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Possibilities of affecting the portland cement hydration by the addition of fluidized ash
Nehybka, Josef ; Bartoníčková, Eva (referee) ; Opravil, Tomáš (advisor)
This work is focused on study of possibilities of influence of hydration of Portland cement with an admixture of fluid ashes. The work deals with the tests with fluid filter ashes and milled fluid bed combustion ashes. Predominantly, a calorimetric measurement is used for study of admixtures. The prepared samples were found out on their mechanical parameters as the tensile bending strength and compressive stress. X-ray powder diffraction was used to determine of phase composition of the raw materials and created samples after hydration.
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The composites materials based on the solid residues of fluidized combustion
Kalina, Martin ; Koplík, Jan (referee) ; Opravil, Tomáš (advisor)
This bachelor thesis deals with a study of possible preparation of composite materials based on the solid residues of fluidized bed combustion. It focuses mainly on the strength properties of prepared materials and the phase composition of incurred hydration products. A powder X-ray diffraction analysis was used to determine the phase composition of prepared stiffened samples. Based on analysis of raw materials (fluid ash), various ingredients and additives were added to the mixtures in order to modify the composition or rheological properties of the fresh mixtures. After 28 days of maturation, the phase composition of prepared samples and the development of compressive and tensile strength in bending were monitored.
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Possibilities of affecting the portland cement hydration by the addition of fluidized ash
Nehybka, Josef ; Bartoníčková, Eva (referee) ; Opravil, Tomáš (advisor)
This work is focused on study of possibilities of influence of hydration of Portland cement with an admixture of fluid ashes. The work deals with the tests with fluid filter ashes and milled fluid bed combustion ashes. Predominantly, a calorimetric measurement is used for study of admixtures. The prepared samples were found out on their mechanical parameters as the tensile bending strength and compressive stress. X-ray powder diffraction was used to determine of phase composition of the raw materials and created samples after hydration.
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The composites materials based on the solid residues of fluidized combustion
Kalina, Martin ; Koplík, Jan (referee) ; Opravil, Tomáš (advisor)
This bachelor thesis deals with a study of possible preparation of composite materials based on the solid residues of fluidized bed combustion. It focuses mainly on the strength properties of prepared materials and the phase composition of incurred hydration products. A powder X-ray diffraction analysis was used to determine the phase composition of prepared stiffened samples. Based on analysis of raw materials (fluid ash), various ingredients and additives were added to the mixtures in order to modify the composition or rheological properties of the fresh mixtures. After 28 days of maturation, the phase composition of prepared samples and the development of compressive and tensile strength in bending were monitored.
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Modeling of Transformation of Coal-N to Nitrogen Oxides in Fluidized Bed Combustion
Svoboda, Karel ; Pohořelý, Michael
The report contains an overview of transformation phenomena and reactions for coal nitrogen leading to nitrogen oxides emissions. Initial nitrogen in volatile matter from coals is considered in three forms: NH3, HCN and N2. The precursors (NH3 and HCN) are oxidized primarily to NO and N2O and further they react with carbon, CO and NH3. The nitrogen from coal-char is directly oxidized to NO ane N2O,which can be reduced by carbon and CO. An attempt has been made to quantitatively characterize effect of coal properties and combustion conditions on nitrogen oxides emissions.
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