2023 Vol. 50, No. 3
Article Contents

HUANG Dan, HUANG Yong, AN Yonglong, FENG Hui, SUN Zhao, LI Huan. Spatial distribution and sources of PAHs in topsoil in the Beiyun River Basin (Beijing section)[J]. Hydrogeology & Engineering Geology, 2023, 50(3): 159-171. doi: 10.16030/j.cnki.issn.1000-3665.202112022
Citation: HUANG Dan, HUANG Yong, AN Yonglong, FENG Hui, SUN Zhao, LI Huan. Spatial distribution and sources of PAHs in topsoil in the Beiyun River Basin (Beijing section)[J]. Hydrogeology & Engineering Geology, 2023, 50(3): 159-171. doi: 10.16030/j.cnki.issn.1000-3665.202112022

Spatial distribution and sources of PAHs in topsoil in the Beiyun River Basin (Beijing section)

  • Organic pollution of polycyclic aromatic hydrocarbons (PAHs) in topsoil has threatened human health and ecological environment. In order to understand the distribution and pollution characteristics of PAHs in topsoil in the Beiyun River Basin in Beijing, an investigation is carried out to examine the contents, distribution trends, spatial distribution and pollution sources of 16 optimal PAHs in topsoil of the study area by means of multivariate statistical methods including the Kriging interpolation, principal component analysis-multiple linear regression and the concentration ratio among certain components. The results are as follows (1) all 16 PAHs are detected, and most of them are high loop PAHs (4−6 rings). The total contents of PAHs in topsoil range from 10.5 to 19466.5 μg/kg, about 29.63% of the samples are polluted in the study area. (2) The PAHs contents in topsoil show a trend of higher in the middle and lower at ends in both east-west and south-north direction. In terms of spatial distribution, the PAHs contents in topsoil are higher in the northern region and the central urban area, while the PAHs contents are lower in other areas. Due to the accumulation of PAHs caused by human activities at some points, point source pollution or local pollution exist. (3)The ratio of specific PAHs components and principal component analysis indicate that the sources of 16 PAHs in the study area are mainly coal, biomass combustion and traffic combustion. Multiple linear regression shows that the contribution rates of the two are 89% and 11% respectively. The research results can provide strong support for pollution prevention and control, land quality evaluation and territorial space planning in the study area.

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  • [1] 安永龙,黄勇,孙朝,等. 北京通州某改造区土壤中PAHs的来源分析及风险评价[J]. 水文地质工程地质,2017,44(5):112 − 120. [AN Yonglong,HUANG Yong,SUN Zhao,et al. Source apportionment and risk assessment of PAHs in soil from a renewal area in the Tongzhou District of Beijing[J]. Hydrogeology & Engineering Geology,2017,44(5):112 − 120. (in Chinese with English abstract)

    Google Scholar

    [2] 郭娜,王金生,翟远征,等. 北京市平原区土壤中PAHs分布特征与来源分析[J]. 水文地质工程地质,2014,41(6):110 − 115. [GUO Na,WANG Jinsheng,ZHAI Yuanzheng,et al. Distribution and source analysis of PAHs in the surface soil in the Beijing Plain[J]. Hydrogeology & Engineering Geology,2014,41(6):110 − 115. (in Chinese with English abstract)

    Google Scholar

    [3] 卢晓丽,康翔,魏宇宸,等. 城乡结合带农田土壤多环芳烃空间分布特征及来源解析—以南京市周岗镇为例[J]. 土壤通报,2021,52(2):286 − 296. [LU Xiaoli,KANG Xiang,WEI Yuchen,et al. Spatial distribution and sources of PAHs in farmland soil of peri-urban areas:A case study of Zhougang,Nanjing[J]. Chinese Journal of Soil Science,2021,52(2):286 − 296. (in Chinese with English abstract)

    Google Scholar

    [4] 刘增俊,滕应,黄标,等. 长江三角洲典型地区农田土壤多环芳烃分布特征与源解析[J]. 土壤学报,2010,47(6):1110 − 1117. [LIU Zengjun,TENG Ying,HUANG Biao,et al. Distribution and sources analysis of pahs in farmland soils in areas typical of the Yangtze River Delta,China[J]. Acta Pedologica Sinica,2010,47(6):1110 − 1117. (in Chinese with English abstract)

