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Waste Management, ISSN 0956-053X, 2007, Volume 27, Issue 1, pp. 69 - 80
Fly ash generated from MSW ash-melting and gasification-melting plants, known as Melting Furnace Fly Ash (MFA), contains considerable amounts of heavy metals... 
ENGINEERING, ENVIRONMENTAL | ENVIRONMENTAL SCIENCES | Waste Management | Lead - isolation & purification | Particulate Matter - chemistry | Coal Ash | Humans | Refuse Disposal | Conservation of Natural Resources | Cities | Lead - chemistry | Zinc - chemistry | Carbon - chemistry | Zinc - isolation & purification
Journal Article
Waste Management, ISSN 0956-053X, 12/2012, Volume 32, Issue 12, pp. 2306 - 2314
Journal Article
Proceedings of the Combustion Institute, ISSN 1540-7489, 2015, Volume 35, Issue 2, pp. 2373 - 2380
Ash aerosol and ash deposit formation during oxy-coal combustion were explored through experiments in a self-sustained 100kW rated down-fired oxy-fuel... 
Oxy-coal combustion | Particle size distribution | Ash deposition | Ash aerosol | FUEL COMBUSTION | ENERGY & FUELS | PARTICULATE FORMATION | SIZE | PULVERIZED-COAL | PARTICLE FORMATION | ENGINEERING, MECHANICAL | ENGINEERING, CHEMICAL | THERMODYNAMICS | Combustion | Concentration (composition) | Deposits | Aerosols | Silicon | Formations | Ashes | Deposition | Vaporization
Journal Article
Waste Management, ISSN 0956-053X, 2010, Volume 30, Issue 4, pp. 667 - 672
In this paper, synthesis of geopolymer from fluidized bed combustion (FBC) ash and pulverized coal combustion (PCC) fly ash was studied in order to effectively... 
MORTAR | ENVIRONMENTAL SCIENCES | WORKABILITY | STRENGTH | ENGINEERING, ENVIRONMENTAL | BOTTOM ASH | Microscopy, Electron, Scanning | Temperature | Coal Ash | Polymers - chemical synthesis | Sodium Hydroxide - chemistry | Thermogravimetry | Silicates - chemistry | Industrial Waste | Carbon - chemistry | Compressive Strength | Particulate Matter - chemistry | Incineration | Time Factors | X-Ray Diffraction | Coal | Polymers - chemistry | Conservation of Natural Resources | Coal industry | Hydroxides | Fluidized-bed combustion | Analysis | Aluminum compounds | Universities and colleges | Mortars (Ordnance) | SODIUM COMPOUNDS | X-RAY DIFFRACTION | HYDROGEN COMPOUNDS | COAL | CURING | ELECTRON MICROSCOPY | SODIUM SILICATES | FLUIDIZED-BED COMBUSTION | SURFACE AREA | FLY ASH | SURFACE PROPERTIES | CHEMICAL ANALYSIS | CHEMICAL REACTIONS | DIFFRACTION | THERMAL ANALYSIS | REACTIVITY | WASTES | GRAVIMETRIC ANALYSIS | MACHINING | AEROSOL WASTES | COMMINUTION | MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES | SODIUM HYDROXIDES | SCANNING ELECTRON MICROSCOPY | MATERIALS | RESIDUES | ASHES | PRESSURE RANGE | COMBUSTION | OXYGEN COMPOUNDS | CARBONACEOUS MATERIALS | ALKALI METAL COMPOUNDS | SILICATES | FOSSIL FUELS | HYDROXIDES | SCATTERING | FUELS | OXIDATION | COMPRESSION STRENGTH | GRINDING | SILICON COMPOUNDS | THERMOCHEMICAL PROCESSES | MORTARS | PRESSURE RANGE MEGA PA | COHERENT SCATTERING | ENERGY SOURCES | MICROSCOPY | THERMAL GRAVIMETRIC ANALYSIS | QUANTITATIVE CHEMICAL ANALYSIS | COMBUSTION PRODUCTS | MECHANICAL PROPERTIES
Journal Article
Fuel Processing Technology, ISSN 0378-3820, 07/2018, Volume 176, pp. 64 - 75
In entrained-flow gasification, solid fuel is brought in contact with oxygen and steam, yielding slagging conditions at temperatures of 1250–1800 °C. The... 
FactSage | Coal ash compositions | Ash fusion behavior | Entrained-flow gasification | Artificial neural network | Thermodynamic calculation | ChemApp | ENGINEERING, CHEMICAL | TEMPERATURES | ENERGY & FUELS | MODEL | CHEMISTRY, APPLIED | Thermodynamics | X-ray spectroscopy | Neural networks | Analysis
Journal Article