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AbstractAbstract
[en] In recent years, increasingly comes fly ash from energy industry into the forefront of many research institutes. This is due mainly by effort to take advantage of a huge quantity of fly ash and transform it into a promising material that could replace the natural resources. One of the newest areas dealing with the use of fly ash is alkaline activation, which can bring a whole new perspective on this material and its use. Due to mineralogical composition of coal can be used residues of aluminosilicate, which are contained in fly ash. An important factor is the nature of the present crystalline aluminosilicates, which is determined by the parameters of the combustion process and largely decides the reactivity of fly ash. Therefore, in this article will be described the main prerequisites for the utilization of fly ash in alkaline alkalinisation, and these assumptions will be confronted with a sample of fly ash utilized for alkali activation. (Authors)
Original Title
Predpoklady vyuziti popilku pri alkalicke aktivaci
Primary Subject
Secondary Subject
Source
Janicek, F.; Eleschova, Z. (Faculty of electrical engineering and information technology of the Slovak University of Technology, Bratislava (Slovakia)); VUJE, Inc., 918 64 Trnava (Slovakia); Slovak University of Technology, Faculty of Electrical Engineering and Information Technology, Bratislava (Slovakia); Union of Slovak Research and Scientific Associations (Slovakia); National Center for Research and Application of Renewable Energy Sources (Slovakia); Slovak Committee of World Energy Congress (Slovakia); 284 p; ISBN 978-80-89402-51-9;
; 2012; p. 1-6; CPS 2012: 10. International Scientific Conference on Control of Power Systems; Tatranske Matliare (Slovakia); 15-17 May 2012; 8 figs.; 4 tabs.; 7 refs.

Record Type
Miscellaneous
Literature Type
Conference; Numerical Data
Report Number
Country of publication
ALKALINE HYDROLYSIS, ALUMINIUM OXIDES, CALCIUM OXIDES, COAL, CRISTOBALITE, EXPERIMENTAL DATA, FERMIUM OXIDES, FLUIDIZED BEDS, FLY ASH, FOSSIL-FUEL POWER PLANTS, GLASS, ILLITE, KAOLINITE, MAGNESIUM OXIDES, POTASSIUM OXIDES, QUARTZ, SILICON OXIDES, TITANIUM OXIDES, WASTE PRODUCT UTILIZATION, X-RAY DIFFRACTION
ACTINIDE COMPOUNDS, AEROSOL WASTES, ALKALI METAL COMPOUNDS, ALKALINE EARTH METAL COMPOUNDS, ALUMINIUM COMPOUNDS, ASHES, CALCIUM COMPOUNDS, CARBONACEOUS MATERIALS, CHALCOGENIDES, CHEMICAL REACTIONS, CLAYS, COHERENT SCATTERING, COMBUSTION PRODUCTS, DATA, DECOMPOSITION, DIFFRACTION, ENERGY SOURCES, FERMIUM COMPOUNDS, FOSSIL FUELS, FUELS, HYDROLYSIS, INFORMATION, LYSIS, MAGNESIUM COMPOUNDS, MATERIALS, MINERALS, NUMERICAL DATA, OXIDE MINERALS, OXIDES, OXYGEN COMPOUNDS, POTASSIUM COMPOUNDS, POWER PLANTS, RESIDUES, SCATTERING, SILICATE MINERALS, SILICON COMPOUNDS, SOLVOLYSIS, THERMAL POWER PLANTS, TITANIUM COMPOUNDS, TRANSITION ELEMENT COMPOUNDS, TRANSPLUTONIUM COMPOUNDS, TRANSURANIUM COMPOUNDS, WASTES
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