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Characteristics of Water Quality and Evaluation of Eutrophication for Reservoirs in Kunsan

군산지역 저수지의 수질특성 및 부영양화 평가

  • Kim, Jong-Gu (School of Civil & Environmental Engineering, Kunsan National University) ;
  • O, Seung-Chul (Environment and Hygiene Department Kunsan city)
  • 김종구 (군산대학교 토목환경공학부) ;
  • 오승철 (군산대학교 토목환경공학부)
  • Published : 2007.03.28

Abstract

Recently, eutrophication or lake and reservoir has become serious problem to man who want use that water for several purpose. In order to solve the eutrophication problem, the trophic state of that eutrophic lake and reservoir should be measured properly. For the purpose of this, various method to indicate the trophic state of lake and reservoir was developed by many researchers. This research was conducted to evaluate characteristics and eutrophication of water qualitymfor small scale reservoir in Kunsan. On-site investigation to 5 reservoirs and laboratory experiment were carried out during four seasons from November, 2003 to July, 2004. Twelve items measured field ana a laboratory. Measured data was analyzed to quantitative method by multivariate approach and eutrophication index. The result is summarized as following. 1) Showing the characteristics of water quality for reservoir in Kunsan, Okgu reservoir and Oknua reservoir was exceeded 4 grades of agricultural water standard in TP, TN and COD. This means that eutrophication was gone much, therefore, water-purity control of reservoir need. While, Mije reservoir that is used to Kunsan citizens' recreation was good in water quality. But, water quality exceeded 4 grades of agricultural Dater standard sometimes. 2) As a results of correlation analysis between variables of water qualify, Interrelation between variables which is connected with eutrophication was expressed good relationship as above 6.000 in correlation coefficients. The correlation coefficient(r) between COD and chlorophyll-a, total phosphorus and chlorophyll-a, total nitrogen and chlorophyll-a were 0.750, 0.720 and 0.600 respectively. Therefore, Change of water quality can grasp according to eutrophication progress degree. 3) If do evaluate to eutrophication by quantitative method which is proposed by OECD, US-EPA and Forsberg & Ryding, in the case of chlorophyll a, Okgu, Oknua and Daewi reservoir was eutrophic state and Mije and Geumgul reservoir was mesotrophic state. But, estimation by TN and TP showed highly eutrophic state (hypereutrophic) in all reservoirs. 4) If do evaluate by eutrophication index which is Carlson's TSI, revised carlson TSI and Walker's index, in the case of chlorophyll a, TSI values of Okgu, Oknua and Daewi reservoir is eutrophic state more than 50 and Mije and Geumgul reservoir was mesotrophic state as range of $40{\sim}50$ in TSI value. But, in the case of TP as nutrients, all reservoirs showed highly eutrophic state which was exceed to 70 in TSI value. According to above results, the water quality for small scale reservoirs in Kunsan is progressing by trophic state. therefore, for continuous use as agriculture water, we had better do establishment of management plan about water quality.

