Monitoring of Soil Chemical Properties and Pond Water Quality in Golf Courses after Application of SCB Liquid Fertilizer

골프코스에서 SCB저농도액비 살포에 따른 토양화학성과 연못수질의 모니터링

  • Received : 2012.02.28
  • Accepted : 2012.03.26
  • Published : 2012.04.30

Abstract

As SCB liquid fertilizer (SCB) produced from or out of livestock manure by slurry composting and biofiltration process was applied in golf course, the effect on soil properties and water quality was little investigated. This study was conducted to evaluate the effect of the SCB liquid fertilizer application on environment by monitoring chemical property of soil and water quality of pond as applied chemical fertilizer (CF) and SCB. SCB application rarely contaminated the soil and pond in golf course and decreased organic matter, CEC and Ca in soil and pH and T-N for water quality of pond. In correlation coefficient between soil property parameters, water quality parameters and water quality items, SCB applied in golf course decreased organic matter and CEC in soil and increased SAR in water quality (P<0.01). Nitrogen applied in golf course with SCB or CF was significantly related to T-N in the soil (P<0.01), but not significantly related to T-N in the pond water. These results showed that SCB application little contaminated soil and pond in golf course, and was expected to control of thatch in soil and algae in pond.

친환경적인 코스관리를 위해 가축분뇨액비를 활용하는 것은 매우 효과적인 방법이지만 시비 후 토양 및 주변수계에 미치는 영향에 대한 조사는 미흡하다. 가축분뇨액비(SCB)와 화학비료(CF)를 살포한 후 토양과 수질을 주기적으로 모니터링하여 골프코스의 환경에 미치는 영향을 평가하였다. SCB 액비의 시비는 화학비료 시비 때보다 골프코스의 토양오염은 나타나지 않았고, 유기물함량, 양이온치환용량 및 치환성 칼슘이 감소하였다(P<0.01). 주변 연못물의 모니터링에서 수질의 오염은 나타나지 않았으며, SCB가 시비된 주변연못의 pH와 질소함량이 감소하였다(P<0.01). 토양과 수질의 특성 조사에서 SCB의 시비는 토양 중 유기물과 양이온치환용량을 감소시키고, 수질의 SAR를 증가시킨다(P<0.01). SCB와 CF의 질소시비는 토양의 질소함량 변화와 상관성이 높으나(P<0.01), 수질에 미치는 영향은 적었다. 이러한 결과를 종합할 때, 골프코스에서 SCB의 시비는 토양과 수질의 오염은 나타나지 않으며, 토양의 유기물과 연못물의 pH가 감소되어 토양의 대취량과 연못물의 조류의 감소효과가 기대되었다.

