Volume 8 Issue 6
Nov.  2018
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CAO Wei, QIN Yanwen, MA Yingqun, YANG Chenchen, LIU Zhichao. Characteristics of nitrogen and phosphorus discharge of main industrial parks in Chongqing in Three Gorges Reservoir Area[J]. Journal of Environmental Engineering Technology, 2018, 8(6): 617-626. doi: 10.3969/j.issn.1674-991X.2018.06.082
Citation: CAO Wei, QIN Yanwen, MA Yingqun, YANG Chenchen, LIU Zhichao. Characteristics of nitrogen and phosphorus discharge of main industrial parks in Chongqing in Three Gorges Reservoir Area[J]. Journal of Environmental Engineering Technology, 2018, 8(6): 617-626. doi: 10.3969/j.issn.1674-991X.2018.06.082

Characteristics of nitrogen and phosphorus discharge of main industrial parks in Chongqing in Three Gorges Reservoir Area

doi: 10.3969/j.issn.1674-991X.2018.06.082
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  • Corresponding author: 秦延文 E-mail: qinyw@craes.org.cn
  • Received Date: 2018-07-21
  • Publish Date: 2018-11-20
  • In order to clarify the sewage discharge status of key industrial parks in the Three Gorges Reservoir Area, with Changshou chemical park, Fuling industrial Park and Wanzhou industrial park as the key research objects, a total of 48 water samples were collected and analyzed from the drainage channels of sewage treatment plants, the main sewage outlets, the streams into the reservoir and the mainstream of the Yangtze River. The results showed that the concentrations of $NH^{+}_{4}$-N, TN and TP in the water of the drainage channels of sewage treatment plants were 2.58, 13.91 and 0.43 mg/L, the concentrations of $NH^{+}_{4}$-N, TN and TP in the water of main sewage outlets were 18.88, 29.38 and 4.42 mg/L, the concentrations of $NH^{+}_{4}$-N, TN and TP in the water of the stream into the reservoir were 5.48, 12.89 and 0.78 mg/L, the concentrations of $NH^{+}_{4}$-N, TN and TP in the water of the main stream were 0.32, 5.12 and 0.22 mg/L, respectively. The nitrogen and phosphorus concentrations of the main sewage outlets and the stream into the reservoir were 1.93-59.59 times higher than that of Yangtze River main stream water body, which showed that the nutrient salt input characteristics were remarkable to the water quality of the reservoir area. It was suggested that Chongqing City should plan the construction of industrial parks reasonably, control the discharge of industrial wastewater of different industries strictly, reduce the total amount of pollutants entering the river, and reduce the water environment risk in the reservoir area.

     

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  • [1]
    郭胜,李崇明,郭劲松,等.三峡水库蓄水后不同水位期干流氮、磷时空分异特征[J].环境科学,2011,32(5):1266-1267.

    GUO S,LI C M,GUO J S,et al.Spatio-temporal variation of nitrogen,phosphorus in different period in Three Gorges Reservoir after its impoundment[J].Environmental Science,2011,32(5):1266-1267.
    [2]
    张晟,李崇明,付永川,等.三峡水库成库后支流库湾营养状态及营养盐输出[J].环境科学,2008,29(1):7-12.

    ZHANG S,LI C M,FU Y C,et al.Trophic states and nutrient output of tributaries bay in Three Gorges Reservoir after impoundment[J].Environmental Science,2008,29(1):7-12.
    [3]
    郭劲松,陈园,李哲,等.三峡小江回水区叶绿素a季节变化及其同主要藻类的相互关系[J].环境科学,2011,32(4):976-981.

    GUO J S,CHEN Y,LI Z,et al.Seasonal variation of chlorophyll a and its potential relationship with various algal species in Xiaojiang River backwater area,Three Gorges Reservoir[J].Environmental Science,2011,32(4):976-981.
    [4]
    彭福利,何立环,于洋,等.三峡库区长江干流及主要支流氮磷叶绿素变化趋势研究[J].中国科学:技术科学,2017,47(8):845-855.

