Surface fertigation: a review, gaps and needs

  • Hamed Ebrahimian Dept. Irrigation and Reclamation Eng., College of Agriculture and Natural Resources, University of Tehran. P. O. Box 4111, Karaj 31587-77871
  • Mohammad R. Keshavarz Dept. Irrigation and Reclamation Eng., College of Agriculture and Natural Resources, University of Tehran. P. O. Box 4111, Karaj 31587-77871
  • Enrique Playán Soil and Water Department, Estación Experimental de Aula Dei, EEAD-CSIC. P.O. Box 13034. 50080 Zaragoza
Keywords: fertilizers, inflow hydrograph, modelling, soil and water quality, effective root depth

Abstract

Surface fertigation is a common choice when it comes to applying fertilizers in surface irrigated crops. The inherent complexity of the concepts and equations governing surface fertigation has made this technique a challenging research issue in the past decades. A number of researchers have used field experiments and/or modelling results to develop recommendations aiming at improving surface fertigation management. In this paper, these recommendations are reviewed and classified considering the particular type of surface irrigation system. Key factors affecting surface fertigation performance, such as the inflow hydrograph, soil and water quality, effective root depth for fertilizer uptake and the specific surface irrigation method are discussed. The history of surface fertigation modelling is reviewed, introducing key developments, accomplishments and open issues. Finally, current research gaps and needs are identified and discussed, such as the coupling of two-dimensional surface and subsurface simulation models or the use of performance optimization approaches. Research gaps require an intensification of modelling and/or experimental efforts.

Downloads

Download data is not yet available.

References

Abbasi F, Adamsen FJ, Hunsaker DJ, Feyen J, Shouse P, van Genuchten MT, 2003a. Effects of flow depth on water flow and solute transport in furrow irrigation: field data analysis. J Irrig Drain Eng 129(4): 237-245. http://dx.doi.org/10.1061/(ASCE)0733-9437(2003)129:4(237)

Abbasi F, Feyen J, Robert LRMS, van Genuchten MT, 2003b. Water flow and solute transport in furrow-irrigated fields. Irrig Sci 22(2): 57–65. http://dx.doi.org/10.1007/s00271-003-0070-x

Abbasi F, Simunek J, van Genuchten MT, Feyen J, Adamsen FJ, Hunsaker DJ, Strelkoff TS, Shouse, P, 2003c. Overland water flow and solute transport: model development and field-data analysis. J Irrig Drain Eng 129(2): 71-81. http://dx.doi.org/10.1061/(ASCE)0733-9437(2003)129:2(71)

Abbasi Y, Abbasi F, Liaghat A, Alizadeh H, 2011. Evaluation of furrow fertigation and model validation on maize field. Irrig Drain Syst 25(4): 279-291. http://dx.doi.org/10.1007/s10795-012-9124-7

Adamsen FJ, Hunsaker DJ, Perea H, 2005. Border strip fertigation: Effect of injection strategies on the distribution of bromide. T ASAE 48(2): 529-540. http://dx.doi.org/10.13031/2013.18327

Adriano DC, Takatori FH, Pratt PF, Lorenzo OA, 1972. Soil nitrogen in selected row-crop sites in southern California. J Environ Qual 1(3): 279–283. http://dx.doi.org/10.2134/jeq1972.00472425000100030015x

Bandaranayake WM, Butters GL, Hamdi M, Prieksat M, Ellsworth TR, 1998. Irrigation and tillage management effects on solute movement. Soil Till Res 46(3): 165-173. http://dx.doi.org/10.1016/S0167-1987(98)00029-4

Bingham FT, Davis S, Shade E, 1971. Water relation, salt balance and nitrate leaching losses of a 960 acre citrus watershed. Soil Sci 112(6): 410-418. http://dx.doi.org/10.1097/00010694-197112000-00005

Blair AW, Smerdon ET, 1987. Modeling surge irrigation infiltration. J Irrig Drain Eng 113(4): 497-515. http://dx.doi.org/10.1061/(ASCE)0733-9437(1987)113:4(497)

Boldt AL, 1991. Simulation of water applied fertilizer distribution under surge irrigation. MS thesis, Univ of Nebraska, Lincoln, USA.

