Skip to main content
Erschienen in: Gesunde Pflanzen 2/2010

01.11.2010 | Originalbeitrag

Efficiency of Subsurface Drip Irrigation for Potato Production Under Different Dry Stress Conditions

verfasst von: M. A. Badr, S. D. Abou Hussein, W. A. El-Tohamy, N. Gruda

Erschienen in: Journal of Crop Health | Ausgabe 2/2010

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Efficient water delivery systems such as drip irrigation can contribute towards increasing crop yield potential, improving crop water and fertilizer use efficiency. However, critical management considerations such as subsurface drip irrigation are necessary to attain improved irrigation efficiencies and production benefits particularly under arid regions. The objective of this study was to determine the effect of two irrigation methods, surface and subsurface drip irrigation combined with four irrigation levels, 100, 80, 60 and 40% of crop evapotranspiration on yield and yield components of potato grown on sandy soil. The field experiments were conducted in the years 2008 and 2009. In terms of soil water availability to plants, subsurface drip provided more favorable growth conditions for plant growth and maintained higher soil water content at the root zone, which resulted in a significant higher potato yield compared to surface drip irrigation. The difference between the two irrigation methods on yield components was concentrated on the mean tuber weight per plant, while no significant difference was found on the tuber number per plant. Reducing the amounts of applied water significantly decreased total potato yield and its components. Under subsurface drip irrigation, reducing amounts of applied water to 80% ETc gave comparable yield and yield components to surface drip at full irrigation supply, indicating that 20% irrigation water can be saved without affecting the potato yield. At all irrigation levels, subsurface drip recorded higher water use efficiency (WUE) over surface drip. Maximum value was observed at 40% ETc. Fertilizer use efficiency (FUE) was also higher under subsurface drip and reduced significantly under both irrigation methods with increasing water deficit. These results suggested that subsurface drip offers the potential of better water management with respect to saving and distribution of water in the root zone and to obtain maximum yield accompanied by highest water and FUE.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Allen RG, Pereira LS, Raes D, Smith M (1998) Crop evapotranspiration. Guidelines for computing crop water requirements. FAO irrigation and Drainage. Paper No. 56, FAO, Rome, Italy, p 300 Allen RG, Pereira LS, Raes D, Smith M (1998) Crop evapotranspiration. Guidelines for computing crop water requirements. FAO irrigation and Drainage. Paper No. 56, FAO, Rome, Italy, p 300
Zurück zum Zitat Ayars JE, Phene CJ, Hutmacher RB, Davis KR, Shoneman RA, Vail SS, Mead RM (1999) Subsurface drip irrigation of row crops: a review of 15 years of research at the Water Management Laboratory. Agric Water Manag 42(1):1–27CrossRef Ayars JE, Phene CJ, Hutmacher RB, Davis KR, Shoneman RA, Vail SS, Mead RM (1999) Subsurface drip irrigation of row crops: a review of 15 years of research at the Water Management Laboratory. Agric Water Manag 42(1):1–27CrossRef
Zurück zum Zitat Badr MA, Abou Hussein SD, El-Tohamy WA, Gruda N (2010) Nutrient uptake and yield of tomato under various methods of fertilizer application and levels of fertigation in arid lands. Healthy Plants 62(1):11–19 Badr MA, Abou Hussein SD, El-Tohamy WA, Gruda N (2010) Nutrient uptake and yield of tomato under various methods of fertilizer application and levels of fertigation in arid lands. Healthy Plants 62(1):11–19