    Google Scholar

    [5] 黄勇,王安婷,袁国礼,等. 北京市表层土壤中PAHs含量特征及来源分析[J]. 岩矿测试,2022,41(1):54 − 65. [HUANG Yong,WANG Anting,YUAN Guoli,et al. The content characteristics and source analysis of polycyclic aromatic hydrocarbons in topsoil of Beijing City[J]. Rock and Mineral Analysis,2022,41(1):54 − 65. (in Chinese with English abstract)

    Google Scholar

    [6] 张秀秀,卢晓丽,魏宇宸,等. 城郊农田土壤多环芳烃污染特征及风险评价[J]. 环境科学,2021,42(11):5510 − 5518. [ZHANG Xiuxiu,LU Xiaoli,WEI Yuchen,et al. Pollution characteristics and risk assessment of polycyclic aromatic hydrocarbons in a suburban farmland soil[J]. Environmental Science,2021,42(11):5510 − 5518. (in Chinese with English abstract)

    Google Scholar

    [7] 刘洋. “引温济潮”实现区域性水资源跨流域回补[J]. 北京规划建设,2010(2):71 − 74. [LIU Yang. “Divert water from Wenyu River into Chaobai River” to realize regional water resources recharge across river basins[J]. Beijing Planning Review,2010(2):71 − 74. (in Chinese)

    Google Scholar

    [8] 荆红卫,张志刚,郭婧. 北京北运河水系水质污染特征及污染来源分析[J]. 中国环境科学,2013,33(2):319 − 327. [JING Hongwei,ZHANG Zhigang,GUO Jing. Water pollution characteristics and pollution sources of Bei Canal River system in Beijing[J]. China Environmental Science,2013,33(2):319 − 327. (in Chinese with English abstract)

    Google Scholar

    [9] 杨颖,孙文,刘吉宝,等. 北运河流域沙河水库沉积物重金属分布及生态风险评估[J]. 环境科学学报,2021,41(1):217 − 227. [YANG Ying,SUN Wen,LIU Jibao,et al. Distribution and ecological risk assessment of heavy metals in sediments of Shahe Reservoir in Northern Canal Basin[J]. Acta Scientiae Circumstantiae,2021,41(1):217 − 227. (in Chinese with English abstract)

    Google Scholar

    [10] 陈永娟,庞树江,耿润哲,等. 北运河水系主要污染物通量特征研究[J]. 环境科学学报,2015,35(7):2167 − 2176. [CHEN Yongjuan,PANG Shujiang,GENG Runzhe,et al. Fluxes of the main contaminant in Beiyun River[J]. Acta Scientiae Circumstantiae,2015,35(7):2167 − 2176. (in Chinese with English abstract)

    Google Scholar

    [11] 张家铭,李炳华,毕二平,等. 北运河流域(北京段)沉积物中PAHs污染特征与风险评估[J]. 环境科学研究,2019,32(11):1852 − 1860. [ZHANG Jiaming,LI Binghua,BI Erping,et al. Pollutant characteristics and risk assessment of polycyclic aromatic hydrocarbons in the sediment of the North Canal Basin(Beijing section)[J]. Research of Environmental Sciences,2019,32(11):1852 − 1860. (in Chinese with English abstract)

    Google Scholar

    [12] ZHANG Shiwei,LI Binghua,ZHANG Dasheng,et al. Distribution and risk assessment of PAHs in river water and groundwater in North Canal Basin of Beijing[J]. South-to-North Water Transfers and Water Science & Technology,2021,19(1):179 − 190.

