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Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications

The impact of fillers in the epoxy oligomer on the test culture of the marine ecosystem was investigated. The content of additive—biocides—was selected based on the complex research using STAT-GRAPHICS(®) Centurion XVI. The ecotoxicity of composite surfaces was determined in model systems using meth...

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Autores principales: Panda, Anton, Dyadyura, Kostiantyn, Valíček, Jan, Harničárová, Marta, Kušnerová, Milena, Ivakhniuk, Tatyana, Hrebenyk, Liudmyla, Sapronov, Oleksandr, Sotsenko, Vitalii, Vorobiov, Pavlo, Levytskyi, Vitalii, Buketov, Andriy, Pandová, Iveta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416289/
https://www.ncbi.nlm.nih.gov/pubmed/36015529
http://dx.doi.org/10.3390/polym14163275
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author Panda, Anton
Dyadyura, Kostiantyn
Valíček, Jan
Harničárová, Marta
Kušnerová, Milena
Ivakhniuk, Tatyana
Hrebenyk, Liudmyla
Sapronov, Oleksandr
Sotsenko, Vitalii
Vorobiov, Pavlo
Levytskyi, Vitalii
Buketov, Andriy
Pandová, Iveta
author_facet Panda, Anton
Dyadyura, Kostiantyn
Valíček, Jan
Harničárová, Marta
Kušnerová, Milena
Ivakhniuk, Tatyana
Hrebenyk, Liudmyla
Sapronov, Oleksandr
Sotsenko, Vitalii
Vorobiov, Pavlo
Levytskyi, Vitalii
Buketov, Andriy
Pandová, Iveta
author_sort Panda, Anton
collection PubMed
description The impact of fillers in the epoxy oligomer on the test culture of the marine ecosystem was investigated. The content of additive—biocides—was selected based on the complex research using STAT-GRAPHICS(®) Centurion XVI. The ecotoxicity of composite surfaces was determined in model systems using methods which are standard in eco-microbiology. The microorganism was identified by studying morphological, cultural, biochemical, and antigenic properties. Studies of the structure and the microrelief of the surfaces of composite materials were conducted using scanning electron microscopy (SEM) and X-ray energy dispersive spectroscopy. Based on comprehensive research, it was established that the composition of oxytetracycline with content of q = 1.5 wt% and nanosilver with a content of q = 0.075 wt% per 100 wt% of the DER-331 oligomer and 10 parts by the mass of the TETA hardener ensures the formation of a porous nano-heterogeneous structure of the coating, which leads to the acceleration of the release of silver ions from the surface of the polymer. The rational content of the complex additives of biocides ensures adhesion to the cell wall of bacteria with subsequent penetration into it and subsequent change to the cell membrane, its death, and, therefore, the suppression of the fouling process of metal structures.
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spelling pubmed-94162892022-08-27 Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications Panda, Anton Dyadyura, Kostiantyn Valíček, Jan Harničárová, Marta Kušnerová, Milena Ivakhniuk, Tatyana Hrebenyk, Liudmyla Sapronov, Oleksandr Sotsenko, Vitalii Vorobiov, Pavlo Levytskyi, Vitalii Buketov, Andriy Pandová, Iveta Polymers (Basel) Article The impact of fillers in the epoxy oligomer on the test culture of the marine ecosystem was investigated. The content of additive—biocides—was selected based on the complex research using STAT-GRAPHICS(®) Centurion XVI. The ecotoxicity of composite surfaces was determined in model systems using methods which are standard in eco-microbiology. The microorganism was identified by studying morphological, cultural, biochemical, and antigenic properties. Studies of the structure and the microrelief of the surfaces of composite materials were conducted using scanning electron microscopy (SEM) and X-ray energy dispersive spectroscopy. Based on comprehensive research, it was established that the composition of oxytetracycline with content of q = 1.5 wt% and nanosilver with a content of q = 0.075 wt% per 100 wt% of the DER-331 oligomer and 10 parts by the mass of the TETA hardener ensures the formation of a porous nano-heterogeneous structure of the coating, which leads to the acceleration of the release of silver ions from the surface of the polymer. The rational content of the complex additives of biocides ensures adhesion to the cell wall of bacteria with subsequent penetration into it and subsequent change to the cell membrane, its death, and, therefore, the suppression of the fouling process of metal structures. MDPI 2022-08-11 /pmc/articles/PMC9416289/ /pubmed/36015529 http://dx.doi.org/10.3390/polym14163275 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
Panda, Anton
Dyadyura, Kostiantyn
Valíček, Jan
Harničárová, Marta
Kušnerová, Milena
Ivakhniuk, Tatyana
Hrebenyk, Liudmyla
Sapronov, Oleksandr
Sotsenko, Vitalii
Vorobiov, Pavlo
Levytskyi, Vitalii
Buketov, Andriy
Pandová, Iveta
Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title_full Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title_fullStr Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title_full_unstemmed Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title_short Ecotoxicity Study of New Composite Materials Based on Epoxy Matrix DER-331 Filled with Biocides Used for Industrial Applications
title_sort ecotoxicity study of new composite materials based on epoxy matrix der-331 filled with biocides used for industrial applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416289/
https://www.ncbi.nlm.nih.gov/pubmed/36015529
http://dx.doi.org/10.3390/polym14163275
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