Zurück zum Zitat Camp CR (1998) Subsurface drip irrigation: a review. Trans ASAE, Am Soc Agric Eng 41(5):1353–1367 Camp CR (1998) Subsurface drip irrigation: a review. Trans ASAE, Am Soc Agric Eng 41(5):1353–1367
Zurück zum Zitat Cook FJ, Thorburn PJ, Fitch P, Bristow KL (2003) Wet up: a software tool to display approximate wetting patterns from drippers. Irrig Sci 22:129–134CrossRef Cook FJ, Thorburn PJ, Fitch P, Bristow KL (2003) Wet up: a software tool to display approximate wetting patterns from drippers. Irrig Sci 22:129–134CrossRef
Zurück zum Zitat CoStat Version 6.303 Copyright (1998–2004) CoHort Software798 Lighthouse Ave. PMB 320, Monterey, CA, 93940, USA CoStat Version 6.303 Copyright (1998–2004) CoHort Software798 Lighthouse Ave. PMB 320, Monterey, CA, 93940, USA
Zurück zum Zitat Enciso JM, Colaizzi PD, Multer WL (2005) Economic analysis of subsurface drip irrigation lateral spacing and installation depth for cotton. Trans ASAE 48(1):197–204 Enciso JM, Colaizzi PD, Multer WL (2005) Economic analysis of subsurface drip irrigation lateral spacing and installation depth for cotton. Trans ASAE 48(1):197–204
Zurück zum Zitat Faberio C, Martin de Santa Olalla F, de Juan JA (2001) Yield and size deficit irrigated potatoes. Agric Water Manag 48:255–266CrossRef Faberio C, Martin de Santa Olalla F, de Juan JA (2001) Yield and size deficit irrigated potatoes. Agric Water Manag 48:255–266CrossRef
Zurück zum Zitat Hanson BR, Simunek J, Hopmans JW (2006) Evaluation of urea-ammonium-nitrate fertigation with drip irrigation using numerical modeling. Agric Water Manag 86:102–113CrossRef Hanson BR, Simunek J, Hopmans JW (2006) Evaluation of urea-ammonium-nitrate fertigation with drip irrigation using numerical modeling. Agric Water Manag 86:102–113CrossRef
Zurück zum Zitat Hebbar SS, Ramachandrappa BK, Nanjappa HV, Prabhakar M (2004) Studies on NPK drip fertigation in field grown tomato (Lycopersicon esculentum Mill.). Eur J Agron 21:117–127CrossRef Hebbar SS, Ramachandrappa BK, Nanjappa HV, Prabhakar M (2004) Studies on NPK drip fertigation in field grown tomato (Lycopersicon esculentum Mill.). Eur J Agron 21:117–127CrossRef
Zurück zum Zitat Kashyap PS, Panda RK (2003) Effect of irrigation scheduling on potato crop components under water stressed conditions. Agric Water Manag 59(1):49–66CrossRef Kashyap PS, Panda RK (2003) Effect of irrigation scheduling on potato crop components under water stressed conditions. Agric Water Manag 59(1):49–66CrossRef
Zurück zum Zitat Kaur M, Narda NK, Chawla JK (2005) Irrigation and potassium management in trickle fertigated potato (Solanum tubersosum). Indian J Agric Sci 75(5):290–291 Kaur M, Narda NK, Chawla JK (2005) Irrigation and potassium management in trickle fertigated potato (Solanum tubersosum). Indian J Agric Sci 75(5):290–291
Zurück zum Zitat Lamm FR, Camp CR (2007) Maintenance. In: Lamm FR, Ayars JE, Nakayama FS (eds) Microirrigation for crop production. Design, operation and management. Elsevier, Amsterdam, pp 473–551CrossRef Lamm FR, Camp CR (2007) Maintenance. In: Lamm FR, Ayars JE, Nakayama FS (eds) Microirrigation for crop production. Design, operation and management. Elsevier, Amsterdam, pp 473–551CrossRef
Zurück zum Zitat Lamm FR, Trooien TP (2003) Subsurface drip irrigation for corn production: a review of 10 years of research in Kansas. Irrig Sci 22 (3–4):195–200CrossRef Lamm FR, Trooien TP (2003) Subsurface drip irrigation for corn production: a review of 10 years of research in Kansas. Irrig Sci 22 (3–4):195–200CrossRef
