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Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder

The paper presents the results of research concerning the influence of a metallic micromaterial on the thermal conductivity λ, specific heat Cp, and thermal diffusivity a of modified geopolymers. Iron oxide in the form of powder with an average granulation of 10 μm was used as the geopolymer-modifyi...

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Autores principales: Prałat, Karol, Ciemnicka, Justyna, Koper, Artur, Szczypiński, Michał Marek, Łoś, Piotr, Nguyen, Van Vu, Le, Van Su, Rapiejko, Cezary, Ercoli, Roberto, Buczkowska, Katarzyna Ewa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148025/
https://www.ncbi.nlm.nih.gov/pubmed/35631890
http://dx.doi.org/10.3390/polym14102009
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author Prałat, Karol
Ciemnicka, Justyna
Koper, Artur
Szczypiński, Michał Marek
Łoś, Piotr
Nguyen, Van Vu
Le, Van Su
Rapiejko, Cezary
Ercoli, Roberto
Buczkowska, Katarzyna Ewa
author_facet Prałat, Karol
Ciemnicka, Justyna
Koper, Artur
Szczypiński, Michał Marek
Łoś, Piotr
Nguyen, Van Vu
Le, Van Su
Rapiejko, Cezary
Ercoli, Roberto
Buczkowska, Katarzyna Ewa
author_sort Prałat, Karol
collection PubMed
description The paper presents the results of research concerning the influence of a metallic micromaterial on the thermal conductivity λ, specific heat Cp, and thermal diffusivity a of modified geopolymers. Iron oxide in the form of powder with an average granulation of 10 μm was used as the geopolymer-modifying material. The research concerned geopolymer composite samples with metakaolin (activated with potassium silicate) and the addition of iron in amounts ranging from 0.5% to 2.5% in relation to the weight of the metakaolin. Additionally, the samples were modified with sand and fireclay in two different amounts—1:1 and 1:1.2 in relation to the metakaolin. The addition of fireclay caused a decrease in the thermal conductivity of the composites by 30% when compared to the samples with the addition of sand. The lowest value of the thermal conductivity coefficient λ was obtained for the geopolymer with metakaolin and fireclay. When the ratio of these components in the composite was 1:1, the value of thermal conductivity was equal to 0.6413 W/(m·K), while in the case of their ratio being 1:1.2, it was equal to 0.6456 W/(m·K). In the samples containing fireclay, no significant influence of the added iron on the values of thermal conductivity was noticed. In the case of the geopolymer with sand, the effect was noticeable, and it was most visible in the samples containing metakaolin and sand in the ratio of 1:1.2. It was noticed that with an increase in the addition of Fe, the thermal conductivity of the composite increased.
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spelling pubmed-91480252022-05-29 Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder Prałat, Karol Ciemnicka, Justyna Koper, Artur Szczypiński, Michał Marek Łoś, Piotr Nguyen, Van Vu Le, Van Su Rapiejko, Cezary Ercoli, Roberto Buczkowska, Katarzyna Ewa Polymers (Basel) Article The paper presents the results of research concerning the influence of a metallic micromaterial on the thermal conductivity λ, specific heat Cp, and thermal diffusivity a of modified geopolymers. Iron oxide in the form of powder with an average granulation of 10 μm was used as the geopolymer-modifying material. The research concerned geopolymer composite samples with metakaolin (activated with potassium silicate) and the addition of iron in amounts ranging from 0.5% to 2.5% in relation to the weight of the metakaolin. Additionally, the samples were modified with sand and fireclay in two different amounts—1:1 and 1:1.2 in relation to the metakaolin. The addition of fireclay caused a decrease in the thermal conductivity of the composites by 30% when compared to the samples with the addition of sand. The lowest value of the thermal conductivity coefficient λ was obtained for the geopolymer with metakaolin and fireclay. When the ratio of these components in the composite was 1:1, the value of thermal conductivity was equal to 0.6413 W/(m·K), while in the case of their ratio being 1:1.2, it was equal to 0.6456 W/(m·K). In the samples containing fireclay, no significant influence of the added iron on the values of thermal conductivity was noticed. In the case of the geopolymer with sand, the effect was noticeable, and it was most visible in the samples containing metakaolin and sand in the ratio of 1:1.2. It was noticed that with an increase in the addition of Fe, the thermal conductivity of the composite increased. MDPI 2022-05-13 /pmc/articles/PMC9148025/ /pubmed/35631890 http://dx.doi.org/10.3390/polym14102009 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
Prałat, Karol
Ciemnicka, Justyna
Koper, Artur
Szczypiński, Michał Marek
Łoś, Piotr
Nguyen, Van Vu
Le, Van Su
Rapiejko, Cezary
Ercoli, Roberto
Buczkowska, Katarzyna Ewa
Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title_full Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title_fullStr Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title_full_unstemmed Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title_short Determination of the Thermal Parameters of Geopolymers Modified with Iron Powder
title_sort determination of the thermal parameters of geopolymers modified with iron powder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148025/
https://www.ncbi.nlm.nih.gov/pubmed/35631890
http://dx.doi.org/10.3390/polym14102009
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