    Google Scholar

    [13] 薛源. 北运河流域(北京段)多环芳烃的空间分布和逸度模拟[D]. 泰安: 山东农业大学, 2015

    Google Scholar

    XUE Yuan. Spatial distribution and multimedia fugacity environment behavior of PAHs in Beiyun River Basin of Beijing[D]. Taian: Shandong Agricultural University, 2015. (in Chinese with English abstract)

    Google Scholar

    [14] 丁淮剑. 北运河流域沉积物重金属污染状况分析[D]. 北京: 首都师范大学, 2009

    Google Scholar

    DING Huaijian. Study of heavy meatal pollution of the sediment in Beiyunhe River in Beijing[D]. Beijing: Capital Normal University, 2009.(in Chinese with English abstract)

    Google Scholar

    [15] 孙久虎,刘晓萌,李佑钢,等. 北运河地区植被覆盖的遥感估算及变化分析[J]. 水土保持研究,2006,13(6):97 − 99. [SUN Jiuhu,LIU Xiaomeng,LI Yougang,et al. Estimation of vegetation fraction in Beiyunhe District by remote sensing[J]. Research of Soil and Water Conservation,2006,13(6):97 − 99. (in Chinese with English abstract) doi: 10.3969/j.issn.1005-3409.2006.06.030

    CrossRef Google Scholar

    [16] 田林锋,罗桂林,姜文娟,等. 基于多元统计的宁夏典农河水质演替特征探究[J]. 中国环境监测,2023,39(1):128 − 136. [TIAN Linfeng,LUO Guilin,JIANG Wenjuan,et al. Water quality succession of Diannong River in Ningxia based on multiple statistics[J]. Environmental Monitoring in China,2023,39(1):128 − 136. (in Chinese with English abstract)

    Google Scholar

    [17] 王昱,卢世国,冯起,等. 黑河上中游水质时空分异特征及污染源解析[J]. 中国环境科学,2019,39(10):4194 − 4204. [WANG Yu,LU Shiguo,FENG Qi,et al. Spatio-temporal characteristics and source identification of water pollutants in the upper and middle reachers of Heihe River[J]. China Environmental Science,2019,39(10):4194 − 4204. (in Chinese with English abstract)

    Google Scholar

    [18] 宋旭,高灯州,曾从盛,等. 基于GIS地统计学的海坛岛农田养分变异研究[J]. 实验室科学,2017,20(1):25 − 28. [SONG Xu,GAO Dengzhou,ZENG Congsheng,et al. Spatial variation of soil nutrient of the Haitan Island based on GIS and Geo-statistic[J]. Laboratory Science,2017,20(1):25 − 28. (in Chinese with English abstract)

    Google Scholar

    [19] 安永龙,万利勤,李霞,等. 承德市土壤重金属空间结构与分布特征[J]. 水文地质工程地质,2020,47(6):119 − 131. [AN Yonglong,WAN Liqin,LI Xia,et al. Spatial structure and distribution characteristics of heavy metals in the soil in Chengde[J]. Hydrogeology & Engineering Geology,2020,47(6):119 − 131. (in Chinese with English abstract)

    Google Scholar

    [20] 安永龙,杜子图,黄勇,等. 基于地统计学和GIS 技术的北京市大兴区礼贤镇土壤养分空间变异性研究[J]. 现代地质,2018,32(6):1311 − 1321. [AN Yonglong,DU Zitu,HUANG Yong,et al. Spatial variation analysis of soil nutrients in Lixian Town of Daxing District in Beijing based on geostatistics and GIS[J]. Geoscience,2018,32(6):1311 − 1321. (in Chinese with English abstract)

    Google Scholar

    [21] 陈静,王学军,胡俊栋,等. 多环芳烃(PAHs)在砂质土壤中的吸附行为[J]. 农业环境科学学报,2005,24(1):69 − 73. [CHEN Jing,WANG Xuejun,HU Jundong,et al. Adsorption of polycyclic aromatic hydrocarbons (PAHs) in sand soils[J]. Journal of Agro-Environmental Science,2005,24(1):69 − 73. (in Chinese with English abstract) doi: 10.3321/j.issn:1672-2043.2005.01.016

    CrossRef Google Scholar

    [22] 生态环境部, 国家市场监督管理总局.土壤环境质量—建设用地土壤污染风险管控标准: GB36600—2018[S]. 北京: 中国环境科学出版社, 2018

    Google Scholar

    Ministry of Ecology and Environment, State Administration for Market Regulation. Soil environmental quality risk control standard for soil contamination of development land: GB36600—2018[S]. Beijing: China Environmental Science Press, 2018. (in Chinese)

    Google Scholar

    [23] EDWARDS N T. Polycyclic aromatic hydrocarbons (PAHs) in the terrestrial environment :A review[J]. Journal of Environmental Quality,1983,12(4):427 − 441.

