Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation
The studies were conducted at the experimental base of the Tatar Scientific Research Institute of Agriculture in 1996–2014 to adapt fertilizer systems and basic tillage to achieve yields of 3–5 t/ha. The article cited data on winter wheat – the second crop of the third rotation of the eight-field gr...
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2020-01-01
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doaj-32d4902e365c43a285a8f0a227ce88da2021-04-02T19:40:49ZengEDP SciencesBIO Web of Conferences2117-44582020-01-01170006710.1051/bioconf/20201700067bioconf_fies2020_00067Adaptive technologies for intensification of winter wheat grain production in biologized crop rotationBikmukhametov ZakirzhanShakirov RafilSabirova RazinaThe studies were conducted at the experimental base of the Tatar Scientific Research Institute of Agriculture in 1996–2014 to adapt fertilizer systems and basic tillage to achieve yields of 3–5 t/ha. The article cited data on winter wheat – the second crop of the third rotation of the eight-field grain-grass-crop rotation for 2013–2014. We studied the effect of organomineral, organic, mineral fertilizer systems on the winter wheat yield using a differentiated approach to their use in combination with different primary tillage systems (dump plowing to the depth of the arable layer, multi-depth loosening and loosening to a depth of 15–16). The organomineral fertilizer system differed with the saturation with organic fertilizers of 7 t/ha of arable land per year + N36P32K60 according to the balance sheet for receiving 4 t/ha of grain with spring fertilizing using ammonium nitrate, where the yield was 4. 03 t/ha, and the saving on mineral fertilizers, depending on crop rotation and soil saturation with organic matter, was 25–35 %. The yield of winter wheat by the water-saving technology amounted to 4.03 t/ha with a planned level of 4.0 t/ha. At the same time, at the purchase price of 7 rubles/kg, the level of profitability rose to 195.85 %, the cost of 1 center of grain amounted to 236.6 rubles.https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00067/bioconf_fies2020_00067.html |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bikmukhametov Zakirzhan Shakirov Rafil Sabirova Razina |
spellingShingle |
Bikmukhametov Zakirzhan Shakirov Rafil Sabirova Razina Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation BIO Web of Conferences |
author_facet |
Bikmukhametov Zakirzhan Shakirov Rafil Sabirova Razina |
author_sort |
Bikmukhametov Zakirzhan |
title |
Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
title_short |
Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
title_full |
Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
title_fullStr |
Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
title_full_unstemmed |
Adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
title_sort |
adaptive technologies for intensification of winter wheat grain production in biologized crop rotation |
publisher |
EDP Sciences |
series |
BIO Web of Conferences |
issn |
2117-4458 |
publishDate |
2020-01-01 |
description |
The studies were conducted at the experimental base of the Tatar Scientific Research Institute of Agriculture in 1996–2014 to adapt fertilizer systems and basic tillage to achieve yields of 3–5 t/ha. The article cited data on winter wheat – the second crop of the third rotation of the eight-field grain-grass-crop rotation for 2013–2014. We studied the effect of organomineral, organic, mineral fertilizer systems on the winter wheat yield using a differentiated approach to their use in combination with different primary tillage systems (dump plowing to the depth of the arable layer, multi-depth loosening and loosening to a depth of 15–16). The organomineral fertilizer system differed with the saturation with organic fertilizers of 7 t/ha of arable land per year + N36P32K60 according to the balance sheet for receiving 4 t/ha of grain with spring fertilizing using ammonium nitrate, where the yield was 4. 03 t/ha, and the saving on mineral fertilizers, depending on crop rotation and soil saturation with organic matter, was 25–35 %. The yield of winter wheat by the water-saving technology amounted to 4.03 t/ha with a planned level of 4.0 t/ha. At the same time, at the purchase price of 7 rubles/kg, the level of profitability rose to 195.85 %, the cost of 1 center of grain amounted to 236.6 rubles. |
url |
https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00067/bioconf_fies2020_00067.html |
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AT bikmukhametovzakirzhan adaptivetechnologiesforintensificationofwinterwheatgrainproductioninbiologizedcroprotation AT shakirovrafil adaptivetechnologiesforintensificationofwinterwheatgrainproductioninbiologizedcroprotation AT sabirovarazina adaptivetechnologiesforintensificationofwinterwheatgrainproductioninbiologizedcroprotation |
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