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2020, 02, v.52 108-113
郑州市大气PM2.5中多环芳烃的污染特征及健康风险评价
基金项目(Foundation): 国家重点研发计划项目(2017YFC0212400);; 郑州市大气颗粒物源解析项目(20170053A);; 郑州市城市尺度精细化来源解析项目(DQGG0107-26)
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DOI: 10.13705/j.issn.1671-6841.2019225
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摘要:

为探究郑州市大气细颗粒物PM2.5中多环芳烃(PAHs)的污染特征,在2017年10月—2018年7月期间,选取典型月份采集四季PM2.5样品进行分析。郑州市PM2.5和PAHs的年均质量浓度分别为(93.0±54.6)μg/m3和(26.3±21.0) ng/m3,呈现冬季高、夏季低的季节变化趋势;冬季4环PAHs的占比高达41%,春、夏、秋3个季节的环数分布以5和6环比例最大;苯并[a]芘(BaP)和BaP毒性当量的年均质量浓度分别为2.3 ng/m3和4.0 ng/m3,四季的质量浓度均在较高水平。增量终生致癌风险评估结果表明,PAHs致癌风险值在0.13×10-6~1.45×10-6范围内,部分时间高于美国环境保护署规定的可接受风险水平,存在一定的健康风险。

Abstract:

In order to explore the pollution characteristics of polycyclic aromatic hydrocarbons(PAHs) in fine particulate matter(PM2.5) in Zhengzhou, typical months were selected to collect PM2.5 samples from October 2017 to July 2018. The averagely total mass concentrations of PM2.5 and PAHs in Zhengzhou were(93.0±54.6) μg/m3 and(26.3±21.0) ng/m3, presenting the significant seasonal dynamics with remarkably higher concentration in winter and lower concentration in summer. The proportion of PAHs with 4 rings in winter was as high as 41%, while the percentages of PAHs with 5 and 6 rings in other seasons were the largest. The averagely total mass concentrations of Benzo[a]pyrene(BaP) and BaP toxicity equivalent quantity were 2.3 ng/m3 and 4.0 ng/m3, and the concentrations of them in four seasons were all at a high level. The results of incremental lifetime cancer risk assessment showed that the carcinogenic risk values of PAHs were in the range of 0.13×10-6~1.45×10-6, part of which were higher than the acceptable level of carcinogenic risk set by the US Environmental Protection Agency, indicating that there was certain health risk.

参考文献

[1] 张向敏,罗燊,李卓凡,等.中国空气质量空间格局影响因素研究[J].信阳师范学院学报(自然科学版),2020,33(1):83-88.ZHANG X M,LUO S,LI Z F,et al.Impact factors research of spatial pattern of air quality in China[J].Journal of Xinyang normal university (natural science edition),2020,33(1):83-88.

[2] 何涛,彭燕,李璐,等.长三角一次局地污染过程分析[J].环保科技,2017,23(2):42-46.HE T,PENG Y,LI L,et al.Analysis of a local air pollution event in Yangtze River Delta[J].Environmental protection and technology,2017,23(2):42-46.

[3] 朱利中,松下秀鹤.空气中多环芳烃的研究现状[J].环境科学进展,1997(5):18-29.ZHU L Z,SONGXIA X H.Progress in research on polycyclic aromatic hydrocarbons in air[J].Progress in environmental science,1997 (5):18-29.

[4] ABDEL-SHAFY H I,MANSOUR M S M.A review on polycyclic aromatic hydrocarbons:source,environmental impact,effect on human health and remediation[J].Egyptian journal of petroleum,2016,25(1):107-123.

[5] WANG J,GENG N B,XU Y F,et al.PAHs in PM2.5 in Zhengzhou:concentration,carcinogenic risk analysis,and source apportionment[J].Environmental monitoring and assessment,2014,186(11):7461-7473.

[6] WANG J,LI X,JIANG N,et al.Long term observations of PM2.5-associated PAHs:comparisons between normal and episode days[J].Atmospheric environment,2015,104:228-236.

[7] WANG Q,JIANG N,YIN S S,et al.Carbonaceous species in PM2.5 and PM10 in urban area of Zhengzhou in China:seasonal variations and source apportionment[J].Atmospheric research,2017,191:1-11.

[8] LI Q,JIANG N,YU X,et al.Sources and spatial distribution of PM2.5-bound polycyclic aromatic hydrocarbons in Zhengzhou in 2016[J].Atmospheric research,2019,216:65-75.

[9] 蒋秋静,李跃宇,胡新新,等.太原市多环芳烃(PAHs)排放清单与分布特征分析[J].中国环境科学,2013,33(1):14-20.JIANG Q J,LI Y Y,HU X X,et al.Estimation of annual emission and distribution characteristics of polycyclic aromatic hydrocarbons(PAHs) in Taiyuan[J].China environmental science,2013,33(1):14-20.

[10] 郑志侠,潘成荣,高坤龙,等.合肥市大气颗粒物PM10和PM2.5中PAHs的污染特征及健康风险评估[J].环境科学导刊,2014,33(6):55-59.ZHENG Z X,PAN C R,GAO K L,et al.Pollution characteristics and risk assessment of polycyclic aromatic hydrocarbons in PM10 and PM2.5 of Hefei city[J].Environmental science survey,2014,33(6):55-59.

[11] 黄楠,王贝贝,钱岩,等.多环芳烃呼吸暴露的健康风险评估研究进展[J].环境与可持续发展,2011,36(1):1-4.HUANG N,WANG B B,QIAN Y,et al.Advances in health risk assessment of polycyclic aromatic hydrocarbons for respiratory exposure[J].Environment and sustainable development,2011,36(1):1-4.

[12] NISBET I C T,LAGOY P K.Toxic equivalency factors (TEFs) for polycyclic aromatic hydrocarbons (PAHs)[J].Regulatory toxicology and pharmacology,1992,16(3):290-300.

[13] 王飞,孙如峰,韩斌,等.儿童多环芳烃个体暴露特征及健康风险评价[J].南开大学学报(自然科学版),2013,46(6):48-57.WANG F,SUN R F,HAN B,et al.The characterization and the health-risk assessment of children respiratory exposure to PAHs in PM2.5[J].Acta scientiarum naturalium unicersitatis nankaiensis,2013,46(6):48-57.

基本信息:

DOI:10.13705/j.issn.1671-6841.2019225

中图分类号:X513;X820.4

引用信息:

[1]董喆,姜楠,王佳,等.郑州市大气PM_(2.5)中多环芳烃的污染特征及健康风险评价[J],2020,52(02):108-113.DOI:10.13705/j.issn.1671-6841.2019225.

基金信息:

国家重点研发计划项目(2017YFC0212400);; 郑州市大气颗粒物源解析项目(20170053A);; 郑州市城市尺度精细化来源解析项目(DQGG0107-26)

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