    Google Scholar

    [24] MALISZEWSKA-KORDYBACH B,SMRECZAK B,KLIMKOWICZ-PAWLAS A,et al. Monitoring of the total content of polycyclic aromatic hydrocarbons (PAHs) in arable soils in Poland[J]. Chemosphere,2008,73(8):1284 − 1291. doi: 10.1016/j.chemosphere.2008.07.009

    CrossRef Google Scholar

    [25] 陈卫锋,倪进治,杨红玉,等. 闽江福州段沉积物中多环芳烃的空间分布异质性研究[J]. 环境科学,2012,33(5):1687 − 1692. [CHEN Weifeng,NI Jinzhi,YANG Hongyu,et al. Spatial heterogeneity and autocorrelation of polycyclic aromatic hydrocarbons in the sediment of Minjiang River in Fuzhou City[J]. Environmental Science,2012,33(5):1687 − 1692. (in Chinese with English abstract) doi: 10.13227/j.hjkx.2012.05.046

    CrossRef Google Scholar

    [26] 马瑾,邱兴华,周永章,等. 东莞市农业土壤多环芳烃污染及其空间分布特征研究[J]. 北京大学学报(自然科学版),2011,47(1):149 − 158. [MA Jin,QIU Xinghua,ZHOU Yongzhang,et al. PAHs pollution and spatial distribution in agricultural soils of Dongguan[J]. Acta Scientiarum Naturalium Universitatis Pekinensis,2011,47(1):149 − 158. (in Chinese with English abstract)

    Google Scholar

    [27] 李秀梅,周时学,罗胜军,等. 地统计学在生态学中的应用[J]. 现代农业科技,2014(13):245. [LI Xiumei,ZHOU Shixue,LUO Shengjun,et al. Application of geostatistics in ecology[J]. Modern Agricultural Science and Technology,2014(13):245. (in Chinese with English abstract)

    Google Scholar

    [28] 蔡婷. 土壤类型对多环芳烃吸附性能的影响[D]. 北京: 中国石油大学(北京), 2017

    Google Scholar

    CAI Ting. The influence of soil type on PAHs adsorption properties[D]. Beijing: China University of Petroleum (Beijing), 2017. (in Chinese with English abstract)

    Google Scholar

    [29] 李随云,杨飞,杨载熙,等. 京山市钱场—新市两镇表层土壤有机质含量分布及影响因素[J]. 资源环境与工程,2021,35(2):179 − 181. [LI Suiyun,YANG Fei,YANG Zaixi,et al. Distribution of topsoil organic matter content in Qianchang − Xinshi Towns in Jingshan City and its influencing factors[J]. Resources Environment & Engineering,2021,35(2):179 − 181. (in Chinese with English abstract)

    Google Scholar

    [30] 孙军亚. 多环芳烃在藏东南森林土壤中的分布、迁移及其生态风险评价[D]. 天津: 天津理工大学, 2019

    Google Scholar

    SUN Junya. Distribution and migration and ecological risk assessment of polycyclic aromatic hydrocarbons in forest soils in southeast Tibet[D]. Tianjin : Tianjin University of Technology, 2019.(in Chinese with English abstract)

    Google Scholar

    [31] 吴萌,段永红,何佳璘,等. 北方地区表层土壤中PAHs的含量及来源分析[J]. 山西农业科学,2021,49(3):311 − 317. [WU Meng,DUAN Yonghong,HE Jialin,et al. Content and source analysis of PAHs in surface soil of Northern China[J]. Journal of Shanxi Agricultural Sciences,2021,49(3):311 − 317. (in Chinese with English abstract)

    Google Scholar

    [32] 赵振华, 全文熠, 田德海, 等. 多环芳烃的环境健康化学[M]. 北京: 中国科学技术出版社, 1993

    Google Scholar

    ZHAO Zhenhua, QUAN Wenyi, TIAN Dehai, et al. Environmental health chemistry of PAHs[M]. Beijing: Science and technology of China press, 1993. (in Chinese)

