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2022 Vol.55, Issue 4 Preview Page

Original research article

30 November 2022. pp. 390-401
Abstract
References
1
Aubert, A., K. Roozeboom, D. Ruiz Diaz, A. Gipps, and T. Wolf. 2016. Subsurface drip nitrogen fertigation of corn. Kans. Agric. Exp. Stn. Res. Rep. 2(5):15. 10.4148/2378-5977.1232
2
Aujla, M.S., H.S. Thind, and G.S. Buttar. 2005. Cotton yield and water use efficiency at various levels of water and N through drip irrigation under two methods of planting. Agric. Water Manage. 71(2):167-179. 10.1016/j.agwat.2004.06.010
3
Bhattarai, S.P., D.J. Midmore, and L. Pendergast. 2008. Yield, water-use efficiencies and root distribution of soybean, chickpea and pumpkin under different subsurface drip irrigation depths and oxygation treatments in vertisols. Irrig. Sci. 26(5):439-450. 10.1007/s00271-008-0112-5
4
Biswas, B.C. 2010. Fertigation in high tech agriculture. Fert. Mark. News 41(10):4-8.
5
Burt, C.M. 1998. Chemicals for fertigation. p. 221-228. In Proceedings of the 19th International Irrigation Show, San Diego, CA, USA.
6
Chauhdary, J.N., A. Bakhsh, M. Arshad, and M. Maqsood. 2017. Effect of different irrigation and fertigation strategies on corn production under drip irrigation. Pak. J. Agric. Sci. 54(4):855-863. 10.21162/PAKJAS/17.5726
7
Coelho, E.F. and D. Or. 1999. Root distribution and water uptake patterns of corn under surface and subsurface drip irrigation. Plant Soil 206(2):123-136. 10.1023/A:1004325219804
8
Dhake, A.V., G.G. Adsul, D.G. Patil, R. Kamalkumar, and V.R. Subramaniam. 2009. Effect of liquid fertilizer (NPK) application through drip irrigation on nutrient uptake and fertilizer response ration in tomato. Int. J. Trop. Agric. 27(1-2):123-126.
9
Eltarabily, M.G., K.M. Bali, A.M. Negm, and C. Yoshimura. 2019. Evaluation of root water uptake and urea fertigation distribution under subsurface drip irrigation. Water 11(7):1487. 10.3390/w11071487
10
Gärdenäs, A.I., J.W. Hopmans, B.R. Hanson, and J. Šimůnek. 2005. Two-dimensional modeling of nitrate leaching for various fertigation scenarios under micro-irrigation. Agric. Water Manage. 74(3):219-242. 10.1016/j.agwat.2004.11.011
11
Geleta, S., G.J. Sabbagh, J.F. Stone, R.L. Elliott, H.P. Mapp, D.J. Bernardo and K.B. Watkins. 1994. Importance of soil and cropping systems in the development of regional water quality policies. J. Environ. Qual. 23(1):36-42. 10.2134/jeq1994.00472425002300010007x
12
Girma, M. and A. Jemal. 2015. Irrigation system in Israel: A review. Int. J. Water Resour. Environ. Eng. 7(3):29-37. 10.5897/IJWREE2014.0556
13
Hagin, J. and A. Lowengart. 1995. Fertigation for minimizing environmental pollution by fertilizers. Fert. Res. 43(1):5-7. 10.1007/BF00747675
14
Janat, M. and G. Somi. 2001. Performance of cotton crop grown under surface irrigation and drip fertigation. I. Seed cotton yield, dry matter production, and lint properties. Commun. Soil Sci. Plant Anal. 32(19-20):3045-3061. 10.1081/CSS-120001106
15
Kim, J.H. and I.R. Rho. 2022. Effect of irrigation and fertigation treatments on growth and yield in spring potato cultivation. Korean J. Crop Sci. 67(2):121-130.
16
Ko, J. and G. Piccinni. 2009. Corn yield responses under crop evapotranspiration-based irrigation management. Agric. Water Manage. 96(5):799-808. 10.1016/j.agwat.2008.10.010
17
KOSAT. 2022. 2022 Agriculture, forestry and fisheries survey. Korean Statistical Information Service, Daejeon, Korea.
18
Kumar, M., T.B.S. Rajput, and N. Patel. 2012. Effect of system pressure and solute concentration on fertilizer injection rate of a venturi for fertigation. J. Agric. Eng. 49(4):9-13.