Zurück zum Zitat Martin RJ, Jamieson PD, Wilson DR, Fransis GS (1992) Effects of soil moisture deficits on the yield and quality of ‘Russet Burbank’ potatoes. NZ J Crop Hortic Sci 20:1–9 Martin RJ, Jamieson PD, Wilson DR, Fransis GS (1992) Effects of soil moisture deficits on the yield and quality of ‘Russet Burbank’ potatoes. NZ J Crop Hortic Sci 20:1–9
Zurück zum Zitat Meshkat M, Warner RC, Workman SR (2000) Evaporation reduction potential in an undisturbed soil irrigated with surface and sand tube irrigation. Trans ASAE 43:79–86 Meshkat M, Warner RC, Workman SR (2000) Evaporation reduction potential in an undisturbed soil irrigated with surface and sand tube irrigation. Trans ASAE 43:79–86
Zurück zum Zitat Oliveira MRG, Cataldo AM, Portas CAM (1996) Tomato root distribution under drip irrigation. J Am Soc Hortic Sci 121:644–648 Oliveira MRG, Cataldo AM, Portas CAM (1996) Tomato root distribution under drip irrigation. J Am Soc Hortic Sci 121:644–648
Zurück zum Zitat Onder S, Caliskan ME, Onder D, Caliskan S (2005) Different irrigation methods and water stress effects on potato yield and yield components. Agric Water Manag 73(1):73–86CrossRef Onder S, Caliskan ME, Onder D, Caliskan S (2005) Different irrigation methods and water stress effects on potato yield and yield components. Agric Water Manag 73(1):73–86CrossRef
Zurück zum Zitat Opena GB, Porter GA (1999) Soil management and supplemental irrigation effects on potato: II. Root growth. Agronomy 91:426–431CrossRef Opena GB, Porter GA (1999) Soil management and supplemental irrigation effects on potato: II. Root growth. Agronomy 91:426–431CrossRef
Zurück zum Zitat Patel N, Rajput TBS (2007) Effect of drip tape placement depth and irrigation level on yield of potato. Agric Water Manag 88:209–223CrossRef Patel N, Rajput TBS (2007) Effect of drip tape placement depth and irrigation level on yield of potato. Agric Water Manag 88:209–223CrossRef
Zurück zum Zitat Patel N, Rajput TBS (2008) Dynamics and modeling of soil water under subsurface drip irrigated onion. Agric Water Manag 95:1335–1349CrossRef Patel N, Rajput TBS (2008) Dynamics and modeling of soil water under subsurface drip irrigated onion. Agric Water Manag 95:1335–1349CrossRef
Zurück zum Zitat Phene CJ (1995) The sustainability and potential of subsurface drip irrigation. In: Lamn FR (ed) Microirrigation for a changing world. ASAE, Orlando, pp 359–367 Phene CJ (1995) The sustainability and potential of subsurface drip irrigation. In: Lamn FR (ed) Microirrigation for a changing world. ASAE, Orlando, pp 359–367
Zurück zum Zitat Philip JR (1991) Upper bounds on evaporation losses from buried sources. Soil Sci Soc Am J 55:1516–1520CrossRef Philip JR (1991) Upper bounds on evaporation losses from buried sources. Soil Sci Soc Am J 55:1516–1520CrossRef
Zurück zum Zitat Romero P, Botia P, Garcia F (2004) Effects regulated deficit irrigation under subsurface drip irrigation conditions on water relations of mature almond trees. Plant Soil 260:155–168CrossRef Romero P, Botia P, Garcia F (2004) Effects regulated deficit irrigation under subsurface drip irrigation conditions on water relations of mature almond trees. Plant Soil 260:155–168CrossRef
Zurück zum Zitat Selim EM, Mosa AA, El-Ghamry AM (2009) Evaluation of humic substances fertigation through surface and subsurface drip irrigation systems on potato grown under Egyptian sandy soil conditions. Agric Water Manag 96:1218–1222CrossRef Selim EM, Mosa AA, El-Ghamry AM (2009) Evaluation of humic substances fertigation through surface and subsurface drip irrigation systems on potato grown under Egyptian sandy soil conditions. Agric Water Manag 96:1218–1222CrossRef
