Browse > Article

Relationship between Fertilizer Application Level and Soil Chemical Properties for Strawberry Cultivation under Greenhouse in Chungnam Province  

Choi, Moon-Tae (Chungcheongnam-do Agricultural Research and Extension Services)
Lee, Jin-Il (Chungcheongnam-do Agricultural Research and Extension Services)
Yun, Yeo-Uk (Chungcheongnam-do Agricultural Research and Extension Services)
Lee, Jong-Eun (Chungcheongnam-do Agricultural Research and Extension Services)
Lee, Bong-Chun (Chungcheongnam-do Agricultural Research and Extension Services)
Yang, Euy-Seog (Chungcheongnam-do Agricultural Research and Extension Services)
Lee, Young-Han (Gyeongsangnam-do Agricultural Research and Extension Services)
Publication Information
Korean Journal of Soil Science and Fertilizer / v.43, no.2, 2010 , pp. 153-159 More about this Journal
Abstract
Nowadays, Korean farmers rely more on chemical fertilizers than low input sustainable agriculture drawn from the farm itself. In order to improve soil nutritional imbalance for environment friendly agriculture in greenhouse, we have carried out a relationship between fertilizer application level, and soil chemical properties for strawberry cultivation at 56 sites in Chungnam Province. Average amount of nitrogen as basal fertilization was 92.3 Mg $ha^{-1}$ which higher 2.6 times compared to standard amount of basal fertilizer. In case of compost application more than 30 Mg $ha^{-1}$, excessive ratio compared to optimum level was higher 1.8 times for EC value, 3.0 times for available phosphate, 2.6 times for exchangeable potassium, 1.7 times for exchangeable calcium, and 1.6 times for exchangeable magnesium, respectively. Amounts of compost application significantly correlated with available phosphate (r=0.370, $p{\leq}0.01$), exchangeable potassium(r=0.429, $p{\leq}0.01$), exchangeable calcium(r=0.404, $p{\leq}0.01$), exchangeable magnesium(r=0.453, $p{\leq}0.01$), and exchangeable sodium(r=0.369, $p{\leq}0.01$), respectively. Our results suggest that soil nutrients management for sustainable agriculture was optimum fertilization based on soil testing for strawberry cultivation in greenhouse.
Keywords
Strawberry; Chemical property; Farming information; Principal component;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 RDA (Rural development administration). 2009. Farming textbook of Strawberry. RDA, Suwon, Korea.
2 Kim, J.H., J.S. Lee, W.I. Kim, G.B. Jung, S.G. Yun, Y.T. Jung, and S.K. Kwun. 2002. Groundwater and soil environment of plastic film house fields around central part of Korea. Korean J. Environ. Agric. 21:109-116.   과학기술학회마을   DOI
3 Lee, J.T., G.J. Lee, Y.S. Zhang, S.W. Hwang, S.J. Im, C.B. Kim, and Y.H. Mun. 2006. Status of fertilizer application and soil management for major vegetable crops in farmer's fields of alpine area. Korean J. Soil Sci. Fert. 39:357-365.
4 Lee, S.E., and C.S. Lee. 1994. Nutrient balance and application efficiency of nitrogen and potassium in salt-accumulated greenhouse soil. Korean J. Soil Sci. Fert. 27:78-84.
5 Kang, B.K., I.M. Jeong, J.J. Kim, S.D. Hong, and K.B. Min. 1997. Chemical characteristics of plastic film house soils in Chungbuk area.
6 Chung, B.Y., K.S. Lee, M.K. Kim, Y.H. Choi, M.K. Kim, and J.Y. Cho. 2008. Salt accumulation and desalinization of rainfall interception culture soils of Rubus sp. in gochang-gun. Jeollabuk-do. Korean J. Soil Sci. Fert. 41:310-317.
7 Hannan, J.J. 1998. Greenhouses: Advanced technology for protected horticulture, CRC Press LLC. Boca Roton. Florida.
8 Kang, B.K., H.J. Kim., K.J. Lee, J.J. Kim, and S.D. Hong. 2001. Salt movement of soils by runoff in green house area. Korean J. Environ. Agric. Korean J. Soil Sci. Fert. 30:265-271.
9 Cho, K.R., C.S. Kang, T.J. Won, and K.Y. Park. 2006. Effects of compressed expansion rice hull application and drip irrigation on the alleviation of salt accumulation in the plastic film house soil. Korean J. Soil Sci. Fert. 39:372-379.
10 Chang, K.W., J.H. Hong. J.J. Lee, K.P. Han, and N.C. Kim. 2008. Evaluation of compost maturity by physicochemical properties and germination index of livestock manure compost. Korean J. Soil Sci. Fert. 41:137-142.
11 Lee, Y.H., M.S. Yang, and H.D. Yun. 1996. Effect of plant-growth-promoting-bacteria inoculation on the growth and yield of red pepper (Capsicum annuum L.) with different soil electrical conductivity level. Korean J. Soil Sci. Fert. 29:396-402.
12 Wagstaffe, A., and H.B. Battey. 2007. Tunnel production of strawberry in the UK: a review. In: Takeda, F., Handley. D.T., Poling, E.B. (Eds.), Proc. North Am. Straw. Symp., CAL, pp. 23-28.
13 Yuk, CS., J.J. Kim, S.D. Hong, and B.G. Kang. 1993. Salt accumulation in horticultural soils of PE film house in Chungbuk area. Korean J. Soil Sci. Fert. 26:172-180.
14 SAS Institute. 2006. SAS 9.1.3 Version. SAS Iust., Cary. NC.
15 Ok, Y.S., J.E. Yang, K.Y. Yoo. Y.B. Kim, D.Y. Chung, and Y.H. Park. 2005. Screening of adsorbent to reduce salt concentration in the plastic film house soil under continuous vegetable cultivation. Korean J. Environ. Agric. 24:253-260.   과학기술학회마을   DOI
16 Park, B.G., T.H. Jeon, Y.H. Kim, and Q.S. Ho. 1994. Status of farmers' application rates of chemical fertilizer and farm manure for major crops. Korean J. Soil Sci. Fert. 27:238-246.
17 NIAST (National Institute of Agricultural Science and Technology). 2005. Annual report of the monitoring project on agro-environmental quality in 2004. RDA, Suwon, Korea.
18 NIAST (National Institute of Agricultural Science and Technology). 2006a . Annual report of the monitoring project on agro-environmental quality in 2005. RDA, Suwon, Korea.
19 NIAST (National Institute of Agricultural Science and Technology). 2006b. Fertilizer recommendation for crops. RDA, Suwon, Korea.
20 NIAST (National Institute of Agricultural Science and Technology). 2009. Annual report of the monitoring project on agro-environmental quality in 2008. RDA, Suwon, Korea.
21 Lee, Y.H., W.S. Cho, J.G. Kim, H.S. Lee. S.R. Park, and H.D. Yun. 1997. Effect of plant-growth-promoting bacteria inoculation on the growth and yield of cucumber (Cucumis sativa L.). Korean J. Soil Sci. Fert. 30: 196-199.
22 Nelson, P.V. 1991. Greenhouse operation and management (4th ed.). Prentice Hall. P. 257-315.
23 NIAST (National Institute of Agricultural Science and Technology). 2000. Analytical methods of soil and plant. RDA, Suwon, Korea.