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中国山西某工业区土壤中多环芳烃的分布、来源及潜在风险

Distribution, sources, and potential risk of polycyclic aromatic hydrocarbons in soils from an industrial district in Shanxi, China.

作者信息

Jiao Haihua, Bian Gaopeng, Chen Xi, Wang Suiliang, Zhuang Xuliang, Bai Zhihui

机构信息

Department of Biological Sciences and Technology, Changzhi University, Changzhi, 046011, China.

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.

出版信息

Environ Sci Pollut Res Int. 2017 May;24(13):12243-12260. doi: 10.1007/s11356-017-8553-0. Epub 2017 Mar 29.

Abstract

Concentration, composition profile, orientation distribution, sources, and potential risks of 16 polycyclic aromatic hydrocarbons (PAHs) were analyzed in 76 surface (0-25 cm) soil samples collected from the Changzhi industrial district in July 2014 using a gas chromatography mass spectrometer (GC-MS QP2010 Ultra) system. The composition patterns of the PAHs were dominated by the presence of four-ring PAHs (average 42.9%), followed by three-ring (average 25.9%), five-ring PAHs (average 25.6%), two-ring PAHs (average 5.03%), and lastly, six-ring PAHs (average 0.641%). Source apportionment of the soil PAHs was also performed by the diagnostic ratios, principal component analysis (PCA), and coefficient of divergence (CD) analysis indicated signatures of PAHs sources (including incineration, coal/wood combustion, and vehicular exhaust emission). The total concentration of 16 PAHs (∑16PAHs) found in the roadsides soils (RS) ranged from 2197 to 25,041 μg kg, with an arithmetic mean value of 12,245 μg kg; followed by the village soils (VS), which ranged from 2059 to 21,240 μg kg, with a mean of 8976 μg kg; and lastly, the agricultural soils (AS), which ranged from 794 to 16,858 μg kg, with a mean of 3456 μg kg. According to the numerical effect-based soils quality guidelines of Maliszewska-Kordybach, the levels of PAHs in the sampled industrial areas range from high to heavy contamination. The values of total benzo[a]pyrene toxicity equivalent values (∑Bapeq16PAHs) in the sample areas ranged from 0.087 to 3611 μg kg with an average of 969 μg kg. According to the soil quality guidelines of Canada, values found in the highest range (100 μg kg), which are equal to those of ∑Bapeq16PAHs found in the industrial area samples, will exert adverse biological effects. The results of this research could potentially be useful for local governments to control toxicity exposure, promote actions to alleviate PAHs contamination, and to manage human health at both work and industrial areas.

摘要

2014年7月,利用气相色谱 - 质谱联用仪(GC-MS QP2010 Ultra)系统,对从长治工业区采集的76份表层(0 - 25厘米)土壤样品中的16种多环芳烃(PAHs)的浓度、组成分布、取向分布、来源及潜在风险进行了分析。PAHs的组成模式以四环PAHs为主(平均42.9%),其次是三环(平均25.9%)、五环PAHs(平均25.6%)、二环PAHs(平均5.03%),最后是六环PAHs(平均0.641%)。还通过诊断比值、主成分分析(PCA)和发散系数(CD)分析对土壤PAHs进行了源解析,结果表明存在PAHs的来源特征(包括焚烧、煤/木材燃烧和汽车尾气排放)。路边土壤(RS)中16种PAHs(∑16PAHs)的总浓度范围为2197至25,041μg/kg,算术平均值为12,245μg/kg;其次是村庄土壤(VS),范围为2059至21,240μg/kg,平均值为8976μg/kg;最后是农业土壤(AS),范围为794至16,858μg/kg,平均值为3456μg/kg。根据Maliszewska-Kordybach基于数值的土壤质量指南,采样工业区中PAHs的水平处于高污染到重度污染范围。样品区域中总苯并[a]芘毒性当量值(∑Bapeq16PAHs)范围为0.087至3611μg/kg,平均值为969μg/kg。根据加拿大土壤质量指南,最高范围内(100μg/kg)的值,与工业区样品中发现的∑Bapeq16PAHs值相当,将产生不利的生物效应。本研究结果可能有助于地方政府控制毒性暴露,推动采取行动减轻PAHs污染,并在工作场所和工业区管理人类健康。

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