Keywords

References

  1. Earl E. S., Patrick L. B., 1972, Eutrophication analysis: A multivariate approach, J. Sanitary Eng. Div., SA1, 37-57
  2. US-EPA, 1974, Manual of Methods for Chemical Analysis of Water and Waste, EPA -625-674-003, 197-215
  3. Rast W., Lee G.R., 1978, Summary analysis of the north american OECD eutrophication projects : Nutrient loading-lake response relationships and trophic state indices., U.S.EPA, EPA0600/ 3-78-008, Corvallis, Ore
  4. Forsberg C., Ryding S.O., 1980, Eutrophication parameters and trophic state indices in 30 swedish waste-receriving lakes. Archieves of Hydrobiology, Bd. 89, 189-207
  5. OECD, 1982, Eutrophication of water-monitoring, assement, and Control
  6. Carlson R. E., 1997, A Trophic state index for lakes, Limnol. Oceanogr., 22(2), 361-369 https://doi.org/10.4319/lo.1977.22.2.0361
  7. 相崎守弘, 大槻晃, 福鳥武彦, 河合崇欣, 細見正明, 村岡治,1981, 修正カ-ルソン富營養化狀態指漂の日本湖沼への適用とその他の水質項目との關係-湖沼の富營養化狀態指漂に關する基礎硏究 國立 公害硏究所硏究報告 第23號, 13-31
  8. Walker W. W., Jr., 1979, Use of hypolimnetic oxygen depletion rate as a trophic state index for lakes, Water Resource Research, 15(6), 1463-1470 https://doi.org/10.1029/WR015i006p01463
  9. Donald B. P., Spencer A. P., David P. L., 1980, Index to evaluate lake restoration, Donald B. P., Spencer A. P., David P. L., 1980, Index to evaluate lake restoration, J. Environ. Eng. Div., EE6, 1151-1169
  10. Dillon P. J., Rigler F. H., 1974, The phosphorus-chlorophyll relationship in lakes, Limnol. Oceanogr., 19(5), 767-773
  11. David C. L., 1975, Development of oxygen deficits in 14 southern Ontario lakes, Limnol. Oceanogr., 20(6), 993-999 https://doi.org/10.4319/lo.1975.20.6.0993
  12. Dillon P. J., 1975, The phosphorus budget of cameron lake, Ontario: The importance of flushing rate to the degree of eutrophy of lakes, Limnol. Oceanogr., 20(1), 28-39 https://doi.org/10.4319/lo.1975.20.1.0028
  13. Val H. Smith, 1979, Nutrient dependence of primary productivity in lakes, Limnol. Oceanogr., 24(6), 1051-1064 https://doi.org/10.4319/lo.1979.24.6.1051
  14. Prepas E. E., Trew D.O., 1983, Evaluation of the phosphorus-chlorophyll relationship for lakes off the precambrian shield in western canada, Can. J. Fish Aquat. Sci, Vol. 40, 27-35 https://doi.org/10.1139/f83-005
  15. Val H. S., 1982, The nitrogen and phosphorus dependence of algal biomass in lakes: An empirical and theoretical analysis, Limnol. Oceanogr., 27(6), 1101-1112 https://doi.org/10.4319/lo.1982.27.6.1101
  16. Daniel E. Canfield Jr., Kenneth A. L., Michael J. M., William T. H., Jerome V. S., 1983, Trophic state classification of lakes with aquatic macrophytes, Canada, Can. J, Fish Aquat, Sci., 40, 1713-1718 https://doi.org/10.1139/f83-198
  17. Bays J. S.,. Crisman T. L, 1983, Zooplankton and trophic state relationships in Florida lakes, Canada, Can. J, Fish Aquat. Sci., 40, 1813-1819 https://doi.org/10.1139/f83-210
  18. 국립환경연구원, 1982, 삽교호의 부영양화 현상에 관한 조사보고, 1-2
  19. 김 동군, 이문호, 안준상, 서 윤수, 1982, 호소수의 부영양화 현상에 관한 조사연구, 국립환경 연구소 보, 4, 147-154
  20. 김승호, 1985, 전남지방의 일부 인공호수의 부영양화에 관한 조사연구, 한국환경위생학회지, 11(1), 15-28
  21. 장재길, 1992, 대청호에 대한 Trophic State SystemDML 적용에 관한 조사연구, 서울대학교 보건대학원, 보건학 석사학위논문, 1-4
  22. 김규광, 1988, 인공호수에 대한 영양염류와 엽록소a 농도의 상관성 및 부영양화 검토, 서울대학교, 보건학 석사학위논문, 1-2
  23. 김범철, 안태석, 조규송, 1988, 한강수계 인공호의 부영양화에 관한 비교 연구, Kor. J. Limnology, 21(3), 151-163
  24. 류일광, 이치영, 강영식, 김관천, 1989, 영산호의 부영양화방지를 위한 질소, 인의 배출원단위에 관란 조사연구, 한국환경위생학회지, 15(2), 51- 58
  25. 류재근, 1992, 호소 부영양화 방지기숲의 현황과 전망, 대한위생학회지, 7(1), 35-44
  26. 최문술, 1993, 전북소재 자수지의 부영양화에 관한 비교연구, 해양개발연구, 5(1), 26-31
  27. 김복현, 오양환, 홍종순, 목동우, 김재건, 이경호, 1999, 수질환경오염공정시험법, 동화기술, 145- 261

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