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Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping

The article summarizes multivariate field trials of gel-forming soil conditioners for agriculture and urban landscaping in various climatic conditions from arid (O.A.E., Uzbekistan) to humid (Moscow region, Russia). The field test program included environmental monitoring of weather data, temperatur...

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Autores principales: Smagin, Andrey V., Sadovnikova, Nadezhda B., Belyaeva, Elena A., Krivtsova, Victoria N., Shoba, Sergey A., Smagina, Marina V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739259/
https://www.ncbi.nlm.nih.gov/pubmed/36501525
http://dx.doi.org/10.3390/polym14235131
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author Smagin, Andrey V.
Sadovnikova, Nadezhda B.
Belyaeva, Elena A.
Krivtsova, Victoria N.
Shoba, Sergey A.
Smagina, Marina V.
author_facet Smagin, Andrey V.
Sadovnikova, Nadezhda B.
Belyaeva, Elena A.
Krivtsova, Victoria N.
Shoba, Sergey A.
Smagina, Marina V.
author_sort Smagin, Andrey V.
collection PubMed
description The article summarizes multivariate field trials of gel-forming soil conditioners for agriculture and urban landscaping in various climatic conditions from arid (O.A.E., Uzbekistan) to humid (Moscow region, Russia). The field test program included environmental monitoring of weather data, temperature, water–air regimes, salinity, alkalinity, and biological activity of various soils (sandy and loamy sandy Arenosols, Retisols, loamy Serozems), productivity and yield of plants (lawns, vegetables) and their quality, including pathogen infestation. The evolutionary line of polymer superabsorbents from radiation-crosslinked polyacrylamide (1995) to the patented “Aquapastus” material (2014–2020) with amphiphilic fillers and biocidal additives demonstrated not only success, but also the main problems of using hydrogels in soils (biodegradation, osmotic collapse, etc.), as well as their technological solutions. Along with innovative materials, our know-how consisted in the intelligent soil design of capillary barriers for water accumulation and antipathogenic and antielectrolyte protection of the rhizosphere. Gel-forming polymer conditioners and new technologies of their application increase the productivity of plant crops and the quality of biomass by 30–50%, with a 1.3–2-fold saving of water resources and reliable protection of the topsoil from pathogens and secondary salinization. The results can be useful to a wide range of specialists from chemical technologists to agronomists and landscapers.
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spelling pubmed-97392592022-12-11 Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping Smagin, Andrey V. Sadovnikova, Nadezhda B. Belyaeva, Elena A. Krivtsova, Victoria N. Shoba, Sergey A. Smagina, Marina V. Polymers (Basel) Article The article summarizes multivariate field trials of gel-forming soil conditioners for agriculture and urban landscaping in various climatic conditions from arid (O.A.E., Uzbekistan) to humid (Moscow region, Russia). The field test program included environmental monitoring of weather data, temperature, water–air regimes, salinity, alkalinity, and biological activity of various soils (sandy and loamy sandy Arenosols, Retisols, loamy Serozems), productivity and yield of plants (lawns, vegetables) and their quality, including pathogen infestation. The evolutionary line of polymer superabsorbents from radiation-crosslinked polyacrylamide (1995) to the patented “Aquapastus” material (2014–2020) with amphiphilic fillers and biocidal additives demonstrated not only success, but also the main problems of using hydrogels in soils (biodegradation, osmotic collapse, etc.), as well as their technological solutions. Along with innovative materials, our know-how consisted in the intelligent soil design of capillary barriers for water accumulation and antipathogenic and antielectrolyte protection of the rhizosphere. Gel-forming polymer conditioners and new technologies of their application increase the productivity of plant crops and the quality of biomass by 30–50%, with a 1.3–2-fold saving of water resources and reliable protection of the topsoil from pathogens and secondary salinization. The results can be useful to a wide range of specialists from chemical technologists to agronomists and landscapers. MDPI 2022-11-25 /pmc/articles/PMC9739259/ /pubmed/36501525 http://dx.doi.org/10.3390/polym14235131 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Smagin, Andrey V.
Sadovnikova, Nadezhda B.
Belyaeva, Elena A.
Krivtsova, Victoria N.
Shoba, Sergey A.
Smagina, Marina V.
Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title_full Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title_fullStr Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title_full_unstemmed Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title_short Gel-Forming Soil Conditioners of Combined Action: Field Trials in Agriculture and Urban Landscaping
title_sort gel-forming soil conditioners of combined action: field trials in agriculture and urban landscaping
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739259/
https://www.ncbi.nlm.nih.gov/pubmed/36501525
http://dx.doi.org/10.3390/polym14235131
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