DOI QR코드

DOI QR Code

The Demand Analysis of Water Purification of Groundwater for the Horticultural Water Supply

시설원예 용수 공급을 위한 지하수 정수 요구도 분석

  • Lee, Taeseok (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Son, Jinkwan (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Jin, Yujeong (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Lee, Donggwan (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Jang, Jaekyung (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Paek, Yee (Division of Energy & Environmental Engineering, NIAS, RDA) ;
  • Lim, Ryugap (Division of Energy & Environmental Engineering, NIAS, RDA)
  • 이태석 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 손진관 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 진유정 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 이동관 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 장재경 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 백이 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과) ;
  • 임류갑 (농촌진흥청 국립농업과학원 농업공학부 에너지환경공학과)
  • Received : 2020.09.28
  • Accepted : 2020.12.04
  • Published : 2020.12.31

Abstract

This study analyzed groundwater quality in hydroponic cultivation facilities. Through this study, the possibility of groundwater use was evaluated according to the quality of the groundwater for hydroponic cultivation facilities. Good groundwater quality, on average, is pH 6.61, EC 0.27 dS/m, NO3-N 7.64 mg/L, NH4+-N 0.80 mg/L, PO4-P 0.09 mg/L, K+ 6.26 mg/L, Ca2+ 18.57 mg/L, Mg2+ 4.38 mg/L, Na+ 20.85 mg/L, etc. All of these satisfy the water quality standard for raw water in nutrient cultivation. But in the case of farmers experiencing problems with groundwater quality, most of the items exceeded the water quality standard. As a result of the analysis, it was judged that purifying groundwater of unsuitable quality for crop cultivation, and using it as raw water, was effective in terms of water quality and soil purification. If an agricultural water purification system is constructed based on the results of this study, it is judged that the design will be easy because the items to be treated can be estimated. If a purification system is established, it can use groundwater directly in the facility and for horticulture. These study results will be available for use in sustainable agriculture and environments.

본 연구에서는 시설원예 농가 중 지하수 수질에 문제가 있는 농가와 지하수를 원활히 사용하는 농가의 수질 성분을 분석하고 비교하였다. 이를 통해, 국내 수경재배 시설을 대상으로 지하수 수질에 따라 양액 재배용 원수로 사용 가능성을 평가하였다. 지하수 수질에 문제가 없는 농가의 지하수는 평균적으로 pH 6.61, EC 0.27 dS/m, NO3-N 7.64 mg/L, NH4+-N 0.80 mg/L, PO4-P 0.09 mg/L, K+ 6.26 mg/L, Ca2+ 18.57 mg/L, Mg2+ 4.38 mg/L, Na+ 20.85 mg/L, Cl- 18.10 mg/L, S2- 7.97 mg/L, HCO3- 55.06 mg/L, Fe 0.09 mg/L, Mn 0.01 mg/L, Zn 0.04 mg/L, Cu 0.01 mg/L, B 0.04 mg/L, Si4+ 8.93 mg/L, Mo 0.01 mg/L로 나타났으며, 모두 양액 재배용 원수의 수질기준을 만족하였다. 반면, 지하수 수질에 문제가 있는 농가의 경우 대다수의 항목이 양액재배용 원수의 수질기준을 초과하였다. 이러한 성분분석 결과로 보아 작물재배에 적합하지 않은 수질의 지하수를 정수하여 원수로 사용하는 것은 지하수의 재충전, 토양정화 측면에서 효과가 있다고 판단된다. 본 연구결과를 바탕으로 농업용 정수시스템을 구성한다면 우선처리 대상 항목 및 연계 항목을 추측할 수 있어 설계가 용이할 것으로 판단된다. 또한 이러한 농업용 정수시스템을 정착시킨다면 시설원예 단지에서 직접 지하수를 사용하면서 재충전 및 재이용할 수 있고, 결과적으로 지속가능한 농업과 국토 정화에 이바지 할 수 있는 기본 정보를 제공한다.