Boldt AL, Watts DG, Eisenhauer DE, Schepers JS, 1994. Simulation of water applied nitrogen distribution under surge irrigation. T ASAE 37(4): 1157-1165. http://dx.doi.org/10.13031/2013.28189

Bradford SF, Sanders BF, 2002. Finite-volume model for shallow-water flooding of arbitrary topography. J Hydraulic Eng 128(3): 289-298. http://dx.doi.org/10.1061/(ASCE)0733-9429(2002)128:3(289)

Bryan BB, Thomas EL, 1958. Distribution of fertilizer materials applied through sprinkler irrigation systems. Bull. 598. Univ. of Arkansas Agric. Exp. St., Fayetteville, 12 pp.

Burguete J, Garcia-Navarro P, Murillo J, Garcia-Palacin I, 2007. Analysis of the friction term in the one-dimensional shallow water model. J Hydraulic Eng 133(9): 1048-1063. http://dx.doi.org/10.1061/(ASCE)0733-9429(2007)133:9(1048)

Burguete J, Zapata N, García-Navarro P, Maïkaka M, Playán E, Murillo J, 2009a. Fertigation in furrows and level furrow systems. I: Model description and numerical tests. J Irrig Drain Eng 135(4): 401-412. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000097

Burguete J, Zapata N, García-Navarro P, Maïkaka M, Playán E, Murillo J, 2009b. Fertigation in furrows and level furrow systems. II: Field experiments, model calibration, and practical applications. J Irrig Drain Eng 135(4): 413-420. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000098

Burns IG, 1980. Influence of the spatial distribution of nitrate on the uptake of N by plants: A review and a model for rooting depth. J Soil Sci 31(2): 155-173. http://dx.doi.org/10.1111/j.1365-2389.1980.tb02073.x

Chow V, 1959. Open channel hydraulics. McGraw-Hill, NY.

Crevoisier D, Popova Z, Mailhol JC, Ruelle P, 2008. Assessment and simulation of water and nitrogen transfer under furrow irrigation. Agr Water Manage 95(4):354-366. http://dx.doi.org/10.1016/j.agwat.2007.10.021

Cunge JA, Holly FM, Verwey A, 1980. Practical aspects of computational river hydraulics. Pitman, London.Dawelbeit S, Richter C, 2004. Fertigation of onion crops by using surface irrigation in Sudan. DeutscherTropentag, October 5-7, Berlin.

Dillon J, Edinger-Marshall S, Letey J, 1999. Farmers adopt new irrigation and fertilizer techniques. California Agr 53(1): 24- 28. http://dx.doi.org/10.3733/ca.v053n01p24

Ebrahimian H, Playán E, 2014. Optimum management of furrow fertigation to maximize water and fertilizer efficiency and uniformity. J Agric Sci Tech 16(3): 591-607.

Ebrahimian H, Liaghat A, Parsinejad M, Abbasi F, Navabian M, 2012a. Comparison of one- and two-dimensional models to simulate alternate and conventional furrow fertigation. J Irrig Drain Eng 138(10): 929-938. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000482

Ebrahimian H, Liaghat A, Parsinejad M, Playán E, 2012b. Distribution and loss of water and nitrate under alternate and conventional furrow fertigation. Span J Agric Res 10(3): 849-863. http://dx.doi.org/10.5424/sjar/2012103-585-11

Ebrahimian H, Liaghat A, Parsinejad M, Playán E, Abbasi F, Navabian M, 2013a. Simulation of 1D surface and 2D subsurface water flow and nitrate transport in alternate and conventional furrow fertigation. Irrig Sci 31(3): 310-316. http://dx.doi.org/10.1007/s00271-011-0303-3

Ebrahimian H, Liaghat A, Parsinejad M, Playán E, Abbasi F, Navabian M, Latorre B, 2013b. Optimum design of alternate and conventional furrow fertigation to minimize nitrate loss. J Irrig Drain Eng 139(11): 911-921. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000635

FAO, 2007. General summary on southern and eastern Asia. FAO, Rome. Available at www.fao.org/nr/water/aquastat/regions/asia/index.stm [verified 29 Mar. 2008].

FAO, 2009. Current world fertilizer trends and outlook to 2013. FAO, Rome.

FAO, 2012. Current world fertilizer trends and outlook to 2016. FAO, Rome.

Feinerman E, Fulkovitz MS, 1997. Optimal scheduling of nitrogen fertilization and irrigation. Water Resour Manage 11(2): 101-117. http://dx.doi.org/10.1023/A:1007994232658

Fernandez R, Lopez J, Navarrete P, 1998. Map of nitrate concentration in the underground waters in Spain. The Geomining Technological Institute of Spain (ITGE), Ministry of Environment.