    PENG F L,HE L H,YU Y,et al.Studies on the total nitrogen,total phosphorus and chlorophyll a variations in the main stream and main tributaries of the Yangtze River before and after the impoundment in the Three Gorges project area[J].Scientia Sinica Technologica,2017,47(8):845-855.
    [5]
    ZHANG K,XIONG X,HU H,et al.Occurrence and characteristics of microplastic pollution in Xiangxi Bay of Three Gorges Reservoir,China[J].Environmental Science Technology,2017,51:3794-3801.
    [6]
    蔡庆华,胡征宇.三峡水库富营养化问题与对策研究[J].水生生物学报,2006,30(1):7-11.

    CAI Q H,HU Z Y.Studies on eutrophication problem and control strategy in the Three Gorges Reservoir[J].Acta Hydrobiologica Sinica,2006,30(1):7-11.
    [7]
    PENG C,ZHANG L,ZHENG Y,et al.Seasonal succession of phytoplankton in response to the variation of environmental factors in the Gaolan River,Three Gorges Reservoir,China[J].Chinese Journal of Oceanology and Limnology,2013,31(4):737-749.
    [8]
    SHI Y,XU G,WANG Y,et al.Modelling hydrology and water quality processes in the Pengxi River basin of the Three Gorges Reservoir using thesoil and water assessment tool[J].Agric Water Manage,2017,182:24-38.
    [9]
    蔡庆华,孙志禹.三峡水库水环境与水生态研究的进展与展望[J].湖泊科学,2012,24(2):169-177.

    CAI Q H,SUN Z Y.Water environment and aquatic ecosystem of Three Gorges Reservoir,China:progress and prospects[J].Journal of Lake Sciences,2012,24(2):169-177.
    [10]
    XU Y,CAI Q,HAN X,et al.Factors regulating trophic status in a large subtropical reservoir,China[J].Environmental Monitoring Assess,2010,169:237-248.
    [11]
    周川,蔚建军,付莉,等.三峡库区支流澎溪河水华高发期环境因子和浮游藻类的时空特征及其关系[J].环境科学,2016,37(3):873-883.

    ZHOU C,YU J J,FU L,et al.Temporal and spatial distribution of environmental factors and phytoplankton during algal bloom season in Pengxi River,Three Gorges Reservoir[J].Environmental Science,2016,37(3):873-883.
    [12]
    WANG L,ZHENG B.Prediction of chlorophyll-a in the Daning River of Three Gorges Reservoir by principal component scores in multiple linearregression models[J].Water Science Technology,2013,67:1150-1158.
    [13]
    ZHU K,BI Y,HU Z.Responses of phytoplankton functional groups to the hydrologic regime in the Daning River,a tributary of Three Gorges Reservoir,China[J].Science of the Total Environment,2013,450/451:169-177.
    [14]
    XIAO Y,LI Z,GUO J,et al.Cyanobacteria in a tributary backwater area in the Three Gorges Reservoir,China[J].Inland Waters,2016,6:77-88.
    [15]
    陈永灿,申满斌,刘昭伟.三峡库区城市排污口附近污染混合区的特性[J].清华大学学报(自然科学版),2004,44(9):1223-1226.

    CHEN Y C,SHEN M B,LIU Z W.Characteristics of pollutant mixing zone near city outfalls in the Three Gorges Reservoir[J].Journal of Tsinghua University(Science and Technology),2004,44(9):1223-1226.
    [16]
    蒋平. 三峡工程对长江重庆段水环境影响及对策[J].人民长江,1997,28(5):7-10.

    JIANG P.Impact of TGP on water environment in Chongqing reach of Yangtze River and its countermeasures[J].Yangtze River,1997,28(5):7-10.
    [17]
    李伟,徐斌,夏圣骥,等.饮用水中溶解性有机氮类化合物的控制研究进展[J].中国给水排水,2009,25(8):22-26.

    LI W,XU B,XIA S J,et al.Review on characteristics and control of dissolved organic nitrogen in drinking water[J].China Water and Wastewater,2009,25(8):22-26.
    [18]
    国家环境保护总局.水和废水监测分析方法[M].4版.北京:中国环境科学出版社,2002:271-283.
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