Keywords

Acknowledgement

본 연구는 2020년도 농촌진흥청 국립농업과학원 연구개발사업(과제번호: PJ014911)의 지원에 의해 이루어진 것임.

References

  1. J. K. Son, D.G. Choi, S.Y. Lee, D.H. Kang, M.J. Park, S.W. Yun, N.C. Kim, M.J. Kong, "Comparative Analysis of Groundwater-Ecosystem Service Value of Protected Horticulture Complex and Paddy Fields", J. The Korean Society of Rural Planning, Vol.24, No.2, pp.47-58, 2018. DOI : https://doi.org/10.7851/Ksrp.2018.24.2.047
  2. J.W. Lee, C.H. Baek, H.W. Lee, S.W. Chung, "Current status and development of greenhouse models for oriental melon cultivation in Seongju region", Protected Horticulture and Plant Factory, Vol.23, No.2, pp.95-108, 2014. DOI : https://doi.org/10.12791/KSBEC.2014.23.2.95
  3. J.K. Son, M.J. Kong, D.H. Kang, M.J. Park, S.W. Yun, S.Y. Lee, "The Change Analysis of Plant Diversity in Protected Horticulture of Agricultural Ecosystems", Journal of Wetlands Research, Vol.18, No.2, pp.173-182, 2016a. DOI : https://doi.org/10.17663/JWR.2016.18.2.173
  4. J.K. Son, M.J. Kong, D.H. Kang, B.H. Kang, S.W. Yun, S.Y. Lee, "The Comparative Studies on the Terrestrial Insect Diversity in Protected Horticulture Complex and Paddy Wetland", Journal of Wetlands Research, Vol.18, No.4, pp.395-402, 2016b. DOI : https://doi.org/10.17663/JWR.2016.18.4.386
  5. M.J. Kong, S.Y. Lee, D.H. Kang, M.J. Park, S.W. Yun, J.H. Shin, J.K. Son, "A Study on the Image Evaluation for the Improvement of the Landscape of Horticultural Complex in Rural Area", Protected Horticulture and Plant Factory, Vol.26, No.2, pp.78-86, 2017. DOI : https://doi.org/10.12791/KSBEC.2017.26.2.78
  6. S.U. Jo, D.H. Kim, J.S. Yang, K.Y. Cung, K. Baek, "Electrokinetic Restoration of Saline Agricultural Land", Journal of soil and groundwater environment, Vol.17, No.4, pp.19-26, 2012. DOI : https://doi.org/10.7857/JSGE.2012.17.4.019
  7. A. Pulido-Bosch, P. Pulido-Lebeuf, L. Molina-Sanchez, A. Vallejos, W. Martin-Rosales, "Intensive agricultura, wetlands, quarries and water management. A case study (Campo de Dalias, SE Spain)", Environmental Geology, Vol.40, pp.163-168, 2000. DOI : https://doi.org/10.1007/s002540000118
  8. F. Sanchez-Martos, A. Pulido-Bosch, L. Molina-Sanchez, A. Vallejos-Izquierdo, "Identification of the origin of salinization in groundwater using minorions (Lower Andarax, Southeast Spain)", The Science of the Total Environment, Vol.297, pp.43-58, 2002. DOI : https://doi.org/10.1016/S0048-9697(01)01011-7
  9. D. Tout, "The horticultura industry of Almeria province, Spain", The Geographical Journal, Vol.156, No.3, pp.304-312, 1990. DOI : https://www.jstor.org/stable/635531 https://doi.org/10.2307/635531
  10. Q. S. Cristina, J.C. Antonio, C. Hermelindo, G.L. Marina. "Impacts of land use change on ecosystem services and implications for human well-being in Spaish drylands", Land Use Policy, Vol.54, pp.534-548, 2016. DOI : https://doi.org/10.1016/j.landusepol.2016.03.011
