Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation
The article presents the material obtained as a result of the research for 2017 and 2018, which was laid on leached chernozem in the central zone of the Krasnodar Territory in FSBSI «NGC named after P.P. Lukyanenko», on the basis of the agrotechnological department. The aim of the research was to st...
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Maykop State Technological University
2020-11-01
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doaj-ef4ecf14bbe04f2cbd5dd3bbc1aab18d2021-08-02T09:14:52ZrusMaykop State Technological UniversityНовые технологии2072-09202020-11-010411011710.47370/2072-0920-2020-15-4-110-117354Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivationA. A. Mnatsakanyan0G. V. Chuvarleeva1A. S. Volkova2FSBSI «National Grain Center named after P.P. Lukyanenko»FSBSI «National Grain Center named after P.P. Lukyanenko»FSBSI «National Grain Center named after P.P. Lukyanenko»The article presents the material obtained as a result of the research for 2017 and 2018, which was laid on leached chernozem in the central zone of the Krasnodar Territory in FSBSI «NGC named after P.P. Lukyanenko», on the basis of the agrotechnological department. The aim of the research was to study the effect of NanoSilicon mineral fertilization with microelements on the yield and quality of sunflower seeds. It was determined that treatment with the studied preparation shortens the interphase periods of sunflower by 1–2 days, increases the height by 8–12 cm and the biomass of one plant by 97–242 grams by the flowering phase. It was also found that NanoSilicon in the studied doses increases the yield and oil collection from 1 hectare. Thus, the inclusion of NanoSilicon preparation in the sunflower cultivation technology at a dose of 15/75/75 (seed treatment – 15 g/ha + spraying on seedlings – 75 g/ha + 75 g/ha in the phase of 5–7 pairs of leaves) significantly increases yield by 0,58 t/ha and oil collection from one hectare by 0,32 t/ha. As a result, 3,23 t/ha of seeds and 1,64 t/ha of oil were obtained.https://newtechology.mkgtu.ru/jour/article/view/365yieldoil contentbiomassheightvegetation phasesunflowercolloidal siliconnanosilicon |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
A. A. Mnatsakanyan G. V. Chuvarleeva A. S. Volkova |
spellingShingle |
A. A. Mnatsakanyan G. V. Chuvarleeva A. S. Volkova Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation Новые технологии yield oil content biomass height vegetation phase sunflower colloidal silicon nanosilicon |
author_facet |
A. A. Mnatsakanyan G. V. Chuvarleeva A. S. Volkova |
author_sort |
A. A. Mnatsakanyan |
title |
Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
title_short |
Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
title_full |
Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
title_fullStr |
Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
title_full_unstemmed |
Inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
title_sort |
inclusion of a preparation based on biologically active silicon into the technology of sunflower cultivation |
publisher |
Maykop State Technological University |
series |
Новые технологии |
issn |
2072-0920 |
publishDate |
2020-11-01 |
description |
The article presents the material obtained as a result of the research for 2017 and 2018, which was laid on leached chernozem in the central zone of the Krasnodar Territory in FSBSI «NGC named after P.P. Lukyanenko», on the basis of the agrotechnological department. The aim of the research was to study the effect of NanoSilicon mineral fertilization with microelements on the yield and quality of sunflower seeds. It was determined that treatment with the studied preparation shortens the interphase periods of sunflower by 1–2 days, increases the height by 8–12 cm and the biomass of one plant by 97–242 grams by the flowering phase. It was also found that NanoSilicon in the studied doses increases the yield and oil collection from 1 hectare. Thus, the inclusion of NanoSilicon preparation in the sunflower cultivation technology at a dose of 15/75/75 (seed treatment – 15 g/ha + spraying on seedlings – 75 g/ha + 75 g/ha in the phase of 5–7 pairs of leaves) significantly increases yield by 0,58 t/ha and oil collection from one hectare by 0,32 t/ha. As a result, 3,23 t/ha of seeds and 1,64 t/ha of oil were obtained. |
topic |
yield oil content biomass height vegetation phase sunflower colloidal silicon nanosilicon |
url |
https://newtechology.mkgtu.ru/jour/article/view/365 |
work_keys_str_mv |
AT aamnatsakanyan inclusionofapreparationbasedonbiologicallyactivesiliconintothetechnologyofsunflowercultivation AT gvchuvarleeva inclusionofapreparationbasedonbiologicallyactivesiliconintothetechnologyofsunflowercultivation AT asvolkova inclusionofapreparationbasedonbiologicallyactivesiliconintothetechnologyofsunflowercultivation |
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