Keywords

References

  1. Ham, S.K. and Y.S. Kim. 2011. The effect of developed SCB liquid fertilizer on the growth of creeping bentgrass. Asian J. Trufgrass Sci. 25(1):100-105. (in Korean)
  2. Ham, S.K., Y.S. Kim, and C.H. Park. 2010. The growth effects of creeping bentgrass by SCB(slurry composting and biofiltration) liquid fertilizer application. Kor. Turfgrass Sci. 24(1):56-61. (in Korean)
  3. Ham, S.K., Y.S. Kim and H.J. Lim. 2011. The effect of developed SCB liquid fertilizer on the growth of kentucky bluegrass. Asian J. Turfgras Sci. 25(1):73-78. (in Korean)
  4. Ham, S.K., Y.S. Kim, T.S. Kim, K.S. Kim, and C.H. Park. 2009. The effect of SCB(slurry compostion and biofilter) liquid fertilizer on growth of creeping bentgrass. Kor. Turfgrass Sci. 23(1):91-100. (in Korean)
  5. Han, K.W., J.Y. Cho, and S.J. Kim. 1997. Effects of farming on soil contamination and water quality in Keum rever districts. Korean J. Environ. Agric. 16(1):19-24. (in Korean)
  6. Huh, K.Y., I.H. Kim, and D. Mrkus. 2009. Assessment of microbial decomposition in soil organic matter accumulation with depth in golf greens. J. Kor. Inst. Landscape Architec. 37(4):64-71.
  7. Huh, K.Y. and B.G. Ko. 2008. Organic matter dynamics on golf course greens. J. Kor. Inst. Landscape Architec. 36(3):21-28.
  8. Joo, J.H. and S.B. Lee. 2011. Assessment of nutrient losses in defferent slope highland soils amended with livestock manure compost. Korean J. Soil Sci. Fert. 44(3):361-367. (in Korean)
  9. Jung, K.Y., N.J. Cho, and Y.G. Jeong. 1998. Comparison of liquid composting efficiency using liquid pig different condition. Korean J. Environ. Agric. 17(4):301-305. (in Korean)
  10. Jung, K.H., C.H. Park, D.Y. Choi, J.H. Kwa, C.B. Yang, and H. Kang. 2005a. Physicochemical characteristics of fermented pig manure compost and cow manure compost by plletizing. J. of KORRA. 13:118-127. (in Korean)
  11. Jung, Y.S., J.E. Yang, and J.H. Joo. 2005b. Report for survey of non-point source pollutants in alpine area. MOE. (in Korean)
  12. Jung, K.S., S.G. Heu, E.J. Roh, D.W. Lee, J.C. Yun, and K.H. Kim. 2011. Prevalence of pathogenic bacteria in livestock manure compost and organic fertilizer. Korean J. Soil Sci. Fert. 44(5):824-829. (in Korean)
  13. Jung, Y.S., J.E. Yang, Y.K. Joo, J.Y. Lee, Y.S. Park, M.H. Choi, and S.C. Choi. 1997. Water quality of streams and agricultural wells related to defferent agricultural practiesces in small catchments of the Han river basin. Korean J. Environ. Agric. 16(2):199-205. (in Korean)
  14. Kang, B.K., H.H. Jung, and K.S. Kim. 2010. Effect of slurry composted and biofiltered solution as an organic fertilizer on the growth of zoysiagrass. Hort. Environ. Biotechnol. 51(6):507-512. (in Korean)
  15. Kim, K.N. and B.J. Kim. 2010. Comparison of thatch accumulation in warm-season and cool-season turfgrasses under USAG and mono-layer soil systems. J. Kor. Inst. Landscape Architec. 38(1):129-136. (in Korean)
  16. Kim, M.K., G.B. Jung, S.C. Hong, S.S. Kang, and S.I. Kwon. 2011. Inactivation of Escherichia coli in surface water of satruated soil with the pig manure-based liquid fertilizers by ultraviolet radiation. Korean J. Soil Sci. Fert. 44(3):368-370. (in Korean)
  17. Kim, M.K., S.O. Hur, S.I. Kwon, G.B. Jung, Y.K. Sonn, S.K. Ha, and D.B. Lee. 2010. Prediction of soil erosion from agricultural uplands under precipitation change scenarios. Korean J. Soil Sci. Fert. 43(6):789-792. (in Korean)
  18. Kim, M.K., S.I. Kwon, S.S. Kang, G.B. Jung, and K.K. Kang. 2011. Changes of soil properties in corn(Zea mays L.) fields treated with compost and liquid fertilizer. Korean J. Soil. Fert. 44(3):473-478. (in Korean)
  19. Kim, Y.S. and S.K. Ham. 2009. The effect of rainfall, irrigation and fertilizer application on water properties of pond in golf course. Kor. J. Turfgrass Sci. 23(1):1-8. (in Korean)
  20. Kwon, S.I., K.R. Kim, M.K. Kim, G.B. Jung, S.G. Hong, J.D. Shin, W.K. Park, K.S. Seong, and D.B. Lee. 2010. Nutrient transfer in the application of the swine slurry fertilizer in rice paddy. J. of KORRA. 18(4):77-85.
