Published
2025-08-07
Section
Articles
How to Cite
官山河流域地表水多环芳烃的分布特征及来源解析
王 俊
江苏南大华兴环保科技股份公司
刘 源
江苏南大华兴环保科技股份公司
徐 成飞
江苏南大华兴环保科技股份公司
季 刚
江苏南大华兴环保科技股份公司
DOI: https://doi.org/10.59429/hjfz.v7i6.10835
Keywords: 多环芳烃;官山河流域;来源解析;PMF 模型
Abstract
多环芳烃(PAHs)是一类广泛存在于大气、水体和土壤等环境介质中的一种典型持久性有机污染物,具有致癌、 致畸和致突变的“三致效应”,会对生态环境造成严重的污染,对人体健康也有很大的隐患。论文通过采样测定湖 北省丹江口市官山河流域地表水中的 PAHs,分析可见研究区域内枯水期和丰水期 PAHs 的组成均以低环 PAHs 为主。 通过 PMF 模型法进行源解析的结果显示:两季地表水 PAHs 的来源主要是石油泄漏和煤炭、生物质和汽油柴油燃烧 的混合源。
References
[1] Guo W, He M C, Yang Z F, et al. Distribution, partitioning and sources of polycyclic aromatic hydrocarbons in Daliao River water system in dry season, China[J]. Journal of Hazardous Materials, 2008,164(2):1379-1385.
[2] Wenzl T, Simon R, Anklam E, et al. Analytical methods for polycyclic aromatic hydrocarbons (PAHs) in food and the environment needed for new food legislation in the European Union[J]. Trends in Analytical Chemistry,2006,25(7):716-725.
[3] Guo W, He M C, Yang Z F. Distribution of polycyclic aromatic hydrocarbons in water, suspended particulate matter and sediment from Daliao River watershed, China[J]. Chemosphere, 2007(68):93-104.
[4] 蒋煜峰,胡雪菲,王蓓蕾,等.兰州市西固区土壤中PAHs污染特征及来源解析[J].环境科学研究,2014,27(10):1164-1171.
[5] 俞飞,林玉锁.城市典型工业生产区及附近居住区土壤中PAHs污染特征[J].生态环境,2005,14(1):6-9.
[6] 孙少艾,李洋,周轶,等.基于被动采样技术的垃圾焚烧厂及周边大气中PAHs分布研究[J].环境科学,2012,33(11):4018-4024.
[7] Ke C L, Gu Y G, Liu Q, et al. Polycyclic aromatic hydrocarbons (PAHs) in wild marine organisms from South China Sea: Occurrence, sources, and human health implications[J]. Marine Pollution Bulletin,2017,117(1-2):507-511.
[8] Wang W, Wu F Y, Zheng J S, et al. Risk assessments of PAHs and Hg exposure via settled house dust and street dust, linking with their correlations in human hair[J]. Journal of Hazardous Materials, 2013(263):627-637.
[9] Larsen R K, Baker J E. Source apportionment of polycyclic aromatic hydrocarbons in the urban atmosphere: a comparison of three methods[J]. Environ Sci Technol,2003(37):1873-1881.
[10] Chen B L, Xuan X D, Zhu L Z, et al. Distributions of polycyclic aromatic hydrocarbons in surface waters, sediments and soils of Hangzhou City, China[J]. Water Research,2004(38):3559-3565.
[11] Ravindra K, Sokhi R, Van G R. Atmospheric polycyclic aromatic hydrocarbons: source 81 attribution, emission factors and regulation[J]. Atmos. Environ,2008(42):2895-2921.
[12] Deng H M, Peng P A, Huang W L, et al. Distribution and loadings of polycyclic aromatic hydrocarbons in the Xijiang River in Guangdong, South China[J]. Chemosphere,2006(64):1402-1408.
[13] Jiang Y F, Wang X T, Wu M H, et al. Contamination, source identification, and risk assessment of polycyclic aromatic hydrocarbons in agricultural soil of Shanghai, China[J]. Environmental Monitoring and Assessment,2011(183):142-144.
[14] 王喆,卢丽,夏日元.城市近郊型地下河水中多环芳烃分布规律与来源解析[J].环境化学,2015,34(11):2096-2102.
[15] 向鑫鑫.沈抚新区地下水和土壤剖面层中多环芳烃的迁移、来源和生态健康风险评价[D].北京:北京交通大学,2020.
[16] Paatero P, Tapper U. Positive matrix factorization: A non-negative factor model with optimal utilization of error estimates of data values[J]. Environmetrics,1994,5(2):111-126.
[17] 杨威,郎印海,李国梁,等.胶州湾湿地土壤多环芳烃分布及健康风险评价[J].环境化学,2013,32(10):1989-1990.