新疆东天山某铜矿区土壤重金属污染与生态风险评价

孙厚云, 吴丁丁, 毛启贵, 卫晓锋, 张会琼, 葸玉泽. 新疆东天山某铜矿区土壤重金属污染与生态风险评价[J]. 环境化学, 2019, (12): 2690-2699. doi: 10.7524/j.issn.0254-6108.2019010505
引用本文: 孙厚云, 吴丁丁, 毛启贵, 卫晓锋, 张会琼, 葸玉泽. 新疆东天山某铜矿区土壤重金属污染与生态风险评价[J]. 环境化学, 2019, (12): 2690-2699. doi: 10.7524/j.issn.0254-6108.2019010505
SUN Houyun, WU Dingding, MAO Qigui, WEI Xiaofeng, ZHANG Huiqiong, XI Yuze. Soil heavy metal pollution and ecological risk assessment in a copper mining area in East Tianshan, Xinjiang[J]. Environmental Chemistry, 2019, (12): 2690-2699. doi: 10.7524/j.issn.0254-6108.2019010505
Citation: SUN Houyun, WU Dingding, MAO Qigui, WEI Xiaofeng, ZHANG Huiqiong, XI Yuze. Soil heavy metal pollution and ecological risk assessment in a copper mining area in East Tianshan, Xinjiang[J]. Environmental Chemistry, 2019, (12): 2690-2699. doi: 10.7524/j.issn.0254-6108.2019010505

新疆东天山某铜矿区土壤重金属污染与生态风险评价

    通讯作者: 孙厚云, E-mail: shyun2016@126.com
  • 基金项目:

    中国地质调查局国家二级项目(DD20160071)资助.

Soil heavy metal pollution and ecological risk assessment in a copper mining area in East Tianshan, Xinjiang

    Corresponding author: SUN Houyun, shyun2016@126.com
  • Fund Project: Supported by Secondary Projects of China Geological Survey(DD20160071).
  • 摘要: 选取戈壁荒漠景观生态环境脆弱区典型铜矿区为研究区,采集308个表层土壤样品,对Cu、Ni、Cd、Cr、Pb、Zn、Hg、As等8种重金属元素进行测试分析,综合运用相关性分析、主成分分析和系统聚类等多元统计和地统计学方法分析了矿区土壤重金属的空间分布特征,运用地累积指数法和潜在生态风险评价法评价了重金属累积程度和潜在生态风险危害程度,并对重金属的可能来源进行了解析.结果表明,研究区表层土壤重金属中Cu、Ni累积程度相对较高,超背景值比例分别为17.53%、14.94%.重金属地质累积程度由强至弱依次为:Cu > Zn > Cr > Ni > Hg > Pb > As > Cd;0.65%的土壤样品中Pb属重度污染水平,2.92%土壤样品中Cu属重度污染水平.98.38%的土壤样品重金属污染潜在生态风险危害较轻,重金属迁移影响范围有限.重金属Cu、Ni为主要特征污染物,来源于成土母岩风化和矿业活动共同作用;As、Hg、Cd元素污染程度较低,受人为因素影响较小;Pb元素污染呈点状分布,来源主要为矿区交通运输.
  • 加载中
  • [1] 王春艳.新疆东天山地区矿产资源综合评价[J].矿产勘查, 2013,4(3):309-316.

    WU C Y. Comprehensive evaluation of mineral resources foreastern Tianshan area,Xinjiang[J]. Mineral Exploration, 2013,4(3):309-316(in Chinese).

    [2] 王京彬,王玉往,何志军.东天山大地构造演化的成矿示踪[J].中国地质,2006,33(3):461-469.

    WANG J B,WANG Y W,HE Z J.Ore deposits as a guide to the tectonic evolution in the East Tianshan Mountains, NW China[J]. Geology in China,2006,33(3):461-469(in Chinese).

    [3] 徐友宁,张江华,赵阿宁,等.小秦岭某金矿区农田土壤重金属污染的潜在生态危害评价[J].地质通报,2008,27(8):1272-1278.

    XU Y N,ZHANG J H, ZHAO A N, et al. Evaluation of the potential ecological risk of heavy metals in farmland soils in a certain gold mining area, Xiaoqinling, China[J]. Geological Bulletin of China, 2008, 27(8):1272-1278(in Chinese).

