Effects of Organic Liquid Fertilizer Fertigation on Growth and Fruit Quality of Hot Pepper

유기액비 관비가 고추 생육 및 과실 품질에 미치는 영향

  • 주선종 (충북농업기술원 원예생명연구과) ;
  • 이광재 (충북농업기술원 원예생명연구과)
  • Received : 2009.11.17
  • Accepted : 2009.12.24
  • Published : 2010.03.31

Abstract

The present study was carried out to evaluate the effects of organic liquid fertilizer (OLFs) fertigation on the growth and fruit quality of hot pepper (Capsicum annuum L.) cv. 'Nokkwang (Seminis Korea)'. Treatments were given with control (chemical feritilzer), OLF I(fowl dropping : fish meal : soybean meal, 2:1:1), OLF II(fowl dropping : bone meal : soybean meal, 2:1:1), OLF III(fowl dropping : bone meal, 1:1), and OLF IV(fowl dropping : rice bran : soybean meal, 2:1:1). The composition ratio of OLF based on weight to weight. The pH and EC of OLFs according to different material and compositions ranged from 6.5 to 6.8, and from 2.91 to $3.69dS{\cdot}m^{-1}$, respectively. The C/N ratio was the highest as 5.75 in OLF Ⅳ, and there was no difference among the treatments in C/N ratio of the exception of OLF IV. In OLF IV total fruit weight was the highest as 1,558g per plant and total fruit number increased as 23.7% compared to control. The content of capsaicin in the ripened pepper increased with OLF I and II treatments, and decreased with OLF III and IV treatments compared to control of $662mg{\cdot}kg^{-1}$, but the soluble solid content was the highest with OLF IV treatment as $10.0^{\circ}Brix$.

본 연구는 유기액비 관비가 '녹광(세미니스)' 고추의 생육과 수량에 미치는 영향을 구명코자 실시하였다. 유기액비 조성에 따라 대조구(화학비료시비), 유기액비 I(계분 : 어분 : 대두박, 2:1:1), 유기액비 II(계분 : 골분 : 대두박, 2:1:1), 유기액비 III(계분 : 골분, 1:1), 유기액비 IV(계분 : 쌀겨 : 대두박, 2:1:1) 등 5처리를 두었다. 유기액비 조성재료와 비율에 따른 액비의 pH와 EC는 각각 6.5~6.8와, $2.91{\sim}3.69dS{\cdot}m^{-1}$의 분포를 나타냈다. 유기액비 조성 비율에 따른 C/N율은 유기액비 IV가 5.75로 가장 높았으며, 그 외 처리는 처리간에 차이가 없었다. 주당 총과중은 유기액비 IV 처리구에서 1,558g으로 가장 무거웠으며 총과수는 대조구에 비해 23.7% 증가하였다. 홍고추의 캡사이신 함량은 유기액비 I과 II에서 대조구에 비하여 증가하였으며, 유기액비 III과 IV 관비구에서는 감소하였다. 당도는 유기액비 IV 관비구에서 $10.0^{\circ}Brix$로 가장 높았다.

