The Limitation Amount of Available Potassium for Wheat in a Loess Soil

The objective of this study was determining the most limiting plant growth factor in the wheat root zone dominated by illite in clay fraction and a high specific surface with ample ammonium acetate extractible potassium. A completely randomized block design with 4 replicates was used in Seyed Miran...

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Main Authors: M. Vafakhah, S. A. Movahedi Naeini, E. Zeinali, O. Ghasemi chapi
Format: Article
Language:fas
Published: Isfahan University of Technology 2014-04-01
Series:Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
Subjects:
Online Access:http://jcpp.iut.ac.ir/browse.php?a_code=A-10-1-134&slc_lang=en&sid=1
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spelling doaj-3df02b3567584fe780d224e84897316d2020-11-24T22:21:29ZfasIsfahan University of Technology Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī2251-85172014-04-01411173183The Limitation Amount of Available Potassium for Wheat in a Loess SoilM. Vafakhah0S. A. Movahedi Naeini1E. Zeinali2O. Ghasemi chapi3 Gorgan Univ. of Agric. Sci. and Natur. Resour., Gorgan, Iran. Gorgan Univ. of Agric. Sci. and Natur. Resour., Gorgan, Iran. Gorgan Univ. of Agric. Sci. and Natur. Resour., Gorgan, Iran. Mazandaran Agric. and Natur. Resour. Res. Instit., Sari, Iran. The objective of this study was determining the most limiting plant growth factor in the wheat root zone dominated by illite in clay fraction and a high specific surface with ample ammonium acetate extractible potassium. A completely randomized block design with 4 replicates was used in Seyed Miran Research Farm (Gorgan) during 2009-2010 growing season. Treatments were mineral fertilizers (to achieve different levels of yields), gypsum (1000 Kg/ha calcium), calcium chloride (1000 Kg ha-1 Ca), urea (93 Kg ha-1 N) and potassium chloride (105 Kg ha-1 K) combined, gypsum (1000 Kg ha-1 Ca) and potassium chloride (105 Kg ha-1 K) combined, calcium chloride (1000 Kg ha-1 Ca) and potassium chloride (105 Kg ha-1 K) combined and control. Wheat cultivar (N-80-19) was planted in experimental site at 2009/12/9. The results showed that potassium is the most limiting plant growth factor in the site of the experiment. Electric diffuse double layer is expected to be truncated with a high specific surface soil in this area minimizing the soil solution-diffuse double layer interface for rapid potassium diffusion. The highest yield grain and straw with urea and potassium chloride showed a greater effect on plant and soil potassium concentrations. A greater potassium diffusion rate may be achieved as a result of greater concentration gradients between the exchange sites and soil solution by potassium fertilization and more potassium excess. Ammonium from urea diminished potassium fixation with illite and increased potassium root uptake.http://jcpp.iut.ac.ir/browse.php?a_code=A-10-1-134&slc_lang=en&sid=1High specific surface Potassium diffusion Wheat.
collection DOAJ
language fas
format Article
sources DOAJ
author M. Vafakhah
S. A. Movahedi Naeini
E. Zeinali
O. Ghasemi chapi
spellingShingle M. Vafakhah
S. A. Movahedi Naeini
E. Zeinali
O. Ghasemi chapi
The Limitation Amount of Available Potassium for Wheat in a Loess Soil
Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
High specific surface
Potassium diffusion
Wheat.
author_facet M. Vafakhah
S. A. Movahedi Naeini
E. Zeinali
O. Ghasemi chapi
author_sort M. Vafakhah
title The Limitation Amount of Available Potassium for Wheat in a Loess Soil
title_short The Limitation Amount of Available Potassium for Wheat in a Loess Soil
title_full The Limitation Amount of Available Potassium for Wheat in a Loess Soil
title_fullStr The Limitation Amount of Available Potassium for Wheat in a Loess Soil
title_full_unstemmed The Limitation Amount of Available Potassium for Wheat in a Loess Soil
title_sort limitation amount of available potassium for wheat in a loess soil
publisher Isfahan University of Technology
series Tulīd va Farāvarī-i Maḥṣūlāt-i Zirā̒ī va Bāghī
issn 2251-8517
publishDate 2014-04-01
description The objective of this study was determining the most limiting plant growth factor in the wheat root zone dominated by illite in clay fraction and a high specific surface with ample ammonium acetate extractible potassium. A completely randomized block design with 4 replicates was used in Seyed Miran Research Farm (Gorgan) during 2009-2010 growing season. Treatments were mineral fertilizers (to achieve different levels of yields), gypsum (1000 Kg/ha calcium), calcium chloride (1000 Kg ha-1 Ca), urea (93 Kg ha-1 N) and potassium chloride (105 Kg ha-1 K) combined, gypsum (1000 Kg ha-1 Ca) and potassium chloride (105 Kg ha-1 K) combined, calcium chloride (1000 Kg ha-1 Ca) and potassium chloride (105 Kg ha-1 K) combined and control. Wheat cultivar (N-80-19) was planted in experimental site at 2009/12/9. The results showed that potassium is the most limiting plant growth factor in the site of the experiment. Electric diffuse double layer is expected to be truncated with a high specific surface soil in this area minimizing the soil solution-diffuse double layer interface for rapid potassium diffusion. The highest yield grain and straw with urea and potassium chloride showed a greater effect on plant and soil potassium concentrations. A greater potassium diffusion rate may be achieved as a result of greater concentration gradients between the exchange sites and soil solution by potassium fertilization and more potassium excess. Ammonium from urea diminished potassium fixation with illite and increased potassium root uptake.
topic High specific surface
Potassium diffusion
Wheat.
url http://jcpp.iut.ac.ir/browse.php?a_code=A-10-1-134&slc_lang=en&sid=1
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