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Chemical characterization and sources of PM2.5 at 12-hrresolution in Guiyang China

机译:12小时时PM2.5的化学表征和来源贵阳市的分辨率

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摘要

The increasing emission of primary and gaseous precursors of secondarily formed atmospheric particulate matter due to continuing industrial development and urbanization are leading to an increased public awareness of environmental issues and human health risks in China. As part of a pilot study, 12-hr integrated fine fraction particulate matter (PM2.5) filter samples were collected to chemically characterize and investigate the sources of ambient particulate matter in Guiyang City, Guizhou Province, southwestern China. Results showed that the 12-hr integrated PM2.5 concentrations exhibited a daytime average of 51 ± 22μg·m−3 (mean ± standard deviation) with a range of 17–128μg·m−3 and a nighttime average of 55 ± 32μg·m−33 with a range of 4–186 μg·m−3. The 24-hr integrated PM2.5 concentrations varied from 15 to 157 μg·m-3, with a mean value of 53 ± 25 μg·m−3, which exceeded the 24-hr PM2.5 standard of 35μg·m−3 set byUSEPA, but was below the standard of 75μg·m−3,set by China Ministry of Environmental Protection. Energy-dispersive X-rayfluorescence spectrometry (XRF) was applied to determine PM2.5chemical element concentrations. The order of concentrations of heavy metals inPM2.5 were iron (Fe) > zinc (Zn) > manganese (Mn)> lead (Pb) > arsenic (As) > chromium (Cr). The totalconcentration of 18 chemical elements was 13 ± 2μg·m−3, accounting for 25% inPM2.5, which is comparable to other major cities in China, butmuch higher than cities outside of China.
机译:由于持续的工业发展和城市化,二次形成的大气颗粒物的主要和气态前体的排放增加,导致公众对中国环境问题和人类健康风险的意识增强。作为一项初步研究的一部分,收集了12小时的集成细颗粒物(PM2.5)过滤器样品,以化学表征和调查中国西南贵州省贵阳市的环境颗粒物来源。结果表明,12小时的PM2.5积分浓度白天平均为51±22μg·m −3 (平均值±标准偏差),范围为17–128μg·m - 3 ,夜间平均为55±32μg·m -33 ,范围为4–186μg·m -3 。 24小时累积PM2.5浓度在15至157μg·m-3之间变化,平均值为53±25μg·m -3 ,超过24小时PM2.5设定的35μg·m −3 标准美国环保局(USEPA),但低于75μg·m -3 的标准,由中国环境保护部设定。能量分散X射线荧光光谱法(XRF)用于测定PM2.5化学元素浓度。重金属的浓度顺序PM2.5为铁(Fe)>锌(Zn)>锰(Mn)>铅(Pb)>砷(As)>铬(Cr)。总数18种化学元素的浓度为13±2μg·m −3 ,占25%PM2.5,可与中国其他主要城市媲美,但远高于中国以外的城市。

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