19
Kwong, K.N.K., J.P. Paul, and J. Deville. 1999. Drip-fertigation - A means for reducing fertilizer nitrogen to sugarcane. Exp. Agric. 35(1):31-37. 10.1017/S0014479799001040
20
Lamm, F.R., A.J. Schlegel, and G.A. Clark. 2004. Development of a best management practice for nitrogen fertigation of corn using SDI. Appl. Eng. Agric. 20(2):211. 10.13031/2013.15894
21
Lee, S.H., D.H. Gong, K.Y. Jung, H.C. Chun, and Y.D. Choil. 2020. Evaluation on effluent rate of subsurface drip lines under various pressure conditions. p. 144. In Proceedings of the Korean Society of Agricultural Engineers Annual Conference, Daegu, Korea.
22
Lee, Y.J., S.B. Lee, and J. Sung. 2021. Optimal fertigation guide for greenhouse strawberry: Development and validation. Korean J. Soil Sci. Fert. 54(3):322-330. 10.7745/KJSSF.2021.54.3.322
23
Li, J., J. Zhang, and M. Rao. 2004. Wetting patterns and nitrogen distributions as affected by fertigation strategies from a surface point source. Agric. Water Manage. 67(2):89-104. 10.1016/j.agwat.2004.02.002
24
Martinez Hernandez, J.J., B. Bar-Yosef, and U. Kafkafi. 1991. Effect of surface and subsurface drip fertigation on sweet corn rooting, uptake, dry matter production and yield. Irrig. Sci. 12(3):153-159. 10.1007/BF00192287
25
NAAS. 2010. Method of soil chemical analysis. National Academy of Agricultural Science, RDA, Suwon, Korea.
26
Patil, S.A., U.V. Mahadkar, N.C. Mohite, and A.H. Karpe. 2012. Effect of irrigation and fertigation levels on yield, quality and nutrient uptake of rabi sweet corn (Zea mays sacchrata). J. Soils Crops 22(1):100-104.
27
Rajasekaran, B. 2007. Effect of drip fertigation on growth, yield and quality of tropical sugarbeet. M.Sc. (Ag.) Thesis (Doctoral dissertation),Tamil Nadu Agricultural University, Coimbatore, India.
28
Raman, S.S., K.M.D. Murthy, G. Ramesh, S.P. Palaniappan, and S. Chelliah. 2000. Effect of fertigation on growth and yield of gherkin. Veg. Sci. 27(1):64-66.
29
RDA. 2014. Handbook on food and crop environment analysis. Rural Development Administration, Jeonju, Korea.
30
RDA. 2021. Good practice of agricultural technology 035; corn. Rural Development Administration, Jeonju, Korea.
31
Roth, R.L., C.A. Sanchez, and B.R. Gardner. 1995. Growth and yield of mature ‘Valencia’ oranges converted to pressurized irrigation systems. Appl. Eng. Agric. 11(1):101-105. 10.13031/2013.25722
32
Shedeed, S.I., S.M. Zaghloul, and A.A. Yassen. 2009. Effect of method and rate of fertilizer application under drip irrigation on yield and nutrient uptake by tomato. Ozean J. Appl. Sci. 2(2):139-147.
33
Singh, R.M., D.K. Singh, and K.V.R. Rao. 2010. Fertigation for increased crop yield and fertilizer saving. Agric. Eng. Today 34(2):12-16.
34
Srayeddin, I. and C. Doussan. 2009. Estimation of the spatial variability of root water uptake of maize and sorghum at the field scale by electrical resistivity tomography. Plant Soil 319(1):185-207. 10.1007/s11104-008-9860-5
35
Tumbare, A.D. and S.U. Bhoite. 2002. Effect of solid soluble fertilizer applied through fertigation on growth and yield of chilli (Capsicum annuum). Indian J. Agric. Sci. 72(2):109-111.
36
Veeranna, H.K., A. Khalak, and G.M. Sujith. 2001. Effect of fertigation and irrigation methods on yield, water and fertilizer use efficiencies in chilli (Capsicum annuum L.). South Indian Horticulture, 49:101-104.
Information
  • Publisher :Korean Society of Soil Science and Fertilizer
  • Publisher(Ko) :한국토양비료학회
  • Journal Title :Korean Journal of Soil Science and Fertilizer
  • Journal Title(Ko) :한국토양비료학회 학회지
  • Volume : 55
  • No :4
  • Pages :390-401
  • Received Date : 2022-10-19
  • Revised Date : 2022-11-21
  • Accepted Date : 2022-11-22