Spatio-temporal movement of water and nitrate under different dripper discharges in drip fertigation


359 / 159

Authors

  • MUKESH KUMAR Indira Gandhi National Open University, New Delhi 110 068
  • T B S RAJPUT Indian Agricultural Research Institute, New Delhi 110 012
  • NEELAM PATEL Indian Agricultural Research Institute, New Delhi 110 012

https://doi.org/10.56093/ijas.v86i3.56854

Keywords:

Drip irrigation, Dripper discharge, NO3-N concentration, Soil water distribution, System operating pressure, Wetting front

Abstract

Fertigation is an advanced and efficient method of application of nutrients with irrigation water to the crop. Water and nutrient distribution in soil is one of the most important parameters to design efficient fertigation system. A field research was conducted to investigate the effect of dripper discharge at different system operating pressures on spatio-temporal soil moisture movement. The value of moisture contents varied significantly (P<0.05) under different operating pressures (0.5, 1.0 and 1.5 kg/cm2) and at different locations below and away from the dripper. Highest values of soil moisture contents were observed below the drippers which decreased as the distance increased in both horizontal and vertical directions from the dripper. The values of moisture content in soil decreased as distance increase in both directions (horizontal and vertical) from the dripper. 9.4% and 14.3% higher values of soil moisture just below the dripper were observed with dripper discharges of 1.41 and 1.71 l/hr at 1.0 and 1.5 kg/cm2 system operating pressures as compared to 0.94 l/hr dripper discharge at 0.5 kg/cm2 system operating pressure. Wetting front extended up to 15, 20 and 26 cm horizontally and 30, 30 and 24 cm and extended vertically up to 0.94, 1.41 and 1.71 l/h dripper discharge at 0.5, 1.0 and 1.5 kg/cm2 system operating pressure, respectively after 1 day of irrigation. Higher values of NO3-N concentration in all soil depths were recorded at 1.5 kg/cm2 operating pressure however lower values of NO3-N concentration were recorded at 0.5 kg/cm2 operating pressure 1 day after fertigation.

Downloads

Download data is not yet available.

References

Ah Koon P D, Gregory P J and Bell J P. 1990. Influence of drip irrigation emission rate on distribution and drainage of water beneath a sugar cane and a fallow plot. Agricultural Water Management 17: 267–82. DOI: https://doi.org/10.1016/0378-3774(90)90074-9

Al-Qinna M and Abu-Awwad A M. 2001. Wetting patterns under trickle source in arid soils with surface crust. Journal of Agricultural Engineering Research 80(3): 301–5. DOI: https://doi.org/10.1006/jaer.2001.0739

Assouline S. 2002. The effects of microdrip and conventional drip irrigation on water distribution and uptake. Soil Science Society of America Journal 66: 1 630–6. DOI: https://doi.org/10.2136/sssaj2002.0228

Badr M A and Taalab A S. 2007. Effect of drip irrigation and discharge rate on water and solute dynamics in sandy soil and tomato yield. Australian Journal of Basic and Applied Sciences. 1(4): 545–52.

Coelho E F and Or D. 1999. Root distribution and water uptake patterns of corn under surface and subsurface drip irrigation. Plant and Soil 206: 123–36.

Kumar, Mukesh, Rajput T B S, and Patel, Neelam. 2014. Water and nitrogen distribution uniformity for different drip-lengths under drip irrigation system. Journal of Agricultural Engineering 51(1): 37–43.

Kumar, Mukesh. 2012. ‘Dynamics of nutrients movement in soil under fertigation’. Ph D thesis, Indian Agricultural Research Institute, New Delhi, pp 157.

Li J, Zhang J and Rao M. 2004. Wetting patterns and nitrogen distributions as affected by fertigation strategies from a surface point source. Agricultural Water Management 67: 89–104. DOI: https://doi.org/10.1016/j.agwat.2004.02.002

Phene C J, Davis K R Hutmacher R B, Bar-Yosef B, Meek D W, Misaki J. 1991. Effect of high frequency surface and subsurface drip irrigation on root distribution of sweet corn. Irrigation Science 12: 135–40. DOI: https://doi.org/10.1007/BF00192284

Sivannapan R K. 2009. Development of micro-irrigation in India. Lecture note delivered in Winter School on Micro Irrigation, 4-24 March 2009, WTC, IARI, New Delhi.

Thabet M and Zayani K. 2008. Wetting patterns under trickle source in a loamy sand soil of South Tunisia. American- Eurasian Agricultural and Environmental Science Journal 3(1): 38–42.

Zur B. 1996. Wetted soil volume as a design objective in trickle irrigation. Irrigation Science 16: 101–5. DOI: https://doi.org/10.1007/BF02215617

Downloads

Submitted

2016-03-18

Published

2016-03-22

Issue

Section

Articles

How to Cite

KUMAR, M., RAJPUT, T. B. S., & PATEL, N. (2016). Spatio-temporal movement of water and nitrate under different dripper discharges in drip fertigation. The Indian Journal of Agricultural Sciences, 86(3), 310–4. https://doi.org/10.56093/ijas.v86i3.56854
Citation