湘江株洲段镉污染动态模拟与情景分析

张青梅, 刘湛, 尤翔宇, 向仁军, 郑一. 湘江株洲段镉污染动态模拟与情景分析[J]. 环境工程学报, 2014, 8(10): 4227-4232.
引用本文: 张青梅, 刘湛, 尤翔宇, 向仁军, 郑一. 湘江株洲段镉污染动态模拟与情景分析[J]. 环境工程学报, 2014, 8(10): 4227-4232.
Zhang Qingmei, Liu Zhan, You Xiangyu, Xiang Renjun, Zheng Yi. Dynamic simulation and scenario analysis of cadmium pollution in Xiangjiang River in Zhuzhou City[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4227-4232.
Citation: Zhang Qingmei, Liu Zhan, You Xiangyu, Xiang Renjun, Zheng Yi. Dynamic simulation and scenario analysis of cadmium pollution in Xiangjiang River in Zhuzhou City[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4227-4232.

湘江株洲段镉污染动态模拟与情景分析

  • 基金项目:

    国家“水体污染控制与治理”科技重大专项(2013ZX-07504-001-03)

    环保公益性行业科研专项(201109005,201209009)

  • 中图分类号: X703.1

Dynamic simulation and scenario analysis of cadmium pollution in Xiangjiang River in Zhuzhou City

