formation was found in the wintertime. The OC/EC ratios increased with particle size, while the fractions of the carbonaceous aerosols to particulate matter decreased. OC, EC and SOC concentrations and OC/EC ratios followed the same seasonal pattern of winter > spring > autumn > summer, which mainly resulted from the various origins of the air masses in different seasons. This study indicates the requirement for mitigating the pollution of carbonaceous aerosol at this coastal and suburban area in Xiamen City.

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来源期刊
Journal of Environmental Monitoring
Journal of Environmental Monitoring 环境科学-分析化学
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