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Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System

In terms of its chemical composition, biomass is a very complex type of fuel. Its combustion leads to the formation of materials such as alkaline ash and gases, and there is evidence of the corrosive effect this process has on refractory linings, thus shortening the service life of the combustion un...

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Autores principales: Ovčačíková, Hana, Velička, Marek, Vlček, Jozef, Topinková, Michaela, Klárová, Miroslava, Burda, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416287/
https://www.ncbi.nlm.nih.gov/pubmed/36013933
http://dx.doi.org/10.3390/ma15165796
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author Ovčačíková, Hana
Velička, Marek
Vlček, Jozef
Topinková, Michaela
Klárová, Miroslava
Burda, Jiří
author_facet Ovčačíková, Hana
Velička, Marek
Vlček, Jozef
Topinková, Michaela
Klárová, Miroslava
Burda, Jiří
author_sort Ovčačíková, Hana
collection PubMed
description In terms of its chemical composition, biomass is a very complex type of fuel. Its combustion leads to the formation of materials such as alkaline ash and gases, and there is evidence of the corrosive effect this process has on refractory linings, thus shortening the service life of the combustion unit. This frequently encountered process is known as “alkaline oxidative bursting”. Corrosion is very complex, and it has not been completely described yet. Alkaline corrosion is the most common cause of furnace-lining degradation in aggregates that burn biomass. This article deals with an experiment investigating the corrosion resistance of 2 types of refractory materials in the Al(2)O(3)-SiO(2) binary system, for the following compositions: I. (53 wt.% SiO(2)/42 wt.% Al(2)O(3)) and II. (28 wt.% SiO(2)/46 wt.% Al(2)O(3)/12 wt.% SiC). These were exposed to seven types of ash obtained from one biomass combustion company in the Czech Republic. The chemical composition of the ash is a good indicator of the problematic nature of a type of biomass. The ashes were analyzed by X-ray diffraction and X-ray fluorescence. Analysis confirmed that ash composition varies. The experiment also included the calculation of the so-called “slagging/fouling index” (I/C, TA, Sr, B/A, Fu, etc.), which can be used to estimate the probability of slag formation in combustion units. The corrosive effect on refractory materials was evaluated according to the norm ČSN P CEN/TS 15418, and a static corrosion test was used to investigate sample corrosion.
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spelling pubmed-94162872022-08-27 Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System Ovčačíková, Hana Velička, Marek Vlček, Jozef Topinková, Michaela Klárová, Miroslava Burda, Jiří Materials (Basel) Article In terms of its chemical composition, biomass is a very complex type of fuel. Its combustion leads to the formation of materials such as alkaline ash and gases, and there is evidence of the corrosive effect this process has on refractory linings, thus shortening the service life of the combustion unit. This frequently encountered process is known as “alkaline oxidative bursting”. Corrosion is very complex, and it has not been completely described yet. Alkaline corrosion is the most common cause of furnace-lining degradation in aggregates that burn biomass. This article deals with an experiment investigating the corrosion resistance of 2 types of refractory materials in the Al(2)O(3)-SiO(2) binary system, for the following compositions: I. (53 wt.% SiO(2)/42 wt.% Al(2)O(3)) and II. (28 wt.% SiO(2)/46 wt.% Al(2)O(3)/12 wt.% SiC). These were exposed to seven types of ash obtained from one biomass combustion company in the Czech Republic. The chemical composition of the ash is a good indicator of the problematic nature of a type of biomass. The ashes were analyzed by X-ray diffraction and X-ray fluorescence. Analysis confirmed that ash composition varies. The experiment also included the calculation of the so-called “slagging/fouling index” (I/C, TA, Sr, B/A, Fu, etc.), which can be used to estimate the probability of slag formation in combustion units. The corrosive effect on refractory materials was evaluated according to the norm ČSN P CEN/TS 15418, and a static corrosion test was used to investigate sample corrosion. MDPI 2022-08-22 /pmc/articles/PMC9416287/ /pubmed/36013933 http://dx.doi.org/10.3390/ma15165796 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
Ovčačíková, Hana
Velička, Marek
Vlček, Jozef
Topinková, Michaela
Klárová, Miroslava
Burda, Jiří
Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title_full Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title_fullStr Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title_full_unstemmed Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title_short Corrosive Effect of Wood Ash Produced by Biomass Combustion on Refractory Materials in a Binary Al–Si System
title_sort corrosive effect of wood ash produced by biomass combustion on refractory materials in a binary al–si system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416287/
https://www.ncbi.nlm.nih.gov/pubmed/36013933
http://dx.doi.org/10.3390/ma15165796
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