Zurück zum Zitat Shock CC, Feibert EBG (2000) Deficit irrigation of potato. Deficit irrigation practices, water reports 22, p 109. ISBN 92-5-104768-5 Shock CC, Feibert EBG (2000) Deficit irrigation of potato. Deficit irrigation practices, water reports 22, p 109. ISBN 92-5-104768-5
Zurück zum Zitat Shock CC, Zalewski JC, Stieber TD, Burnett DS (1992) Impact of early-season water deficits on Russet Burbank plant development, tuber yield and quality. Am Potato J 69:793–803CrossRef Shock CC, Zalewski JC, Stieber TD, Burnett DS (1992) Impact of early-season water deficits on Russet Burbank plant development, tuber yield and quality. Am Potato J 69:793–803CrossRef
Zurück zum Zitat Steyn JM, Du Plessis HF, Fourie P, Hammes PS (1998) Yield response of potato genotypes to different soil water regimes in contrasting seasons of subtropical climate. Potato Res 41:239–254CrossRef Steyn JM, Du Plessis HF, Fourie P, Hammes PS (1998) Yield response of potato genotypes to different soil water regimes in contrasting seasons of subtropical climate. Potato Res 41:239–254CrossRef
Zurück zum Zitat Stikic R, Popovic S, Srdic M, Savic D, Jovanovic Z, Prokic L, Zdravkovic J (2003) Partial root drying (PRD): a new technique for growing plants that saves water and improves the quality of fruit. Bulg J Plant Physiol 2003:164–171 Stikic R, Popovic S, Srdic M, Savic D, Jovanovic Z, Prokic L, Zdravkovic J (2003) Partial root drying (PRD): a new technique for growing plants that saves water and improves the quality of fruit. Bulg J Plant Physiol 2003:164–171
Zurück zum Zitat Thorburn PJ, Cook FJ, Bristow KL (2003) Soil-dependent wetting from trickle emitters: implications for system design and management. Irrig Sci 22:121–127CrossRef Thorburn PJ, Cook FJ, Bristow KL (2003) Soil-dependent wetting from trickle emitters: implications for system design and management. Irrig Sci 22:121–127CrossRef
Zurück zum Zitat Wang F, Kang Y, Liu S (2006) Effects of drip irrigation frequency on soil wetting pattern and potato growth in North China Plain. Agric Water Manag 79:248–264CrossRef Wang F, Kang Y, Liu S (2006) Effects of drip irrigation frequency on soil wetting pattern and potato growth in North China Plain. Agric Water Manag 79:248–264CrossRef
Zurück zum Zitat Yuan BZ, Nishiyama S, Kang Y (2003) Effects of different irrigation regimes on growth and yield of drip-irrigated potato. Agric Water Manag 63(3):153–167CrossRef Yuan BZ, Nishiyama S, Kang Y (2003) Effects of different irrigation regimes on growth and yield of drip-irrigated potato. Agric Water Manag 63(3):153–167CrossRef
Zurück zum Zitat Zotarelli L, Dukes MD, Scholberg JM, Hanselman T, Le Femminella K, Munoz-Carpena R (2008) Nitrogen and water use efficiency of zucchini squash for a plastic mulch bed system on a sandy soil. Sci Hortic 116:8–16CrossRef Zotarelli L, Dukes MD, Scholberg JM, Hanselman T, Le Femminella K, Munoz-Carpena R (2008) Nitrogen and water use efficiency of zucchini squash for a plastic mulch bed system on a sandy soil. Sci Hortic 116:8–16CrossRef
Metadaten
Titel
Efficiency of Subsurface Drip Irrigation for Potato Production Under Different Dry Stress Conditions
verfasst von
M. A. Badr
S. D. Abou Hussein
W. A. El-Tohamy
N. Gruda
Publikationsdatum
01.11.2010
Verlag
Springer-Verlag
Erschienen in
Journal of Crop Health / Ausgabe 2/2010
Print ISSN: 2948-264X
Elektronische ISSN: 2948-2658
DOI
https://doi.org/10.1007/s10343-010-0222-x

Weitere Artikel der Ausgabe 2/2010

Gesunde Pflanzen 2/2010 Zur Ausgabe

Mitteilungen

Personalia