Keywords

References

  1. Baeg, C. O., S. G. Kang, and K. S. Lee. 1996. A status of agricultural water quality and improvable. Kor. J. Environ. Agr. 15: 506-519.
  2. Han, K. H. 1978. Utilization of industrial wastes for organic fertilizer use. J. Kor. Soc. Soil Sci. Fert. 11: 195-205.
  3. Hurst, W. J., J. R. Martin, and B. L. Zoumas. 1979. Application of HPLC characterization of individual carbohydrates in foods. J. Food Sci. 44: 892-895. https://doi.org/10.1111/j.1365-2621.1979.tb08529.x
  4. Hwang, S. W., J. K. Sung, B. K. Kang, C. S. Lee, S. G. Yun, T. W. Kim, and K. C. Eom. 2004. Polyamine biosynthesis in red pepper and Chinese cabbage by the application of liquid pig manure. Kor. J. Soil Sci. Fert. 37: 171-176.
  5. Jang, G. W. 1995. Development way hereafter for quality improvement of by-product fertilizer. Symposium on problems and its solution of organic wastes fertilize. J. Kor. Soil Sci. Fert. pp. 70-112.
  6. Jeong, G. Y., J. S. Shin, Y. S. Park, and K. H. Han. 1981. Use of industrial wastes as sources of organic fertilizer. J. Kor. Soil Sci. Fert. 14: 83-87.
  7. Jeong, K. H., T. I. Kim, K. C. Choi, J. D. Han, and W. H. Kim. 1997. Changes of compost properties during aerobic composting of poultry manure. Kor. J. Animal Sci. 39: 731-738.
  8. Joo, S. J., S. M. Shon, and J. H. Kim. 2001. Development of organic liquid fertilizer for leaf vegetable under green house. Kor. J. Org. Agr. 9: 83-99.
  9. Kang, H. W., R. Zhang, and I. K. Rhee. 2000. Effect of aeration rates on emissions of oxygen and sulfur compound gases during composting of dairy manure. J. Kor. Soc. Soil. Sci. 33: 472-481.
  10. Kim, C. S. 1975. The Effect of fertilizers, growth regulators, and air temperature on the fruit setting of red pepper. J. Kor. Soc. Hort. Sci. 16: 167-184.
  11. Kim, S. K., B. T. Kim, and J. W. Kim. 1988. A study on the optimal bulking agent for the night soil composting using coal briquette ash. Kor. J. Soc. Waste Mgt. 5: 75-81.
  12. Kim, W. B., W. H. Bae, S. W. Jang, Y. G. Kwon, K. Heo, and S. C. Lim. 2002. A study on the fertigation of swine liquid manure for broccoli and celery western vegetables. Korean J. Plant Res. 15: 50-56.
  13. Lee, S. W. and S. Y. Cho. 1971. Physio-chemical studies on the maturity of hot pepper fruits variations in hot-taste constituents. J. Kor. Soc. Hort. Sci. 10: 31-34.
  14. Miller, C. H. 1961. Some effects of different levels of five nutrient elements on bell peppers. Proc. Amer. Soc. Hort. Sci. 77: 440-448.
  15. Ministry of Environment of Korea. 2003. Standard of water for agriculture. Ministry of Environment. Goachon, Korea.
  16. Oh, W. K. 1984. Dynamics of nitrogen in poultry manure during its processing. Kor. J. Environ. Agr. 3: 57-62.
  17. Park, S. G., B. S. Lee, and S. J. Jeong. 1999. Comparisons of growth and fruit quality of Citrullus lanatus cv. Mudeungsan and Citrullus vulgaris cv. Dalgona grown in fertigation and soilless culture. J. Bio-Environ. Cont. 8: 19-29.
  18. Park, Y. S., K. S. Hwang, H. J. Kim, S. J. Lee, and Y. H. Kwak. 1996. Effects of rotational cropping including green pepper on crop growth, quantity, soil chemical properties, and microflora in vinyl house. RDA J. Agr. Sci. 38: 376-381.
  19. Rural Development Administrations of Korea. 2006. Prescription of standards fertilization according to different crops. National Academy of Agricultural Science. Rural Development Administrations of Korea. p. 246.
  20. Seo, Y. H., B. O. Cho, and J. K. Choi. 2009. Control of diseases and insects for pesticidefree cultivation of leafy vegetables. Kor. J. Org. Agr. 17: 253-264.
  21. Shin, J. S. 1984. Use of industrial wastes as sources of organic fertilizer. J. Kor. Soc. Soil Sci. Fert. 17: 51-54.
  22. Yang, S. G., K. J. Choi, J. K. Kim, K. P. Han, and G. C. Jeong. 1995. Effects of ionic strength of nutrient solution on the early growth and the mineral composition of xylem sap in pepper plant. J. Kor. Soc. Hort. Sci. 36: 299-303.