    Google Scholar

    [33] MCCREADY S,SLEE D J,BIRCH G F,et al. The distribution of polycyclic aromatic hydrocarbons in surficial sediments of Sydney Harbour,Australia[J]. Marine Pollution Bulletin,2000,40(11):999 − 1006. doi: 10.1016/S0025-326X(00)00044-8

    CrossRef Google Scholar

    [34] SIMCIK M F,EISENREICH S J,LIOY P J. Source apportionment and source/sink relationships of PAHs in the coastal atmosphere of Chicago and Lake Michigan[J]. Atmospheric Environment,1999,33(30):5071 − 5079. doi: 10.1016/S1352-2310(99)00233-2

    CrossRef Google Scholar

    [35] LARSEN R K,BAKER J E. Source apportionment of polycyclic aromatic hydrocarbons in the urban atmosphere:A comparison of three methods[J]. Environmental Science & Technology,2003,37(9):1873 − 1881.

    Google Scholar

    [36] JIANG Yufeng,WANG Xuetong,WANG Fei,et al. Levels,composition profiles and sources of polycyclic aromatic hydrocarbons in urban soil of Shanghai,China[J]. Chemosphere,2009,75(8):1112 − 1118. doi: 10.1016/j.chemosphere.2009.01.027

    CrossRef Google Scholar

    [37] MURAKAMI M,NAKAJIMA F,FURUMAI H. Size- and density-distributions and sources of polycyclic aromatic hydrocarbons in urban road dust[J]. Chemosphere,2005,61(6):783 − 791. doi: 10.1016/j.chemosphere.2005.04.003

    CrossRef Google Scholar

    [38] BOONYATUMANOND R,WATTAYAKORN G,TOGO A,et al. Distribution and origins of polycyclic aromatic hydrocarbons (PAHs) in riverine,estuarine,and marine sediments in Thailand[J]. Marine Pollution Bulletin,2006,52(8):942 − 956. doi: 10.1016/j.marpolbul.2005.12.015

    CrossRef Google Scholar

    [39] 江淼华,徐素云,许辰森,等. 城市绿地表层土壤中PAHs的来源及风险评估—以福州市鼓楼区为例[J]. 亚热带资源与环境学报,2015,10(3):11 − 16. [JIANG Miaohua,XU Suyun,XU Chensen,et al. Sources and risk assessment of PAHs in surface soil from urban green lands:A case of Gulou District,Fuzhou,China[J]. Journal of Subtropical Resources and Environment,2015,10(3):11 − 16. (in Chinese with English abstract)

    Google Scholar

    [40] 刘芬芬,孙小华,丁力,等. 搬迁企业原址场地土壤挥发性有机物污染特征—以北京某搬迁化工厂为例[J]. 城市地质,2021,16(1):18 − 24. [LIU Fenfen,SUN Xiaohua,DING Li,et al. Characteristics of soil volatile organic compound pollution in the original site of relocated enterprises:A case study of a relocated chemical plant in Beijing[J]. Urban Geology,2021,16(1):18 − 24. (in Chinese with English abstract)

    Google Scholar

    [41] 北京市统计局, 国家统计局北京调查总队. 北京统计年鉴-2021[M]. 北京: 中国统计出版社, 2022

    Google Scholar

    Beijing Municipal Bureau of Statistics, Survey Office of the National Bureau of Statistics in Beijing. Beijing statistical yearbook-2021[M]. Beijing: China Statistics Press, 2022. (in Chinese)

    Google Scholar

    [42] 段海静. 路域环境多介质PAHs污染与综合健康风险分析——以G310和G30郑开段为例[D]. 开封: 河南大学, 2016

    Google Scholar

    DUAN Haijing. Pollution and comprehensive health risk assessment of polycyclic aromatic hydrocarbons in roadside multiple medias: A case study of 310th national highway and 30th highway[D]. Kaifeng: Henan University, 2016. (in Chinese with English abstract)

    Google Scholar

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