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Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol

Lime materials are in great demand for the restoration of the walls of historical buildings. However, lime coatings have insufficient resistance during operation. The purpose of this work was the modification of lime mortars with silicic acid sol in order to obtain more durable crystalline materials...

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Autores principales: Loganina, Valentina, Davydova, Olga, Fediuk, Roman, Amran, Mugahed, Klyuev, Sergey, Klyuev, Alexander, Sabitov, Linar, Nabiullina, Karina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999692/
https://www.ncbi.nlm.nih.gov/pubmed/35407694
http://dx.doi.org/10.3390/ma15072360
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author Loganina, Valentina
Davydova, Olga
Fediuk, Roman
Amran, Mugahed
Klyuev, Sergey
Klyuev, Alexander
Sabitov, Linar
Nabiullina, Karina
author_facet Loganina, Valentina
Davydova, Olga
Fediuk, Roman
Amran, Mugahed
Klyuev, Sergey
Klyuev, Alexander
Sabitov, Linar
Nabiullina, Karina
author_sort Loganina, Valentina
collection PubMed
description Lime materials are in great demand for the restoration of the walls of historical buildings. However, lime coatings have insufficient resistance during operation. The purpose of this work was the modification of lime mortars with silicic acid sol in order to obtain more durable crystalline materials for construction purposes. A technology has been developed for obtaining a silica-containing additive, which consists in passing a liquid glass solution with a density of 1.053 kg/m(3) through a cationic column and obtaining a silicic acid sol with a pH of 3–4 and a charge of (−) 0.053 V. The regeneration time and the amount of sol have been determined. Regularities of change in the radius of particles of silicic acid sol depending on age are determined. It is established that at an early age (up to 5 days), the radius of sol particles can be determined in accordance with the Rayleigh equation, and at a later age, in accordance with the Heller equation. The results of the calculation show that at the age of 1–5 days, the radius of the sol particles is 17.1–17.9 nm, and then the particles become coarser and the particle radius is 131.2–143 nm at the age of 19 days. The work of adhesion of silicic acid sol to lime and the heat of wetting are estimated. It is shown that the work of adhesion of water to lime is 28.9 erg/cm(2), and that of the sol is 32.8 erg/cm(2). The amount of heat Q released when lime is wetted with SiO(2) sol is 15.0 kJ/kg, and when lime is wetted with water, it is 10.6 kJ/kg.
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spelling pubmed-89996922022-04-12 Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol Loganina, Valentina Davydova, Olga Fediuk, Roman Amran, Mugahed Klyuev, Sergey Klyuev, Alexander Sabitov, Linar Nabiullina, Karina Materials (Basel) Article Lime materials are in great demand for the restoration of the walls of historical buildings. However, lime coatings have insufficient resistance during operation. The purpose of this work was the modification of lime mortars with silicic acid sol in order to obtain more durable crystalline materials for construction purposes. A technology has been developed for obtaining a silica-containing additive, which consists in passing a liquid glass solution with a density of 1.053 kg/m(3) through a cationic column and obtaining a silicic acid sol with a pH of 3–4 and a charge of (−) 0.053 V. The regeneration time and the amount of sol have been determined. Regularities of change in the radius of particles of silicic acid sol depending on age are determined. It is established that at an early age (up to 5 days), the radius of sol particles can be determined in accordance with the Rayleigh equation, and at a later age, in accordance with the Heller equation. The results of the calculation show that at the age of 1–5 days, the radius of the sol particles is 17.1–17.9 nm, and then the particles become coarser and the particle radius is 131.2–143 nm at the age of 19 days. The work of adhesion of silicic acid sol to lime and the heat of wetting are estimated. It is shown that the work of adhesion of water to lime is 28.9 erg/cm(2), and that of the sol is 32.8 erg/cm(2). The amount of heat Q released when lime is wetted with SiO(2) sol is 15.0 kJ/kg, and when lime is wetted with water, it is 10.6 kJ/kg. MDPI 2022-03-22 /pmc/articles/PMC8999692/ /pubmed/35407694 http://dx.doi.org/10.3390/ma15072360 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
Loganina, Valentina
Davydova, Olga
Fediuk, Roman
Amran, Mugahed
Klyuev, Sergey
Klyuev, Alexander
Sabitov, Linar
Nabiullina, Karina
Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title_full Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title_fullStr Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title_full_unstemmed Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title_short Improving the Durability of Lime Finishing Mortars by Modifying Them with Silicic Acid Sol
title_sort improving the durability of lime finishing mortars by modifying them with silicic acid sol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999692/
https://www.ncbi.nlm.nih.gov/pubmed/35407694
http://dx.doi.org/10.3390/ma15072360
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