Furman A, 2008. Modeling coupled surface–subsurface flow processes: a review. Vadose Zone J 7(2): 741-756. http://dx.doi.org/10.2136/vzj2007.0065

Garcia-Navarro P, Playán E, Zapata N, 2000. Solute transport modeling in overland flow applied to fertigation. J Irrig Drain Eng 126(1): 33-40. http://dx.doi.org/10.1061/(ASCE)0733-9437(2000)126:1(33)

Gardner BR, Roth RL, 1984. Applying nitrogen in irrigation waters. Nitrogen in crop production (Hauck RD, ed.), Am Soc Agron, Crop Sci Soc, Soil Sci Soc of America, Madison, WI, USA. pp: 493–505.

Hagin J, Lowengart A, 1996. Fertigation for minimizing environmental pollution by fertilizers. Fertil Res 43(1): 5-7. http://dx.doi.org/10.1007/BF00747675

Hanson B, Bowers W, Davidoff B, Kasapligil D, Carvajal A, Bendixen W, 1995. Field performance of micro irrigation systems. In: Micro irrigation for a changing world: conserving resources/preserving the environment. Proc 5th Int Micro irrigation Congr, Orlando, FL, USA. pp: 769-774.

Izadi B, King B, Westermann D, McCann I, 1993. Field-scale transport of bromide under variable conditions observed in a furrow irrigated field. T ASAE 36(6): 1679-1685. http://dx.doi.org/10.13031/2013.28511

Izadi B, King B, Westermann D, McCann I, 1996. Modeling transport of bromide in furrow-irrigated field. J Irrig Drain Eng 122(2): 90-96. http://dx.doi.org/10.1061/(ASCE)0733-9437(1996)122:2(90)

Janat M, 2007. Efficiency of nitrogen fertilizer for potato under fertigation utilizing a nitrogen tracer technique. Commun Soil Sci Plan 38(17-18): 2401-2422. http://dx.doi.org/10.1080/00103620701588775

Janat M, 2008. Response of cotton to irrigation methods and nitrogen fertilization: yield components, water‐use efficiency, nitrogen uptake, and recovery. Commun Soil Sci Pl 39(15-16): 2282-2302. http://dx.doi.org/10.1080/00103620802292293

Jaynes DB, Bowman RS, Rice RC, 1988. Transport of a conservative tracer in the field under continuous flood irrigation. Soil Sci Soc Am 52(3): 618-624. http://dx.doi.org/10.2136/sssaj1988.03615995005200030003x

Jaynes DB, Rice RC, Hunsaker DJ, 1992. Solute transport during chemigation of a level basin. T ASAE 35(6): 1809-1815. http://dx.doi.org/10.13031/2013.28800

Kafkafi U, Tarchitzky J, 2011. Fertigation: a tool for efficient fertilizer and water management. Int Fertilizer Ind Assoc, Paris.

Kay M, 1990. Recent developments for improving water management in surface irrigation and overhead irrigation. Agr Water Manage 17(1): 7-23. http://dx.doi.org/10.1016/0378-3774(90)90052-Z

Letey J, Blair JW, Devitt D, Lund LJ, Nash P, 1977. Nitrate-nitrogen effluent from agriculture tile drains in California. Hilgardia 45: 289-319.

Mailhol JC, Ruelle P, Nemeth I, 2001. Impact of fertilization practices on nitrogen leaching under irrigation. Irrig Sci 20(3): 139-147. http://dx.doi.org/10.1007/s002710100038

Matijević L, Romić D, Maurović N, Romić M, 2012. Saline irrigation water affects element uptake by bean plant (Vicia faba L.). Eur Chem Bull 1(12): 498-502.

