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SKLENÁŘOVÁ, D.; DVOŘÁK, K.
Originální název
Impact of Limestone Properties Influencing the Process of Thermal Decomposition
Anglický název
Druh
Stať ve sborníku v databázi WoS či Scopus
Originální abstrakt
The main process of thermal decomposition of limestones can be described as the decomposition of calcium carbonate due to thermal stress. During this process, there are many influences that can affect the properties of the newly formed calcium oxide and, of course, also the properties of the final product - lime. This study aims to examine the different characteristics of the input material (geological age and origin, total porosity, chemical analysis, insoluble residue) and their effect on the properties of burnt lime. Four different burning temperatures were used for each sample. The microstructure of the lime was analysed by scanning electron microscopy and a lime reactivity test was performed. It was observed that the burning process of geologically younger limestone with higher porosity was faster even at lower temperatures, as well as the sintering process of samples studied in this paper.
Anglický abstrakt
Klíčová slova
Ferroelectricity, Porous media, Scanning electron microscopy, Sintering, Thermal effects, Chemical analysis
Klíčová slova v angličtině
Autoři
Rok RIV
2024
Vydáno
09.08.2023
Nakladatel
AIP Publishing
Kniha
14TH CONFERENCE OF CIVIL AND ENVIRONMENTAL ENGINEERING FOR PHD STUDENTS AND YOUNG SCIENTISTS: YOUNG SCIENTIST 2022 (YS22)
ISSN
0094-243X
Periodikum
AIP conference proceedings
Svazek
2887
Číslo
1
Stát
Spojené státy americké
Strany počet
6
BibTex
@inproceedings{BUT185739, author="Dorothea {Sklenářová} and Karel {Dvořák}", title="Impact of Limestone Properties Influencing the Process of Thermal Decomposition", booktitle="14TH CONFERENCE OF CIVIL AND ENVIRONMENTAL ENGINEERING FOR PHD STUDENTS AND YOUNG SCIENTISTS: YOUNG SCIENTIST 2022 (YS22)", year="2023", journal="AIP conference proceedings", volume="2887", number="1", pages="6", publisher="AIP Publishing", doi="10.1063/5.0159036", issn="0094-243X" }