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  4. Soil Fertility Clock—Crop Rotation as a Paradigm in Nitrogen Fertilizer Productivity Control
 
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Soil Fertility Clock—Crop Rotation as a Paradigm in Nitrogen Fertilizer Productivity Control

Type
Journal article
Language
English
Date issued
2022
Author
Grzebisz, Witold 
Diatta, Jean 
Barłóg, Przemysław 
Biber, Maria 
Potarzycki, Jarosław 
Łukowiak, Remigiusz 
Przygocka-Cyna, Katarzyna Maria 
Szczepaniak, Witold 
Faculty
Wydział Rolnictwa, Ogrodnictwa i Bioinżynierii
Journal
Plants
ISSN
2223-7747
DOI
10.3390/plants11212841
Web address
https://www.mdpi.com/2223-7747/11/21/2841
Volume
11
Number
21
Pages from-to
art. 2841
Abstract (EN)
The Soil Fertility Clock (SFC) concept is based on the assumption that the critical content (range) of essential nutrients in the soil is adapted to the requirements of the most sensitive plant in the cropping sequence (CS). This provides a key way to effectively control the productivity of fertilizer nitrogen (Nf). The production goals of a farm are set for the maximum crop yield, which is defined by the environmental conditions of the production process. This target can be achieved, provided that the efficiency of Nf approaches 1.0. Nitrogen (in fact, nitrate) is the determining yield-forming factor, but only when it is balanced with the supply of other nutrients (nitrogen-supporting nutrients; N-SNs). The condition for achieving this level of Nf efficiency is the effectiveness of other production factors, including N-SNs, which should be set at ≤1.0. A key source of N-SNs for a plant is the soil zone occupied by the roots. N-SNs should be applied in order to restore their content in the topsoil to the level required by the most sensitive crop in a given CS. Other plants in the CS provide the timeframe for active controlling the distance of the N-SNs from their critical range.
Keywords (EN)
  • nitrogen

  • nitrate-nitrogen

  • nitrogen use efficiency

  • nitrogen-supporting nutrients

  • phosphorus

  • potassium

  • maximum attainable yield

  • soil fertility management

License
cc-bycc-by CC-BY - Attribution
Open access date
October 25, 2022
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