  11. Y.J. Lee, S.J. Kim, P.S. Kim, U.J. Joo, Y.S. Yang, "Study on the Effective Calculation Method of Irrigation Water in a Paddy Fields Area", Journal of The Korean Society of Agricultural Engineeres, Vol.48, No.3, pp.11-20, 2006. DOI : https://doi.org/10.5389/KSAE.2006.48.3.011
  12. W.H. Nam, J.Y. Choi, E.M. Hong, J. T. Kim, "Assessment of Irrigation Efficiencies using Smarter Water Management", Journal of The Korean Society of Agricultural Engineers, Vol.55, No.4, pp.45-53, 2013. DOI : https://doi.org/10.5389/KSAE.2013.55.4.045
  13. K-water. 2020. https://www.water.or.kr/wstatic/easy/easys030101.do?gubun=34
  14. J.Y. Park, Y.J. Kim, "The Effects of Renewable Energy in Agricultural Sector", Journal of the Korea Academia-Industrial, Vol.20, No.1, pp.224-235, 2019. DOI : https://doi.org/10.5762/KAIS.2019.20.1.224
  15. Ministry of Environment(MOE) and K-water, "2019 Annual Report of Groundwater Investigation", 2019. http://me.go.kr/home/web/index.do?menuId=10272
  16. M.S. Jeong, C.H. Lee, J.H. Lee, I.P. Hong, "Analysis of hydrological drought considering MSWSI and precipitation", Journal of the Korea Academia-Industrial cooperation Society, Vol.18, No.12, pp.668-678, 2017. DOI : https://doi.org/10.5762/KAIS.2017.18.12.668
  17. L.J. Won, M.H. Koo, H.S. Kim, "Simulation of Groundwater Flow and Sensitivity Analysis for a Riverbank Filtration Site in Koryeong, Korea", J. Soil Grounw. Environ, Vol.11, No.2, pp.45-55, 2006. https://www.koreascience.or.kr/article/JAKO20061565 1244329.pdf
  18. B.S. Lee, Y.L. Kim, K.J. Choi, S.H. Song, J.H. Kim, "Rural Groundwater Monitoring Network in Korea", J. Soil Groundw. Environ, Vol.19, No.4, pp.1-11, 2014. DOI : https://doi.org/10.7857/JSGE.2014.19.4.001
  19. J.K. Son, D.K. Choi, M.J. Kong, S.W. Yun, M.J. Park, D.H. Kand, "The Water Quality and Purification Load Assessment of Drain Water of Facility Horticulture Areas", Journal of Environmental Science International, Vol.28, No.12, pp.1125-1234, 2019. DOI : https://doi.org/10.5322/JESI.2019.28.12.1225
  20. D.H. Kang, S.Y. Lee, J.K. Kim, H.K. Choi, M.J Park, J.S. Yeon, J.K. Son, "The Meteorological Themes Selection for the Site Selection of Protected Horticulture Complex in Saemanguem", Protected Horticulture and Plant Factory, Vol.24, No.4, pp.287-295, 2015. DOI : https://dx.doi.org/10.12791/KSBEC.2015.24.4.287
  21. J.H. Kim, J.S. Lee, W.J. Kim, S.G. Jung, Y.T. Yun, S.K. Kwun, "Groundwater and Soil Environment of Plastic Film House Fields around Central Part of Korea", Korean J. Environmental Agriculture, Vol.21, No.2, pp.109-116, 2002. DOI : https://doi.org/10.5338/KJEA.2002.21.2.109
  22. B.S. Lee, Y.I. Kim, K.J. Choi, S.H. Song, J.H. Kim, D.K.Woo, M.K. Seol, K.Y. Park, "Rural groundwater monitoring network in Korea", Journal of Soil and Groundwater Environment, Vol.19, No.4, pp.1-11, 2014. DOI : https://doi.org/10.7857/JSGE.2014.19.4.001
  23. J.H. Kim, T.J. Cheong, J.S. Ryu, R.H. Kim, "Characteristics of Fe Reduction Process of Shallow Groundwater in a Reclaimed Area, Kim-je", Econ. Environ, Geol, Vol.46, No.1, pp.39-50, 2013. DOI : https://doi.org/10.9719/eeg.2013.46.1.39