  • Fund Project:
  • 摘要: 本研究利用美国环境保护局(USEPA)推荐的WASP水质分析模拟软件,对湘江株洲段2009年的镉浓度进行动态模拟,并进行总量控制的情景分析。对水文条件变化和源强变化2种情景下的河道镉浓度进行了预测。结果表明,WASP模型能较好重现镉浓度的时间变化规律。情景分析表明,水文条件和源强条件对镉浓度的影响在霞湾和马家河断面较为明显,且在枯水月份表现得更为明显。
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  • [1] 李颂,谭利人,罗建平,等.湘江株洲城区段水质监测、评价及污染因素调查分析.实用预防医学,2006,13(3):582-585 Li Song,Tan Liren,Luo Jianping,et al.Water quality surveillance,evaluation and survey on pollution factors of Zhuzhou segment Xiang River.Practical Preventive Medicine,2006,13(3):582-585(in Chinese)
    [2] 周分平.关于湘江株洲段水资源污染防治的思考.湖南冶金职业技术学院学报,2006,6(4):454-457 Zhou Fenping.A thought on how to control water resource of Xiangjiang River in the part of Zhuzhou being polluted.Journal of Hunan Metallurgical Professional Technology College,2006,6(4):454-457(in Chinese)
    [3] 黄钟霆,周振,罗岳平.湘江霞湾港段底泥的含镉量分布研究.环境污染与防治,2009,31(7):56-58 Huang Zhongting,Zhou Zhen,Luo Yueping.Distribution of Cd in sediments from Xiawan Drainage area of the Xiang River.Environmental Pollution and Control,2009,31(7):56-58(in Chinese)
    [4] 李军,刘云国,许中坚.湘江长株潭段底泥重金属存在形态及生物有效性.湖南科技大学学报(自然科学版),2009,24(1):116-121 Li Jun,Liu Yunguo,Xu Zhongjian.Heavy metals speciation and its biological availability in sediment patterns of Changsha- Zhuzhou- Xiangtan section of the Xiangjiang River.Journal of Hunan University of Science & Technology (Natural Science Edition),2009,24(1):116-121(in Chinese)
    [5] Thomann R.V.,Fitzpatrick J.J.Calibration and verification of a mathematical model of the eutrophication of the Patomac Estuary.Prepared for Department of Environmental Services,Government of the District of Columbia,Washington,D.C.,1982
    [6] JRB,Inc..Development of Heavy Metal Waste Load Allocations for the Deep River,North Carolina.JRB Associates,McLean,VA,for U.S.EPA Office of Water Enforcement and Permits,Washington,D.C.,1984
    [7] 杨家宽,肖 波,刘年丰,等.WASP6水质模型应用于汉江襄樊段水质模拟研究.水资源保护,2005,21(4):8-10 Yang Jiakuan,Xiao Bo,Liu Nianfeng,et al.Simulation on the water quality for Xiangfan reach of Hanjiang river using WASP6.Water Resources Protection,2005,21(4):8-10(in Chinese)
    [8] 史铁锤,王飞儿,方晓波.基于WASP 的湖州市环太湖河网区水质管理模式.环境科学学报,2010,30(3):631-640 Shi Tiechui,Wang Feier,Fang Xiaobo.Regional management strategy integrated with WASP model on water quality for river-network plain located in Huzhou district,Taihu lake basin.Acta Scientiae Circumstantiae,2010,30(3):631-640(in Chinese)
    [9] 王旭东,刘素玲,张树深,等.白洋淀水域WASP富营养化模型改进研究.环境科学与技术,2009,32(10):19-24 Wang Xudong,Liu Suling,Zhang Shushen,et al.Improvement of WASP eutrophication model in Baiyangdian water area.Environmental Science & Technology,2009,32(10):19-24(in Chinese)
    [10] 林钟荣,郑一,向仁军,等.重金属面源污染模拟及其不确定性分析——以湘江株洲段镉污染为例.长江流域资源与环境,2012,21(9):1112-1118 Lin Zhongrong,Zheng Yi,Xiang Renjun,et al.Simulation of the nonpoint sources load of heavy metals and its uncertainty analysis——a case study of cadmium pollution at the Xiangjiang river in the Zhuzhou city.Resources and Environment in the Yangtza Basin,2012,21(9):1112-1118(in Chinese)
    [11] 湖南省人民政府.湖南省湘江流域生态环境综合治理规划,2009
    [12] 贲立坤,钱旭光,赵志进.梧桐河天然河道糙率系数的确定.黑龙江水专学报,2003,30(1):49-51 Ben Likun,Qian Xuguang,Zhao Zhijin.Determination on the roughness coefficient of Wutong River natural river course.Journal of Heilongjiang Hydraulic Engineering College,2003,30(1):49-51(in Chinese)
    [13] 杨建国.开都河下游焉耆河段糙率系数分析.黑龙江水利科技,2011,39(1):67-68 Yang Jianguo.Roughness coefficient analysis for Kaidu river in Yanqi.Heilongjiang Science and Technology of Water Conservancy,2011,39(1):67-68(in Chinese)
    [14] 王开,魏加华,王光谦.大型渠道糙率系数设计取值的不确定性及影响分析,2008,16(6):870-878 Wang Kai,Wei Jiahua,Wang Guangqian.Uncertainty in design value of roughness coefficient for large scale channel and effects analysis.Journal of Basic Science and Engineering,2008,16(6):870-878(in Chinese)
    [15] Lee S.Z.,Allen H.E.,Huang C.P.,et al.Predicting soil-water partition coefficients for cadmium.Environmental Science & Technology,1996,30(12):3418-3424
    [16] Chapra S.C.Surface Water-Quality Modeling.Long Grove:Waveland Press,Inc.,2008:246
    [17] 陈瑞生.河流重金属污染研究.北京:中国环境科学出版社,1988:375-418
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出版历程
  • 收稿日期:  2014-04-22
  • 刊出日期:  2014-09-28
张青梅, 刘湛, 尤翔宇, 向仁军, 郑一. 湘江株洲段镉污染动态模拟与情景分析[J]. 环境工程学报, 2014, 8(10): 4227-4232.
引用本文: 张青梅, 刘湛, 尤翔宇, 向仁军, 郑一. 湘江株洲段镉污染动态模拟与情景分析[J]. 环境工程学报, 2014, 8(10): 4227-4232.
Zhang Qingmei, Liu Zhan, You Xiangyu, Xiang Renjun, Zheng Yi. Dynamic simulation and scenario analysis of cadmium pollution in Xiangjiang River in Zhuzhou City[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4227-4232.
Citation: Zhang Qingmei, Liu Zhan, You Xiangyu, Xiang Renjun, Zheng Yi. Dynamic simulation and scenario analysis of cadmium pollution in Xiangjiang River in Zhuzhou City[J]. Chinese Journal of Environmental Engineering, 2014, 8(10): 4227-4232.

湘江株洲段镉污染动态模拟与情景分析

  • 1. 湖南省环境保护科学研究院, 水污染控制技术湖南省重点实验室, 长沙 410004
  • 2. 北京大学工学院, 北京 100871
基金项目:

国家“水体污染控制与治理”科技重大专项(2013ZX-07504-001-03)

环保公益性行业科研专项(201109005,201209009)

摘要: 本研究利用美国环境保护局(USEPA)推荐的WASP水质分析模拟软件,对湘江株洲段2009年的镉浓度进行动态模拟,并进行总量控制的情景分析。对水文条件变化和源强变化2种情景下的河道镉浓度进行了预测。结果表明,WASP模型能较好重现镉浓度的时间变化规律。情景分析表明,水文条件和源强条件对镉浓度的影响在霞湾和马家河断面较为明显,且在枯水月份表现得更为明显。

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