    [4] 王学求,迟清华,孙宏伟.荒漠戈壁区超低密度地球化学调查与评价-以东天山为例[J].新疆地质, 2001,19(3):200-206.

    WANG X Q,CHI Q H,SUN H W. Wide-spaced geochemical survey in arid desert terrain, a case history from the eastern tianshan regions, Northwestern China[J].Xinjiang Geology, 2001,19(3):200-206(in Chinese).

    [5] 赵善定,王学求.荒漠戈壁区地表疏松层中元素的分布规律[J].物探与化探,2006,30(6):517-520.

    ZHAO S D,WANG X Q.The distribution of elements in the regolith over mineral deposits in Gobi Desert terrain[J].Geophysical and Geochemical Exploration, 2006,30(6):517-520(in Chinese).

    [6] 秦燕,徐晓春,谢巧勤,等.铜矿采矿废石重金属环境污染的淋溶实验研究-以安徽铜陵凤凰山矿田药园山铜矿床为例[J].地球学报, 2008,29(2):247-252.

    QIN Y,XU X C,XIE Q Q,et al. Leaching experiments of environmental pollution caused by heavy metals of waste rocks in the copper mine:A case study of the Yaoyuanshan Ore Deposit in the Fenghuangshan copper ore field,Tongling, Anhui, China[J].Acta Geoscientica Sinica,2008,29(2):247-252(in Chinese).

    [7] 赵元艺,曾辉,徐友宁,等.金属矿集区地球化学环境累积效应的理论与工作方法[J].地质通报, 2014,33(8):1106-1113.

    ZHAO Y Y, ZENG H, XU Y N, et al. Theory and work methods for the cumulative effects of environmental geochemistry in the metallic deposit cluster[J]. Geological Bulletin of China,2014,33(8):1106-1113(in Chinese).

    [8] PARK B Y,LEE J K,RO H M,et al.Effects of heavy metal contamination from an abandoned mine on nematode community structure as an indicator of soil ecosystem health[J]. Applied Soil Ecology.2011(1):17-24.
    [9] MANI R K,MAJETI N VARA P,et al.Biotechnological applications of serpentine soil bacteria for phytoremediation of trace metals[J]. Critical Reviews in Biotechnology,2008,29(2):120-130.
    [10] HEFNI EFFENDI,MUJIZAT KAWAROE,MURSALIN,et al. Ecological risk assessment of heavy metal pollution in surface sediment of mahakam delta, East Kalimantan[J].Procedia Environmental Sciences, 2016, 33:574-582.
    [11] TIAN K, HUANG B, XING Z, et al.Geochemical baseline establishment and ecological risk evaluation of heavy metals in greenhouse soils from Dongtai, China[J].Ecological Indicators, 2017,72:510-520.
    [12] 刘丹,赵永红,周丹,等.赣南某钨矿区土壤重金属污染生态风险评价[J].环境化学,2017,36(7):1556-1567.

    LIU D,HAO Y H,HOU D,et al.Ecological risk assessment of heavy metals pollution in a tungsten mine soil in south of Jiangxi Province[J].Environmental Chemistry,2017,36(7):1556-1567(in Chinese).

    [13] 王斐,黄益宗,王小玲,等.江西某铜矿冶炼厂周边土壤重金属生态风险评价[J].环境化学, 2014,33(7):1066-1074.

    WANG F,HUANG Y Z,WANG X L.Ecological risk assessment of heavy metals in surrounding soils of a copper smelting plant in Jiangxi Province[J]. Environmental Chemistry, 2014,33(7):1066-1074(in Chinese).

    [14] 苏耀明,陈志良,雷国建,等.多金属矿区土壤重金属垂向污染特征及风险评估[J].生态环境学报,2016,25(1):130-134.

    SU Y M,CHEN Z L,LEI G J,et al.Vertical pollution characteristic and ecological risk assessment of heavy metal of soil profiles in polymetallic ore mine[J]. Ecology and Environmental Sciences,2016,25(1):130-134(in Chinese).

