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가뭄으로 인한 농업용 저수지의 수질 변화 연구

A Study of Changes in the Water Quality of Agricultural Reservoirs due to Drought

  • 조성현 (서울대학교 농생명과학공동기기원) ;
  • 황순호 (서울대학교 농업생명과학대학 농업생명과학연구원) ;
  • 이동근 (서울대학교 농생명과학공동기기원) ;
  • 이군택 (서울대학교 농생명과학공동기기원) ;
  • 최정훈 (한국농어촌공사 전북지역본부)
  • Cho, SungHyen (National Instrumentation Center for Environmental Management, Seoul National University) ;
  • Hwang, Soonho (Institute of Agriculture and Life sciences, College of Agriculture and Life Sciences, Seoul National University) ;
  • Lee, Dongguen (National Instrumentation Center for Environmental Management, Seoul National University) ;
  • Lee, Guntaek (National Instrumentation Center for Environmental Management, Seoul National University) ;
  • Choi, Jung-Hoon (Jeonbuk Regional Headquarter, Korean Rural Community Corporation)
  • 투고 : 2022.02.07
  • 심사 : 2022.02.20
  • 발행 : 2022.02.28

초록

빈번한 가뭄의 피해는 수자원의 양극화를 초래하고 있다. 국내에서는 2011년부터 2017년 사이에 국지적이고 주기적인 이상 가뭄이 지속되어 10년 가뭄 빈도로 설계된 소규모 저수지의 저수율이 감소하였다. 이러한 저수율의 감소는 수질을 떨어트릴 수 있고 이미 확보된 용수의 사용마저 제한할 수 있다. 따라서 가뭄에 대비하고 극복하기 위해서는 수질관리와 가뭄 빈도의 재산정이 필요하다. 이 연구는 저수지에서 수질 변화의 원인인 잠재적 오염물질을 추정하고, 가뭄 기간 동안 저수지의 저수율 감소와 그에 따른 수질 변화를 검토한 것이다.

Frequent drought damage has resulted in the polarization of water resources. In Korea, local periodic abnormal droughts continued to occur between 2011 and 2017, resulting in decreased water storage rates of small-scale reservoirs designed with a frequency of 10-year droughts. This decrease can degrade water quality and limit the use of already secured quantities. Therefore, to prepare for and overcome drought, quality management and recalculation of drought frequency are required. This study estimates the potential pollutants causing quality changes in the reservoir. In addition, it reviews the decrease in storage and consequent changes in the quality of a reservoir during drought.