Moravejalahkami B, Mostafazadeh-Fard B, Heidarpour M, Abbasi F, 2012. The effects of different inflow hydrograph shapes on furrow irrigation fertigation. Biosyst Eng 111(2): 186-194. http://dx.doi.org/10.1016/j.biosystemseng.2011.11.011

Muirhead WA, Melhuish FM, White RJG, 1985a. Comparison of several nitrogen fertilisers applied in surface irrigation systems. I. Crop response. Fertil Res 6(2): 97-109. http://dx.doi.org/10.1007/BF01051004

Muirhead WA, Melhuish FM, White RJG, Higgins ML, 1985b. Comparison of several nitrogen fertilisers applied in surface irrigation systems. II. Nitrogen transformations. Fertil Res 8(1): 49-65. http://dx.doi.org/10.1007/BF01048906

Navabian M, Liaghat A, Kerachian R, Abbasi F, 2010. Optimization of furrow fertigation from environmental perspective. Water Soil 24(5): 884-893 [in Persian].

Perea-Estrada H, 2005. Development, verification and evaluation of a solute transport model in surface irrigation. PhD Dissertation. Dept Agric Biosyst Eng, Univ. of Arizona, Tucson, AZ, USA.

Perea H, Bautista E, Hunsaker DJ, Strelkoff TS, Williams C, Adamsen FJ, 2010a. Nonuniform and unsteady solute transport in furrow irrigation. II: Description of field experiments and calibration of infiltration and roughness coefficients. J Irrig Drain Eng 137(5): 315-326. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000295

Perea H, Strelkoff TS, Adamsen FJ, Hunsaker DJ, Clemmens AJ, 2010b. Nonuniform and unsteady solute transport in furrow irrigation. I: Model development. J Irrig Drain Eng 136(6): 365-375. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000106

Playán E, Faci JM, 1997. Border fertigation: Field experiments and a simple model. Irrig Sci 17(4): 163-171. http://dx.doi.org/10.1007/s002710050035

Playán E, Walker WR, Merkley GP, 1994a. Two-dimensional simulation of basin irrigation. I: Theory. J Irrig Drain Eng 120(5): 837-856. http://dx.doi.org/10.1061/(ASCE)0733-9437(1994)120:5(837)

Playán E, Walker WR, Merkley GP, 1994b. Two-dimensional simulation of basin irrigation. II: Applications. J Irrig Drain Eng 120(5): 857-870. http://dx.doi.org/10.1061/(ASCE)0733-9437(1994)120:5(857)

Quinones A, Martinez-Alcantara B, Legaz F, 2007. Influence of irrigation system and fertilization management on seasonal distribution of N in the soil profile and on N-uptake by citrus trees. Agric Ecosys Environ 122(3): 399-409. http://dx.doi.org/10.1016/j.agee.2007.02.004

Sabillón GN, Merkley GP, 2004. Fertigation guidelines for furrow irrigation. Span J Agric Res 2(4): 576-587. http://dx.doi.org/10.5424/sjar/2004024-114

Sanchez CA, Roth RL, Gardner BR, 1994. Irrigation and nitrogen management for sprinkler irrigated cabbage on sand. Am SocHortSci 119(3): 427-433.

Santos DV, Sousa PL, Smith RE, 1997. Model simulation of water and nitrate movement in a level-basin under fertigation treatments. Agr Water Manage 32(3): 293-306. http://dx.doi.org/10.1016/S0378-3774(96)01273-5

Silvertooth JC, Malcuit JE, Watson JE, Doerge TA, 1992. Bromide and nitrate movement in an irrigated cotton production system. Soil Sci Soc Am 56(2): 548-555. http://dx.doi.org/10.2136/sssaj1992.03615995005600020032x

Simunek J, Sejna M, van Genuchten MT, 1998. The HYDRUS-1D software package for simulating the movement of water, heat, and multiple solutes in variably saturated media, version 2.0. US Salinity Laboratory, USDA-ARS, Riverside, CA, USA.

Simunek J, Sejna M, van Genuchten MT, 1999. The HYDRUS-2D software package for simulating the two dimensional movement of water, heat, and multiple solutes in variably saturated media. Version 2.0, IGWMC-TPS-700, Int. Ground Water Modeling Center, Colorado School of Mines, Golden, CO, USA.

Soroush F, Mostafazadeh-Fard B, Mousavi SF, Abbasi F, 2012. Solute distribution uniformity and fertilizer losses under meandering and standard furrow irrigation methods. Aust J Crop Sci 6(5): 884-890.

Stark JC, Jarrell WM, Lety J, 1983. Evaluation of irrigation-nitrogen management practices for celery using continuous-variable irrigation. Soil Sci Soc Am 47(1): 95-98. http://dx.doi.org/10.2136/sssaj1983.03615995004700010019x

Strelkoff TS, 1969.One-dimensional equation of open channel flow. J Hydraulic Div 95: 861-876.

