Effects of Organic Materials on Changes in Soil Nutrient Concentrations and Nutrient Uptake Efficiency in Sorghum-Sudangrass Hybrid (Sorghum bicolor (L.) Moench)

유기자재 처리가 토양의 양분동태 변화와 수수$^*$수단그라스의 양분이용 효율에 미치는 영향

  • Lee, Youn (Organic Agriculture Division, National Academy of Agricultural Science) ;
  • Choi, Hyun-Sug (Organic Agriculture Division, National Academy of Agricultural Science) ;
  • Lee, Sang-Min (Organic Agriculture Division, National Academy of Agricultural Science) ;
  • Jung, Jung-Ah (Organic Agriculture Division, National Academy of Agricultural Science) ;
  • Kuk, Yong-In (Department of Development in Resource Plants, Sunchon National University)
  • 이연 (국립농업과학원 유기농업과) ;
  • 최현석 (국립농업과학원 유기농업과) ;
  • 이상민 (국립농업과학원 유기농업과) ;
  • 정정아 (국립농업과학원 유기농업과) ;
  • 국용인 (순천대학교 자원식물개발학과)
  • Received : 2011.10.20
  • Accepted : 2012.04.16
  • Published : 2012.06.30

Abstract

This study was conducted to evaluate soil nutrient concentrations and fertilizer recovery of sorghum- sudangrass hybrid (Sorghum bicolor (L.) Moench) as affected by organic nutrient sources. The treatments included livestock compost, alfalfa hay, oilcake, and chemical fertilizer. Nutrient applications were made at the rates equivalent to approximately 210 kg N per hectare. The oilcake and alfalfa materials had the lowest C : N ratio, but the livestock compost had the highest C:N ratio such as 33.7 : 1. The livestock compost resulted in the highest input to ground surface, which increased nutrient concentrations in soil. The oilcake and alfalfa materials with low C : N ratios increased N-mineralization rate in soil compared to livestock. The N uptake efficiency in plants treated by alfalfa or oilcake was approximately 60% of those treated with chemical fertilizer; but those with livestock compost had N uptake efficiency lower than 20%. The $P_2O_5$ uptake efficiency was the highest in the plants treated with the alfalfa hay, but the lowest in those with livestock compost. Recommendation of organic material selection should consider C:N ratio of the raw materials based on the individual crop requirement.

본 연구는 탄소 : 질소(탄질)비가 다른 유기자재를 시용하였을 때 시기별 양분의 동태와 유기재배 수수$^*$수단그라스의 비료이용율에 미치는 영향을 조사하였다. 처리구는 질소함량 210kg/ha 수준으로 축분퇴비, 알팔파, 유박, 화학비료를 포함하였다. 유박과 알팔파는 가장 낮은 탄질비를 나타내었고 축분퇴비는 33.7 : 1의 가장 높은 탄질비를 보였다. 축분퇴비는 시용량이 가장 많았고 이에 따라 토양내 양분농도를 증가시켰다. 탄질비가 낮은 유박과 알팔파는 축분퇴비에 비해서 질소의 무기화율을 촉진시켰다. 질소이용효율은 화학비료구에 비해서 알팔파와 유박이 약 60% 전후를 나타내었고, 축분퇴비는 20% 이하의 효율이 관찰되었다. 인산의 이용효율은 알팔파가 가장 높았고 축분퇴비가 가장 낮았다. 이에 따라 탄질비를 고려한 유기자재를 선택해서 밭토양에 시비를 해야 할 것으로 판단되었다.

Keywords

References

  1. Choi, H.S. and C.R. Rom. 2011. Estimated nitrogen use efficiency, surplus, and partitioning in young apple trees grown in varied organic production systems. Sci. Hort. 129:674-679. https://doi.org/10.1016/j.scienta.2010.11.019
  2. Faust, M. 1989. Physiology of temperate zone fruit trees. John Wiley & Sons, Beltsville, USA, pp. 1-51.
  3. Gale, E.S., D.M. Sullivan, C.G. Cogger, A.I. Bary, D.D. Hemphill, and E.A. Myhre. 2006. Estimation plant-available nitrogen release from manures, composts, and specialty products. J. Environ. Qual. 35: 2321-2332. https://doi.org/10.2134/jeq2006.0062
  4. Hartz, T.K., J.P. Mitchell, and C. Giannini. 2000. Nitrogen and carbon mineralization dynamics of manures and composts. HortScience 35:209-212.
  5. Havlin, J., J.D. Beaton, S.L. Tisdale, and W.L. Nelson. 2005. Soil fertility and fertilizers: an introduction to nutrient management. p. 66. In: Soil acidity and alkalinity. 7th ed., Person education, Upper Saddle, USA.
  6. Khanif, Y.M., O. Van Cleemput, and L. Baert. 1984. Field study of the fate of labelled fertilizer nitrate applied to barley and maize in sandy soils. Fert. Res. 5:289-294. https://doi.org/10.1007/BF01051628
  7. Kim, H.W., H.S. Choi, B.H, Kim, H.J. Kim, K.J. Choi, D.Y. Chung, Y. Lee, and K.L. Park. 2011. Comparison of characteristics of a paddy soil and growth and production of rice as affected by organic nutrient sources. J. Bio-Environ. Control 20:241-245.
  8. Lim, K.H., H.S. Choi, H.J. Kim, B.S. Kim, D.I. Kim, S.G. Kim, J.S. Kim, W.S. Kim, and Y. Lee. 2011. Effects of seeding time on growth and nutrient contribution of ryegrass and hairy vetch. J. Bio-Environ. Control 20:134-138.
  9. MIFAFF. 2011. The five-year plan for the third green agriculture cultivation, pp. 1-124. Environment-Friendly Agriculture Division, MIFAFF, Gwacheon, Korea.
  10. RDA. 2003. Analysis Standard of Agricultural Science & Technology. RDA, Suwon, Korea.
  11. Van Cleemput, O. and L. Baert. 1984. The fate of labelled fertilizer nitrogen split-applied to winter wheat on a clay soil. Pedol. 34:291-300.