키워드

참고문헌

  1. Ahn, S.-H., Kim, J., Chung, and Lee, J. E., 2020, Domestic and foreign case studies of virtual drought exercise. The Journal of Engineering Geology, 30(4), December, 2020, 415-421 p. (in Korean) https://doi.org/10.9720/KSEG.2020.4.415
  2. Choe, J. Y., 2015, Agriculture drought and countermeasures of climate change. Magazine of the Korean Society of Agricultural Engineers, 57(2), 13-21 p. (in Korean) https://doi.org/10.5389/KSAE.2015.57.5.013
  3. Demesmay, C. and Olle, M., 1997, Application of microwave digestion to the preparation of sediment samples from arsenic speciation. Fresenius Jouranl of Analytical Chemistry, 357, 1116-1121 p. https://doi.org/10.1007/s002160050316
  4. KMA (Korea Meteorological Administration), 2017, KMA weather data service: open MET data portal https://data.kma.go.kr/resources/html/en/aowdp.html (Dec. 3th 2021)
  5. KIGAM (Korea Institute of Geoscience and Mineral Resources), 1979, Geologic map of the Cheonan sheets.
  6. KIGAM (Korea Institute of Geoscience and Mineral Resources), 1980a, Geologic map of the Jincheon sheets.
  7. KIGAM (Korea Institute of Geoscience and Mineral Resources), 1980b, Geologic map of the Pyeongtaeg sheets
  8. Kim, J.S., Lee, J.Y., Lee, J.B., Song, C.M. and Park, J.S., 2016, Evaluation of agricultural water supply potential in agricultural reservoirs. Journal of the Korean Society of Agricultural Engineers 58(2), 65-71 p. (in Korean) https://doi.org/10.5389/KSAE.2016.58.2.065
  9. Kim, M.J., 2005, Arsenic dissolution and speciation in groundwater: review paper. Economic Environment Geology, 38(5), 587-597 p. (in Korean)
  10. Kim, T.W. and Park, D.H., 2018, Guidelines for extreme drought planning adaptation to climate change, Journal of the Korean Society of Civil Engineers, 66(7), 43-48 p. (in Korean)
  11. KRC (Korea Rural Community Corporation), 2012. Statistical yearbook of land and water development for agriculture. Ministry for food, Agriculture, Forestry and Fisheries, Republic of South Korea (in Korean)
  12. Korte, N.E., and Fernando, Q., 1991, A review of arsenic (III) in groundwater. Critical Reviews in Environmental Control, 21, 1-39 p. https://doi.org/10.1080/10643389109388408
  13. Krause, E. and Ettel, V.A., 1989, Solubilities and stabilities of ferric arsenate compounds. Hydrometallurgy, 22(3), 311-337 p. https://doi.org/10.1016/0304-386X(89)90028-5
  14. Lee, C.B., Jung, N.S., Park, S.K. and Jeon, S.O., 2015, A study on the typology of agricultural reservoir for effective safety inspection systems. Journal of the Korean Society of Agricultural Engineers 57(5), 89-99 p. (in Korean) https://doi.org/10.5389/KSAE.2015.57.5.089
  15. Lee, D.R., Kim, U.T. and Yoo, C., 2004, Climate change impacts on meteorological drought and flood, Journal of Korea Water Resources Association, 37(4), 315-328 (in Korean) https://doi.org/10.3741/JKWRA.2004.37.4.315
  16. Lee, H.K., Moon, H.-S. and Oh, M.S., 2007, Economics mineral deposits in Korea. Daewoo academic series, 762 p. (in Korean)
  17. Lee, J. and Noh, J., 2015, Evaluating water supply capacity of embankment raised reservoir on climate change. Journal of the Korean Society of Agricultural Engineers 57(4), 73-84 p. (in Korean) https://doi.org/10.5389/KSAE.2015.57.4.073
  18. Lim, Y.-S. and Choi, Y.-Y., 2018, An Analysis of flow rate to water intake the proper diversion requirement according to by climate change. KSWST Journal of Water Treatment, 26(2), 15-26 p. (in Korean)
  19. MAFRA (Ministry of Agriculture, Food and Rural Affairs), 2015, MAFRA data service : public data portal https://data.mafra.go.kr/mining/searchData.do (Oct. 14th 2019)
  20. McGeehan, S.L., 1996, Arsenic sorption and redox reaction: relevance to transport and remediation. Journal of environmental Science and Health. Part A, 31, 23319-2336 p.
  21. ME (Ministry of Environment) and NDIAC (National Drought Information-Analysis Center), 2018, 2013-2018 sustainable drought analysis & assessment report (in Korean), ME and NDIAC, Sejong, 127 p.
  22. Nam, W.H., Kim, T., Hong, E.M. and Choi, J.Y., 2017, Regional climate change impacts on irrigation vulnerable season shifts in agricultural water availability for South Korea. Water 9(10), 735 p. https://doi.org/10.3390/w9100735
  23. Nam, W.-H., Kwon, H.J. and Choi, K.-S., 2018, Reevaluation of design frequency of drought and water supply safety for agricultural reservoirs under changing climate and farming methods in paddy field. Journal of the Korean Society of Agricultural Engineers, 60(1), 121-131 p. (in Korean) https://doi.org/10.5389/KSAE.2018.60.1.121
  24. NIER (National Institute of Environmental Research), 2017, Soil Pollution Process Test Standards (National Institute of Environmental Research Notice No. 2017-22, Aug. 11th, 2017 enacted)
  25. NIER (National Institute of Environmental Research), 2017, Water Pollution Process Test Standards (National Institute of Environmental Research Notice No. 2021-93, Dec. 17th 2021)
  26. NGII, 1968, Aerial photo of B040, National Geographic Information Institute
  27. NGII, 1976, Aerial photo of B040, National Geographic Information Institute
  28. NGII, 2006, Aerial photo of B040, National Geographic Information Institute
  29. NGII, 2010, Aerial photo of B040, National Geographic Information Institute
  30. NGII (National Geographic Information Institute), 2021, National Geographic Information Institute website (http://map.ngii.go.kr/ms/map/NlipMap.do)
  31. Pantsar-Kalliom, M. and Manninen, P.K.G., 1997, Speciation of mobile arsenic in soil samples as a function of pH. The Science of the Total Environment, 204, 193-200 p. https://doi.org/10.1016/S0048-9697(97)00176-9
  32. Seo, H.D., Jeong, S.M., Kim, S.J. and Lee, J.H., 2008, A study on the optimal water supply using vitual drought exercise with hydrological drought index, Journal of Korea Water Resources Association, 41(10), 1045-1058 (in Korean) https://doi.org/10.3741/JKWRA.2008.41.10.1045
  33. Sung, J.-h., Chae, K.-S. and KIM, D.-E., 2017, The Effects of Droughts and Public Investments in Irrigation Facilities on Rice Yields in Korea. Korean Journal of Agricultural and Forest Meteorology, 19(4), 293-303 p. (in Korean) https://doi.org/10.5532/KJAFM.2017.19.4.293
  34. Wauchope, R.D., 1975, Fixation of arsenical herbicides phosphate, and arsenate in alluvial soils. Journal of Environmental Quality, 4, 355-358 p. https://doi.org/10.2134/jeq1975.00472425000400030015x