    [15] MÜLLER G. Index of geoaccumulation in sediments of the Rhine River[J].Geo Journal,1969,2(3):108-118.
    [16] 刘勇,岳玲玲,李晋昌.太原市土壤重金属污染及其潜在生态风险评价[J].环境科学学报,2011,31(6):1285-1293.

    LIU Y, YUE L L,LI JJ C.Evaluation of heavy metal contamination and its potential ecological risk to the soil in Taiyuan, China[J]. Acta Scientiae Circumstantiae,2011,31(6):1285-1293(in Chinese).

    [17] 张连科,李海鹏,黄学敏,等.包头某铝厂周边土壤重金属的空间分布及来源解析[J].环境科学, 2016,37(3):1139-1146.

    ZHANG L K,LI H P,HUANG X M,et al.Soil heavy metal spatial distribution and source analysis around an aluminum plant in baotou[J].Environmental Science,2016, 37(3):1139-1146(in Chinese).

    [18] 李三中,徐华勤,陈建安,等.某矿区砷碱渣堆场周边土壤重金属污染评价及潜在生态风险分析[J].农业环境科学学报,2017,36(6):1141-1148.

    LI S Z,XU H Q,CHEN J A,et al.Pollutions and potential ecological risk of heavy metals in soils around waste arsenic-containing alkaline sites[J]. Journal of Agro-Environment Science, 2017, 36(6):1141-1148(in Chinese).

    [19] FöRSTNER U,AHLF W, CALMANO W.Sediment quality objectives and criteria development in Germany[J].Water Science and Technology,1993,28(8):307-314.
    [20] WEI Z,WANG D,ZHOU H,et al.Assessment of soil heavy metal pollution with principal component analysis and Geoaccumulation index[J]. Procedia Environmental Sciences, 2011,10(1):1946-1952.
    [21] HAKANSON L.An ecological risk index for aquatic pollution control.a sedimentological approach[J].Water Research,1980,4(8):975-1001.
    [22] 郭祥义,王永康,张必敏,等. 内蒙古半干旱草原某铅锌矿区土壤性质及重金属污染生态风险评价[J]. 环境化学, 2018, 37(4):851-859.

    GUO X Y,WANG Y K,ZHANG B M,et al.Soil properties and pollution assessment of heavy metals in a leadzinc mining area of semiarid grassland in Inner Mongolia[J].Environmental Chemistry,2018,37(4):851-859(in Chinese).

    [23] 陆金,赵兴青.铜陵狮子山矿区土壤重金属污染特征及生态风险评价[J].环境化学,2017,36(9):1958-1967.

    LU J,ZHAO X Q.Characteristics and ecological risk assessment of polluted soil by heavy metals in Shizishan, Tongling[J]. Environmental Chemistry, 2017,36(9):1958-1967(in Chinese).

    [24] 徐争启,倪师军,庹先国,等.潜在生态危害指数法评价中重金属毒性系数计算[J].环境科学与技术, 2008,31(2):112-115.

    XU Z Q, NI S J, TUO X G, et al. Calculation of heavy metals' toxicity coefficient in the evaluation of potential ecological risk index[J]. Environmental Science & Technology, 2008,31(2):112-115(in Chinese).

    [25] 牛真茹,齐硕,吴庭雯,等.某有色冶炼场地浅层土壤重金属空间变异规律与分布特征[J].土壤通报, 2016,47(3):738-745.

    NIU Z R, QI S,WU T W.The spatial variability and distribution of heavy metals in the shallow soilaround a non-ferrous metal smelting site[J]. Chinese Journal of Soil Science, 2016, 47(3):738-745(in Chinese).

    [26] 张海珍,唐宇力,陆骏,等.西湖景区土壤典型重金属污染物的来源及空间分布特征[J].环境科学,2014,35(4):1516-1522.

    ZHANG H Z,TANG Y L,LU J, et al.Sources and spatial distribution of typical heavy metal pollutants in soils in Xihu Scenic Area[J].Environmental Science, 2014,35(4):1516-1522(in Chinese).

    [27] YPLIN. Multivariate geo-statistical methods to identify and map spatial variations of soil heavy metals[J]. Environmental Geology, 2002(42):1-10.
    [28] 黄勇,郭庆荣,任海,等.地统计学在土壤重金属研究中的应用及展望[J].生态环境, 2004,13(4):681-684.

