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中国北方东河地区环境空气中的空气传播颗粒物和多环芳烃(PAHs)

Airborne particulates and polycyclic aromatic hydrocarbons (PAHs) in ambient air in Donghe, northern China.

作者信息

Wang Wei, Tao Shu, Wang Wentao, Shen Guofeng, Zhao Jingyu, Lam Kin-Che

机构信息

Laboratoryfor Earth Surface Processes, College of Environmental Sciences, Peking University, Beifing, China.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2009 Jul 15;44(9):854-60. doi: 10.1080/10934520902958526.

Abstract

Five sets of size-fractionated particles were collected in a northern China village in various seasons in order to measure respirable airborne particulates (PM10) and particulate phase polycyclic aromatic hydrocarbons (PAHs) in ambient air. The time-weighted annual mean concentration and standard deviation of PM10 were 358 +/- 107 microg/m3, higher than both the national standard (100 microg/m3) and the levels observed in several contaminated northern Chinese cities. In addition to high levels of PAHs (391 +/- 487 ng/m3), the fraction of higher molecular weight PAHs was higher than most reported in the literature, and the time-weighted annual mean benzo(a)pyrene equivalent concentration was 44.2 +/- 51.4 ng/m3, more than four times the national standard of 10 ng/m3 and 44 times the WHO guideline of 1 ng/m3. Apparently, residents in Donghe suffer from exposure to high levels of both PM10 and particulate phase PAHs. The particle size distribution was centered in the range of Dp < or = 3.3 microm in winter and shifted to the ranges of Dp < or = 2.1 microm and 5.8 microm < Dp < 10 microm in spring and summer respectively. Approximately 90.0% of PAHs were associated with airborne particulates with Dp < or = 2.1 microm.

摘要

为了测量中国北方一个村庄环境空气中可吸入的大气颗粒物(PM10)和颗粒相多环芳烃(PAHs),在不同季节收集了五组按粒径分级的颗粒物。PM10的时间加权年均浓度和标准差分别为358±107微克/立方米,高于国家标准(100微克/立方米)以及中国北方几个污染城市的观测水平。除了高含量的PAHs(391±487纳克/立方米)之外,高分子量PAHs的比例高于文献中多数报道的情况,时间加权年均苯并[a]芘当量浓度为44.2±51.4纳克/立方米,是国家标准10纳克/立方米的四倍多,是世界卫生组织指导值1纳克/立方米的44倍。显然,东河村的居民暴露于高水平的PM10和颗粒相PAHs中。粒径分布在冬季集中于空气动力学直径(Dp)≤3.3微米范围内,在春季和夏季分别转移至Dp≤2.1微米以及5.8微米<Dp<10微米范围内。约90.0%的PAHs与空气动力学直径≤2.1微米的大气颗粒物相关。

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