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Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker

A coproduction tests of quaternary (Q) phase(6CaO·4Al2O3·MgO·SiO2) -3CaO·3Al(2)O(3)·CaSO(4) cement clinker and an experimental study on the relationship between the mineral production capability and the physiochemical properties are conducted in a two-stage multiphase reaction test bed with Changgua...

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Autores principales: He, Chao, Tian, Chaochao, Li, Gang, Mei, Yahe, Zhang, Quanguo, Jiao, Youzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892906/
https://www.ncbi.nlm.nih.gov/pubmed/29634732
http://dx.doi.org/10.1371/journal.pone.0195505
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author He, Chao
Tian, Chaochao
Li, Gang
Mei, Yahe
Zhang, Quanguo
Jiao, Youzhou
author_facet He, Chao
Tian, Chaochao
Li, Gang
Mei, Yahe
Zhang, Quanguo
Jiao, Youzhou
author_sort He, Chao
collection PubMed
description A coproduction tests of quaternary (Q) phase(6CaO·4Al2O3·MgO·SiO2) -3CaO·3Al(2)O(3)·CaSO(4) cement clinker and an experimental study on the relationship between the mineral production capability and the physiochemical properties are conducted in a two-stage multiphase reaction test bed with Changguang coal. X-ray diffractometer (XRD) analyses are performed on the coproduction clinker samples. The results demonstrate that, with the reduction in particle sizes of the coal powder and the additives and expanded screening level differences between them, both the proportion of Q phase and the mass of 3CaO·3Al(2)O(3)·CaSO(4) in the clinker increase accordingly. When mixed coal powder particles are prepared through reducing particle sizes and expanding screening level differences between coal powder and additives, the additives CaO and MgO are more likely to be enclosed by coal powder to form globular polymerized particles. In addition, this preparation aids in polymerization and promotes even distribution of CaO, MgO and coal minerals, thus facilitating clinker mineral formation reactions of inorganic substances in the mixed coal powder. Target minerals, such as 2CaO·SiO(2) and Q phase, are found in both industrial high-calcium limestone and low-calcium limestone coproduction clinker samples. A diffraction peak of free CaO is also evident in both samples. Compared with a coproduction clinker sample of high-calcium limestone, that of low-calcium limestone exhibits higher diffraction peaks for 2CaO·SiO(2) and Q phase. With the current state of the art, it is not yet the optimum choice to substitute CaCO(3) for CaO in Q-phase cement clinker coproduction. Before the technology matures and gains practical application, further study on the form and the mixing process of calcium-based additives for cement clinker coproduction will be required.
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spelling pubmed-58929062018-04-20 Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker He, Chao Tian, Chaochao Li, Gang Mei, Yahe Zhang, Quanguo Jiao, Youzhou PLoS One Research Article A coproduction tests of quaternary (Q) phase(6CaO·4Al2O3·MgO·SiO2) -3CaO·3Al(2)O(3)·CaSO(4) cement clinker and an experimental study on the relationship between the mineral production capability and the physiochemical properties are conducted in a two-stage multiphase reaction test bed with Changguang coal. X-ray diffractometer (XRD) analyses are performed on the coproduction clinker samples. The results demonstrate that, with the reduction in particle sizes of the coal powder and the additives and expanded screening level differences between them, both the proportion of Q phase and the mass of 3CaO·3Al(2)O(3)·CaSO(4) in the clinker increase accordingly. When mixed coal powder particles are prepared through reducing particle sizes and expanding screening level differences between coal powder and additives, the additives CaO and MgO are more likely to be enclosed by coal powder to form globular polymerized particles. In addition, this preparation aids in polymerization and promotes even distribution of CaO, MgO and coal minerals, thus facilitating clinker mineral formation reactions of inorganic substances in the mixed coal powder. Target minerals, such as 2CaO·SiO(2) and Q phase, are found in both industrial high-calcium limestone and low-calcium limestone coproduction clinker samples. A diffraction peak of free CaO is also evident in both samples. Compared with a coproduction clinker sample of high-calcium limestone, that of low-calcium limestone exhibits higher diffraction peaks for 2CaO·SiO(2) and Q phase. With the current state of the art, it is not yet the optimum choice to substitute CaCO(3) for CaO in Q-phase cement clinker coproduction. Before the technology matures and gains practical application, further study on the form and the mixing process of calcium-based additives for cement clinker coproduction will be required. Public Library of Science 2018-04-10 /pmc/articles/PMC5892906/ /pubmed/29634732 http://dx.doi.org/10.1371/journal.pone.0195505 Text en © 2018 He et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
He, Chao
Tian, Chaochao
Li, Gang
Mei, Yahe
Zhang, Quanguo
Jiao, Youzhou
Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title_full Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title_fullStr Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title_full_unstemmed Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title_short Experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of Q phase-3CaO·3Al(2)O(3)·CaSO(4) cement clinker
title_sort experimental study on the relationship between the mineral production capability and the physiochemical properties in the coproduction of q phase-3cao·3al(2)o(3)·caso(4) cement clinker
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5892906/
https://www.ncbi.nlm.nih.gov/pubmed/29634732
http://dx.doi.org/10.1371/journal.pone.0195505
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