    HUANG Y,GUO Q R,REN H,et al.Application and perspective of geostatistics in the study on soil heavy metals[J]. Ecology and Environmental,2004,13(4):681-684(in Chinese).

    [29] 高鹏,刘勇,苏超.太原城区周边土壤重金属分布特征及生态风险评价[J].农业环境科学学报, 2015,34(5):866-873.

    GAO P, LIU Y, SU C. Distribution and risk assessment of soil heavy metals in area surrounding Taiyuan City[J]. Journal of Agro-Environment Science, 2015,34(5):866-873(in Chinese).

    [30] OGUNKUNLE C O, FATOBA P O. Contamination and spatial distribution of heavy metals in topsoil surrounding a mega cement factory[J]. Atmospheric Pollution Research, 2014,5(2):270-282.
    [31] 孙厚云,高东东.基于主成分分析的德阳市水资源承载力研究[J].环境保护与循环经济, 2015,35(9):47-51.

    SUN H Y,GAO D D.Study on water resources carrying capacity of deyang city based on principal component analysis[J]. Environmental Protection and Circular Economy, 2015,35(9):47-51(in Chinese).

    [32] BORVKA L,VACEK O,JEHLIČKA J.Principal component analysis as a tool to indicate the origin of potentially toxic elements in soils[J]. Galderma, 2005, 128(3-4):289-300.
    [33] 许萌萌,刘爱风,师荣光,等.天津农田重金属污染特征分析及降雨沥浸影响[J].环境科学, 2018,39(3):1095-1101.

    XU M M,LIU A F, SHI R G,et al. Characteristics of heavy metal pollution of farmland and leaching effect of rainfall in Tianjin[J].Environmental Science, 2018,39(3):1095-1101(in Chinese).

    [34] GUAN Y, SHAO C, JU M. Heavy metal contamination assessment and partition for industrial and mining gathering areas[J]. International Journal of Environmental Research and Public Health, 2014,11:7286-7303
    [35] 王桢,张建强,渡边泉,等.铁路和道路沿线土壤重金属含量及来源解析[J].生态环境学报, 2018,27(2):364-372.

    WANG Z,ZHANG J Q,WATANABE IZUMI,et al. Concentrations and sources of heavy metals in soil near railway and road[J]. Ecology and Environmental Sciences, 2018,27(2):364-372(in Chinese).

  • 加载中
计量
  • 文章访问数:  1657
  • HTML全文浏览数:  1657
  • PDF下载数:  62
  • 施引文献:  0
出版历程
  • 收稿日期:  2019-01-05
  • 刊出日期:  2019-12-10

新疆东天山某铜矿区土壤重金属污染与生态风险评价

    通讯作者: 孙厚云, E-mail: shyun2016@126.com
  • 1. 中国地质大学(北京)水资源与环境学院, 北京, 100083;
  • 2. 北京矿产地质研究院, 北京, 100012
基金项目:

中国地质调查局国家二级项目(DD20160071)资助.

摘要: 选取戈壁荒漠景观生态环境脆弱区典型铜矿区为研究区,采集308个表层土壤样品,对Cu、Ni、Cd、Cr、Pb、Zn、Hg、As等8种重金属元素进行测试分析,综合运用相关性分析、主成分分析和系统聚类等多元统计和地统计学方法分析了矿区土壤重金属的空间分布特征,运用地累积指数法和潜在生态风险评价法评价了重金属累积程度和潜在生态风险危害程度,并对重金属的可能来源进行了解析.结果表明,研究区表层土壤重金属中Cu、Ni累积程度相对较高,超背景值比例分别为17.53%、14.94%.重金属地质累积程度由强至弱依次为:Cu > Zn > Cr > Ni > Hg > Pb > As > Cd;0.65%的土壤样品中Pb属重度污染水平,2.92%土壤样品中Cu属重度污染水平.98.38%的土壤样品重金属污染潜在生态风险危害较轻,重金属迁移影响范围有限.重金属Cu、Ni为主要特征污染物,来源于成土母岩风化和矿业活动共同作用;As、Hg、Cd元素污染程度较低,受人为因素影响较小;Pb元素污染呈点状分布,来源主要为矿区交通运输.

English Abstract

参考文献 (35)

目录

/

返回文章
返回