Strelkoff TS, Katapodes ND, 1977. Border irrigation hydraulics with zero-inertia. J Irrig Drain Div 103(3): 325-342.Strelkoff TS, Clemmens AJ, Schmidt BV, 1998. SRFR version 3.31. A model for simulating surface irrigation in borders, basins and furrows. US Arid-Lands Agric Res Cent, USDA/ARS, Maricopa, AZ, USA.

Strelkoff TS, Clemmens AJ, Perea-Estrada H, 2006. Calculation of non-reactive chemical distribution in surface fertigation. Agr Water Manage 86(1): 93-101. http://dx.doi.org/10.1016/j.agwat.2006.07.006

Thorup-Kristensen K, 2006. Root growth and nitrogen uptake of carrot, early cabbage, onion and lettuce following a range of green manures. Soil Use Manage 22(1): 29-38. http://dx.doi.org/10.1111/j.1475-2743.2005.00012.x

Threadgill ED, 1991. Advances in irrigation, fertigation, and chemigation. Fertigation/Chemigation, Proc. Expert Cons. Fert./Chem., FAO AGL/MISC 19/91. Rome, Italy.

USGS, 2000. Estimated use of water in the United States in 2000. USGS, Reston, VA, USA. Available at pubs.usgs.gov/circ/2004/circ1268/htdocs/table07.html [verified 29 Mar, 2008].

Wang D, Yates SR, Simunek J, van Genuchten MT, 1997. Solute transport in simulated conductivity fields under different irrigations. J Irrig Drain Eng 123(5): 338-343. http://dx.doi.org/10.1061/(ASCE)0733-9437(1997)123:5(336)

Walker WR, 2001. SIRMOD III. Version III. Utah State Univ. Logan, UT, USA.

Walker WR, Skogerboe G, 1987. Surface irrigation theory and practice. Prentice-Hall, NY.Watts DG, Ostermeier KA, Schepers JS, 1994. Fertigation by surge irrigation on blocked-end furrow. ASAE paper 942071. Presented at the Int Summer Meeting of ASAE, June 1994, Kansas City, MO, USA.

Xu D, Zhang S, Bai M, Li Y, Xia Q, 2013. Two-dimensional coupled model of surface water flow and solute transport for basin fertigation. J Irrig Drain Eng 139(12): 972–985. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000645

Zerihun D, Sanchez CA, Farrell-Poe KL, Adamsen FJ, Hunsaker DJ, 2003. Performance indices for surface N fertigation. J Irrig Drain Eng 129(3): 173-183. http://dx.doi.org/10.1061/(ASCE)0733-9437(2003)129:3(173)

Zerihun D, Furman A, Warrick AW, Sanchez CA, 2005a. Coupled surface-subsurface solute transport model for irrigation borders and basins. I. Model development. J Irrig Drain Eng 131(5): 396-406. http://dx.doi.org/10.1061/(ASCE)0733-9437(2005)131:5(396)

Zerihun D, Sanchez CA, Furman A, Warrick AW, 2005b. Coupled surface-subsurface solute transport model for irrigation borders and basins. II. Model evaluation. J Irrig Drain Eng 131(5): 407-419.Zhang S, Xu D, Li Y, Bai M, 2010. One-dimensional model development and validation of surface flow and solute transport for border irrigation in traditional surface fertilizer application. Trans Chinese Soc Agric Eng 26(12): 34-39.

Zhang TQ, Liu K, Tan CS, Warner J, Wang YT, 2011. Processing tomato nitrogen utilization and soil residual nitrogen as influenced by nitrogen and phosphorus additions with drip-fertigation. Soil Sci Soc Am 75(2): 738-745. http://dx.doi.org/10.2136/sssaj2009.0365

Zhang S, Xu D, Li Y, Bai M, 2013. One-dimensional coupled model of surface water flow and solute transport for basin fertigation. J Irrig Drain Eng 139(3): 181-192. http://dx.doi.org/10.1061/(ASCE)IR.1943-4774.0000546

Published
2014-07-16
How to Cite
Ebrahimian, H., Keshavarz, M. R., & Playán, E. (2014). Surface fertigation: a review, gaps and needs. Spanish Journal of Agricultural Research, 12(3), 820-837. https://doi.org/10.5424/sjar/2014123-5393
Section
Water management