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Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment

The main objective of the study was to produce alternative binder materials, obtained with low cost, low energy consumption, and low CO(2) production, by regenerating end-of-life (EOL) materials from mineral deposits, to replace ordinary Portland cement (OPC). The materials analyzed were ash and sla...

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Autores principales: Vasile, Bogdan Stefan, Nicoara, Adrian-Ionut, Surdu, Vasile-Adrian, Ene, Vladimir Lucian, Neacsu, Ionela Andreea, Stoica, Alexandra Elena, Oprea, Ovidiu, Boerasu, Iulian, Trusca, Roxana, Vrabec, Mirijam, Miklavic, Blaz, Sturm, Saso, Ow-Yang, Cleva, Gulgun, Mehmet Ali, Bundur, Zeynep Basaran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103673/
https://www.ncbi.nlm.nih.gov/pubmed/35591427
http://dx.doi.org/10.3390/ma15093092
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author Vasile, Bogdan Stefan
Nicoara, Adrian-Ionut
Surdu, Vasile-Adrian
Ene, Vladimir Lucian
Neacsu, Ionela Andreea
Stoica, Alexandra Elena
Oprea, Ovidiu
Boerasu, Iulian
Trusca, Roxana
Vrabec, Mirijam
Miklavic, Blaz
Sturm, Saso
Ow-Yang, Cleva
Gulgun, Mehmet Ali
Bundur, Zeynep Basaran
author_facet Vasile, Bogdan Stefan
Nicoara, Adrian-Ionut
Surdu, Vasile-Adrian
Ene, Vladimir Lucian
Neacsu, Ionela Andreea
Stoica, Alexandra Elena
Oprea, Ovidiu
Boerasu, Iulian
Trusca, Roxana
Vrabec, Mirijam
Miklavic, Blaz
Sturm, Saso
Ow-Yang, Cleva
Gulgun, Mehmet Ali
Bundur, Zeynep Basaran
author_sort Vasile, Bogdan Stefan
collection PubMed
description The main objective of the study was to produce alternative binder materials, obtained with low cost, low energy consumption, and low CO(2) production, by regenerating end-of-life (EOL) materials from mineral deposits, to replace ordinary Portland cement (OPC). The materials analyzed were ash and slag from the Turceni thermal power plant deposit, Romania. These were initially examined for morphology, mineralogical composition, elemental composition, degree of crystallinity, and heating behavior, to determine their ability to be used as a potential source of supplementary cementitious materials (SCM) and to establish the activation and transformation temperature in the SCM. The in-situ pozzolanic behavior of commercial cement, as well as cement mixtures with different percentages of ash addition, were further observed. The mechanical resistance, water absorption, sorptivity capacity, resistance to alkali reactions (ASR), corrosion resistance, and resistance to reaction with sulfates were evaluated in this study using low-vacuum scanning electron microscopy.
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spelling pubmed-91036732022-05-14 Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment Vasile, Bogdan Stefan Nicoara, Adrian-Ionut Surdu, Vasile-Adrian Ene, Vladimir Lucian Neacsu, Ionela Andreea Stoica, Alexandra Elena Oprea, Ovidiu Boerasu, Iulian Trusca, Roxana Vrabec, Mirijam Miklavic, Blaz Sturm, Saso Ow-Yang, Cleva Gulgun, Mehmet Ali Bundur, Zeynep Basaran Materials (Basel) Article The main objective of the study was to produce alternative binder materials, obtained with low cost, low energy consumption, and low CO(2) production, by regenerating end-of-life (EOL) materials from mineral deposits, to replace ordinary Portland cement (OPC). The materials analyzed were ash and slag from the Turceni thermal power plant deposit, Romania. These were initially examined for morphology, mineralogical composition, elemental composition, degree of crystallinity, and heating behavior, to determine their ability to be used as a potential source of supplementary cementitious materials (SCM) and to establish the activation and transformation temperature in the SCM. The in-situ pozzolanic behavior of commercial cement, as well as cement mixtures with different percentages of ash addition, were further observed. The mechanical resistance, water absorption, sorptivity capacity, resistance to alkali reactions (ASR), corrosion resistance, and resistance to reaction with sulfates were evaluated in this study using low-vacuum scanning electron microscopy. MDPI 2022-04-24 /pmc/articles/PMC9103673/ /pubmed/35591427 http://dx.doi.org/10.3390/ma15093092 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
Vasile, Bogdan Stefan
Nicoara, Adrian-Ionut
Surdu, Vasile-Adrian
Ene, Vladimir Lucian
Neacsu, Ionela Andreea
Stoica, Alexandra Elena
Oprea, Ovidiu
Boerasu, Iulian
Trusca, Roxana
Vrabec, Mirijam
Miklavic, Blaz
Sturm, Saso
Ow-Yang, Cleva
Gulgun, Mehmet Ali
Bundur, Zeynep Basaran
Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title_full Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title_fullStr Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title_full_unstemmed Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title_short Fly-Ash Evaluation as Potential EOL Material Replacement of Cement in Pastes: Morpho-Structural and Physico-Chemical Properties Assessment
title_sort fly-ash evaluation as potential eol material replacement of cement in pastes: morpho-structural and physico-chemical properties assessment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103673/
https://www.ncbi.nlm.nih.gov/pubmed/35591427
http://dx.doi.org/10.3390/ma15093092
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