  24. C.H. Kang, I.S. Lee, S.J. Kwon, "Screening for Fittest Miscellaneous Cereals for Reclaimed Land and Functionality Improvement of Sorghum bicolor Cultivated in Reclaimed Land", Korean J. Crop Sci, Vol.64, No.2, pp.109-126, 2019. DOI : https://doi.org/10.7740/kjcs.2019.64.2.109
  25. S.Z. Lari, N.A. Khan, K.N. Gandhi, T.S. Meshram, N.P. Thacker, "Comparison of pesticide residues in surface water and ground water of agriculture intensive areas", Journal of Environmental Health Science and Engineering, Vol.12, No.1, p.11, 2014. DOI : https://doi.org/10.1186/2052-336X-12-11
  26. Korea Rural Community Corporation(KRCC), "Development of Alternative Water by Desalination Technology", Rural Research Institute Knowledge Sharing, p.5, 2017. https://www.ekr.or.kr/homepage/main.krc
  27. J.H. Bae, Y.B. Lee, "Analysis of well water quality for hydroponic farms in Chollbuk-do area", J. Bio. Fac. Env, Vol.5, No.2, pp.131-137, 1996. https://agris.fao.org/agris-search/search.do?recordID=KR9701438
  28. K.Y. Choi, J.S. Oh, S.C. Lee, S.T. Park, N. Gantumur, H.J. Yoo, Y.B. Lee, "Ion characteristic of the ground water in hydroponic farms of paprika for export", Journal of Bio-Environment Control, Vol.19, No.2, pp.70-76, 2010. https://www.koreascience.or.kr/article/JAKO201030853097081.pdf
  29. Rural Development Administration(RDA), "Symposium for development direction of greenhouse adaptive in land", RDA, Suwon, Korea, pp.4-30, 2012. DOI : https://doi.org/10.12791/KSBEC.2015.24.2.085
  30. H.S. Ryu, J.Y. Lee, C.W. Lim, K.T. Kim, "Hydrochemical characteristics of groundwater and stream water in a karst area of Samcheok, Korea", Journal of the Geological Society of Korea, Vol.55, No.1, pp.117-129, 2019. DOI : https://doi.org/10.14770/jgsk.2019.55.1.117
  31. S.B. Lee, C.O. Hong, J.H. Oh, G. Jessie, P.J. Kim, "Effect of Irrigation Water Salinization on Salt Accumulation of Plastic Film House Soil around Sumjun River Estuary", Korean Journal of Environmental Agriculture, Vol.27, No.4, pp.349-355, 2008. DOI : https://doi.org/10.5338/KJEA.2008.27.4.349
  32. N.C. Mondal, V.P. Singh, V.S. Singh, V.K. Saxena, "Determining the interaction between groundwater and saline water through groundwater major ions chemistry", Journal of Hydrology, Vol.388, No.1-2, pp.100-111, 2010. DOI : https://doi.org/10.1016/j.jhydrol.2010.04.032
  33. K.B. Lee, D.B. Lee, J.G. Kang, J.D. Kim, "Seasonal Variation in Water Quality of Mankyeong River and Groundwater at Controlled Horticulture Region", J. Korean Soc. Soil Sci. Fert, Vol.32, No.3, pp.223-231, 1999. https://www.koreascience.or.kr/article/JAKO199919262656843.pdf
  34. J.H. Kim, C.M. Choi, J.S. Lee, S.G. Yun, J.T. Lee, K.R. Cho, S.J. Lim, S.C. Choi, G.J. Lee, Y.S. Kwon, K.C. Kyung, M.J. Uhm, H.K. Kim, Y.S. Lee, C.Y. Kim, S.T. Lee, J.S. Ryu, "Characteristics of Groundwater Quality for Agricultural Irrigation in Plastic Film House Using Multivariate Analysis", Korean Journal of Environmental Agriculture, Vol.27, No.1, pp.1-9, 2008. DOI : https://doi.org/10.5338/KJEA.2008.27.1.001
