Estimation of contribution ratios of pollutant sources to a specific section based on an enhanced water quality model.

Bibo Cao, Chuan Li, Yan Liu, Yue Zhao, Jian Sha, Yuqiu Wang
Author Information
  1. Bibo Cao: MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin, 300071, China.

Abstract

Because water quality monitoring sections or sites could reflect the water quality status of rivers, surface water quality management based on water quality monitoring sections or sites would be effective. For the purpose of improving water quality of rivers, quantifying the contribution ratios of pollutant resources to a specific section is necessary. Because physical and chemical processes of nutrient pollutants are complex in water bodies, it is difficult to quantitatively compute the contribution ratios. However, water quality models have proved to be effective tools to estimate surface water quality. In this project, an enhanced QUAL2Kw model with an added module was applied to the Xin'anjiang Watershed, to obtain water quality information along the river and to assess the contribution ratios of each pollutant source to a certain section (the Jiekou state-controlled section). Model validation indicated that the results were reliable. Then, contribution ratios were analyzed through the added module. Results show that among the pollutant sources, the Lianjiang tributary contributes the largest part of total nitrogen (50.43%), total phosphorus (45.60%), ammonia nitrogen (32.90%), nitrate (nitrite + nitrate) nitrogen (47.73%), and organic nitrogen (37.87%). Furthermore, contribution ratios in different reaches varied along the river. Compared with pollutant loads ratios of different sources in the watershed, an analysis of contribution ratios of pollutant sources for each specific section, which takes the localized chemical and physical processes into consideration, was more suitable for local-regional water quality management. In summary, this method of analyzing the contribution ratios of pollutant sources to a specific section based on the QUAL2Kw model was found to support the improvement of the local environment.

References

  1. J Am Water Resour Assoc. 2011 Oct;47(5):1011-1033 [PMID: 22457580]
  2. Atmos Environ. 1975 Jan;9(1):1-18 [PMID: 1137628]
  3. Sci Total Environ. 2010 Mar 15;408(8):1985-91 [PMID: 20163823]
  4. Environ Sci Pollut Res Int. 2014;21(13):8036-51 [PMID: 24659457]
  5. Environ Sci Pollut Res Int. 2014;21(13):8095-111 [PMID: 24671393]
  6. Environ Sci Pollut Res Int. 2007 Nov;14(7):452-62 [PMID: 18062476]
  7. Environ Monit Assess. 2013 Apr;185(4):3269-81 [PMID: 22851194]
  8. Sci Total Environ. 2012 Jul 15;430:132-43 [PMID: 22634560]
  9. Sci Total Environ. 2010 Sep 15;408(20):4744-8 [PMID: 20598738]
  10. Environ Monit Assess. 2012 Oct;184(10):6197-210 [PMID: 22048923]
  11. Environ Sci Technol. 1997 Apr;31(4):178A-9A [PMID: 21650613]
  12. Environ Sci Pollut Res Int. 2011 May;18(4):519-33 [PMID: 21246297]
  13. Environ Monit Assess. 2007 Feb;125(1-3):201-17 [PMID: 16917690]
  14. Environ Sci Pollut Res Int. 2013 Jan;20(1):508-24 [PMID: 23001788]
  15. Environ Sci Pollut Res Int. 2013 Jun;20(6):3877-89 [PMID: 23184129]
  16. Environ Technol. 2014 Mar-Apr;35(5-8):868-81 [PMID: 24645469]
  17. Environ Sci Pollut Res Int. 2011 Sep;18(8):1405-13 [PMID: 21487647]
  18. Environ Sci Technol. 2008 Feb 1;42(3):822-30 [PMID: 18323108]
  19. Sci Total Environ. 2002 Oct 21;298(1-3):131-45 [PMID: 12449334]

MeSH Term

Environmental Monitoring
Models, Theoretical
Nitrates
Nitrogen
Phosphorus
Rivers
Water Movements
Water Pollutants, Chemical
Water Quality

Chemicals

Nitrates
Water Pollutants, Chemical
Phosphorus
Nitrogen

Word Cloud

Created with Highcharts 10.0.0waterqualityratioscontributionpollutantsectionsourcesspecificnitrogenbasedmodelmonitoringsectionssitesriverssurfacemanagementeffectivephysicalchemicalprocessesenhancedQUAL2KwaddedmodulealongrivertotaldifferentreflectstatuspurposeimprovingquantifyingresourcesnecessarynutrientpollutantscomplexbodiesdifficultquantitativelycomputeHowevermodelsprovedtoolsestimateprojectappliedXin'anjiangWatershedobtaininformationassesssourcecertainJiekoustate-controlledModelvalidationindicatedresultsreliableanalyzedResultsshowamongLianjiangtributarycontributeslargestpart5043%phosphorus4560%ammonia3290%nitratenitrite + nitrate4773%organic3787%FurthermorereachesvariedComparedloadswatershedanalysistakeslocalizedconsiderationsuitablelocal-regionalsummarymethodanalyzingfoundsupportimprovementlocalenvironmentEstimation

Similar Articles

Cited By