  21. Lee, K.B., D.B. Lee, J.G. Kang, and J.D. Kim. 1999. Seasonal variation in water quality of Mankyeoung river and groundwater at controlled horticulture region. Korean J. Soil Sci. Fert. 32(3):223-231. (in Korean)
  22. Lee, K.B., J.G. Kim, Y.K. Shin, D.B. Lee, S.B. Lee, and J.D. Kim. 2005. Effects of livestock compost and soil conditioner application on greenhouse gases emission in paddy soil. Korean J. Envrion. Agric. 24(2):177-122. (in Korean)
  23. Lee, K.H., H.H. Yoo, E.J. Park, Y.I. Jung, S.C. Tipayno, C.C. Shagol, and T.M. Sa. 2010. Effect of swine liquid manure on soil chemical properties and growth of rice(Oryza sativa L.). Korean J. Soil Sci. Fert. 43(6):945-953. (in Korean)
  24. Lee, S.B., J.G. Kim, K.B. Lee, D.B. Lee, and J.D. Kim. 2004. Decomposition of rice straw in paddy soil and affected by application of liquid pig manure. Korean J. Soil Sci. Fert. 37(2):104-108. (in Korean)
  25. Lee, S.B., K.M. Cho, M.H. Baik, J.J Lee, Y.J. Oh, T.I. Park, and K.J. Kim. 2011. Effects of application method of pig compsot and liquid pig manure on yield of whole crop barley(Hordeum vugare L.) and chemical properties of soil in Gyehwa reclaimed land. Koeran J. Soil Sci. Fert. 44(3):353-360. (in Korean)
  26. Lee, S.S., S.C. Kim, J.E. Yang, and Y.S. Ok. 2010. Seasonal monitoring of rediual antibiotics in soil, water, and sediment adjacent to a cattle manure composting facility. Korean J. Soil Sci. Fert. 43(5):612-618. (in Korean)
  27. Lim, T.J., S.D. Hong, S.H. Kim, and J.M. Park. 2008. Evaluation of yield and quality from red pepper for application rates of pig slurry composting biofiltration. Korean J. Environ. Agric. 27(2):171-177. (in Korean) https://doi.org/10.5338/KJEA.2008.27.2.171
  28. MAF. 2010. Statistical research annual report of agriculture and forestry. Ministry of Agriculture and Forestry. Seoul. Korea. (in Korean)
  29. Nam, J.J., Y.M. Yoon, Y.H Lee, K.H. So, and C.H. Kim. 2008 Life cycle assesment of greenhouse gas emission from livestock and food wastes co-digestive biogas product system. Korean J. Environ. Agric. 27(4):406-412. (in Korean) https://doi.org/10.5338/KJEA.2008.27.4.406
  30. Nam, Y., S.H. Yong, and K.K. Song. 2011. Evaluating quality of fertilizer manufactrued(livestock manure compost) with different sources in Korea. Korean J. Soil Sci. Fert. 43(5):522-527. (in Korean)
  31. NIAST. 1998. The chemical analysis of soil. NIAST. (in Korean)
  32. Park, J.H., J.K. Yeo, Y.B. Koo, W.W. Lee, H.C. Kim, and C.H. Park. 2008. Effects of slurry composting and biofiltration liquid fertilizer on growth characteristic of poplar clones in a reclaimed land mounding soil. Korean J. Soil Sci. Fert. 41(5):318-323. (in Korean)
  33. Park, J.M., T.J. Lim, S.B. Kang, I.B. Lee, and Y.I. Kang. 2010. Effect of pig slurry fertigation on soil chemical properties and yield of tomato(Lycopersicon escuentum Mill.). Koeran J. Soil Sci. Fert. 43(5):488-493. (in Korean)
  34. Park, W.K., N.B. Park, J.D. Shin, S.G. Hong, S.I. Koon, and K.K. Kang. 2011. Strudy on characteristics of biogas production and liquid fertilizer with anaerobic co-digestion of livestock manure and food waste. Korean J. Soil Sci. Fert. 44(5):895-902. (in Korean)
  35. RDA. 2009. Improvement of the swine slurry treatment and land application technology for recycling, pp. 1-50., In: kim, J.H., U.S.Jeong, J.G. Choi, J.H. Gwak, G.H. Jeong, M.S. Jeong, M.S. Han, Y.S. Song, T.H. Yun., C.Kim. (eds.) Improvement of the swine slurry treatment system by SCB rpocess. 2009 Report of National Joint Agriculture Research Project of RDA, Suwon, Korea. (in Korean)
  36. Seo, Y.H., M.S. Ahn, A.S. Kang, and Y.S. Jung. 2011. Influence of continous application of low-concentration swine slury on soil properties and yield of tomato and cucumber in a green house. Korean J. Soil Sci. Fert. 44(5):773-778. (in Korean)
  37. Sukhbir, G., S. Srinand, and C.M. Frederic. 2007. Rersistence of Listera and Salmonella during swine manure treatment. Comp. Sci. Util. 15:53-62. (in Korean) https://doi.org/10.1080/1065657X.2007.10702311