  35. Y.J. An, W.M. Lee, C.G. Yoon, "Evaluation of Korean water quality standards and suggestion of additional water parameters", Kor. J. Limnol, Vol.39, No.3, pp.285-295, 2006. https://www.koreascience.or.kr/article/JAKO200618317187389.pdf
  36. S.J. Lim, "Design and implementation of agriculture system for Internet of Things", Journal of the Korea Academia-Industrial cooperation Society, Vol.16, No.12, pp.8896-8900, 2015. DOI : https://doi.org/10.5762/KAIS.2015.16.12.8896
  37. E. Knox, D.W. Moody, "Influence of hydrology, soil properties, and agricultural land use on nitrogen in ground water. In managing nitrogen for ground water quality and farm profitability", Soil Sci. Soc. Am, Vol.55, No.1, pp.19-57, 1991. DOI : https://doi.org/10.2136/1991.managingnitrogen.c3
  38. G.T. Kim, K.Y. Chung, J.K. Park, "Recent water treatment technology for unconventional natural resource development", Korean Chemical Engineering Research, Vol.52, No.2, pp.154-165, 2014. DOI : https://doi.org/10.9713/kcer.2014.52.2.154
  39. Y. Choi, S. Kim, S. Lee, "Comparison of performance and economics of reverse osmosis, membrane distillation, and pressure retarded osmosis hybrid systems", Desalination and Water Treatment, Vol.77, pp.19-29, 2017. DOI : https://doi.org/10.5004/dwt.2017.20660
  40. C.A. Quist-Jensen, F. Macedonio, E. Drioli, "Membrane technology for water production in agriculture: Desalination and wastewater reuse", Desalination, Vol.364, pp.17-32, 2015. DOI : https://doi.org/10.1016/j.desal.2015.03.001
  41. P. Gopinath, I. Vethamoni, M. Gomathi, "Aeroponics soilless cultivation system for vegetable crops", Chem. Sci., Rev. Lett., Vol.6, No.22, pp.838-849, 2017. https://chesci.com/wp-content/uploads/2017/01/V6i22_30_CS072048042_Irene_838-849.pdf
  42. J.H. Bae, Y.R. Cho, Y.B. Lee, "Field survey for well water quality in hydroponic farms", J. Bio. Fac. Env, Vo.4, No.1, pp.80-88, 1995. https://agris.fao.org/agris-search/search.do?recordID=KR9504357
  43. G.J. Lee, B.G. Kang, K.Y. Lee, T. Yun, S.G. Park, C.H. Lee, "Chemical characteristic of ground water for hydroponics and wate nutrient solution after hydroponics in Chungbuk Area", Korean Journal of Environmental Agriculture, Vol.26, No.1, pp.42-48, 2007. DOI : https://doi.org/10.5338/KJEA.2007.26.1.042
  44. G. Sappa, S. Ergul, F. Ferranti, "Water quality assessment of carbonate aquifers in southern Latium region, Central Italy: a case study for irrigation and drinking purposes", Applied Water Science, Vol.4, No.2, pp.115-128, 2014. DOI : https://doi.org/10.1007/s13201-013-0135-9
  45. I.D. Sasowsky, C.T. Dalton, "Measurement of pH for field studies in karst areas", Journal of Cave and Karst Studies, Vol.67, No.2, pp.127-132, 2005. http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.554.188&rep=rep1&type=pdf