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1978, Pollution technology review, ISBN 0815507224, Volume no. 48, xiv, 370
Book
Fuel, ISSN 0016-2361, 10/2016, Volume 181, pp. 1224 - 1229
The high sodium content in Xinjiang coal ash induces severe fouling and slagging in pulverized coal furnaces. To solve these problems, many people have... 
Additives | Ash fusion | Sodium fixation | High sodium coal | Mineral transformation | MELTING BEHAVIOR | TRANSFORMATION | COMBUSTION | MECHANISM | ENERGY & FUELS | DEPOSITION | KAOLIN | LIGNITE | ENGINEERING, CHEMICAL | PULVERIZED COAL | GASIFICATION | ZHUNDONG COAL | Silicon
Journal Article
Journal of Turbomachinery, ISSN 0889-504X, 11/2012, Volume 135, Issue 2, pp. 1 - 9
An accelerated deposition test facility was operated with four different coal ash species to study the effect of ash composition on deposition rate and spatial... 
ENGINEERING, MECHANICAL | Mechanical properties | Nozzles | Equipment and supplies | Blades | Properties | Coal ash | Annular | Coal | Aerospace engines | Gas temperature | Ashes | Deposition | Inlets
Journal Article
Book
Fuel, ISSN 0016-2361, 11/2014, Volume 135, pp. 83 - 90
Nowadays the industrial coal beneficiation in China could only reduce the ash yield to about 10%, which could not meet the requirement or standard of... 
Geochemistry | Correlation analysis | Coal ash yield | Physical coal beneficiation | ENERGY & FUELS | CHINA | HEALTH IMPACTS | MINERAL MATTER | HESHAN COALFIELD | INNER-MONGOLIA | ENGINEERING, CHEMICAL | TRACE-ELEMENTS | SHANXI PROVINCE | LATE PERMIAN COALS | MINING DISTRICT | EASTERN YUNNAN | Peat
Journal Article
Fuel, ISSN 0016-2361, 06/2019, Volume 245, pp. 438 - 446
In this study, five different ashes derived from Xinjiang lignite were tested for slagging at 1300–1400 °C in a weak reducing environment (1% CO in nitrogen),... 
Viscosity | Modified inclined plane | Xinjiang lignite | Clay additive | 1300 DEGREES-C | ENGINEERING, CHEMICAL | DEPOSITS | MGO | ENERGY & FUELS | COAL ASH | MODEL | MELTS | Aluminum compounds | Rankings | Lignite | Analysis | Clay | Additives | Magnesium oxide | Exposure | High temperature | Ashes | Inclination | Aluminum oxide | Flow | Slag | Slagging
Journal Article
Chemical Engineering Research and Design, ISSN 0263-8762, 07/2019, Volume 147, pp. 579 - 586
Journal Article
Fuel, ISSN 0016-2361, 07/2015, Volume 151, pp. 118 - 123
A broad set of ashes originating from national and international sources of hard coal, brown coal, and biomass is investigated under different ashing... 
Biomass | Ash fusion temperature | Thermochemical modeling | Mineral matter | Coal | Ash | MELTING BEHAVIOR | MATTER | COMBUSTION | ENERGY & FUELS | WASTES | BLENDS | ENGINEERING, CHEMICAL | CHEMICAL-COMPOSITION | GASIFICATION | Lignite
Journal Article
Fuel, ISSN 0016-2361, 03/2013, Volume 105, pp. 293 - 300
► This study is based on a five-component SiO –Al O –CaO–Fe O –K O system. ► This study uses a combination of XRD and SEM techniques. ► The effects of CaO, Fe... 
X-ray diffraction | Synthetic ash samples | Scanning electron microscope | Ash fusion temperatures | X-ray photoelectron spectrometer | ENERGY & FUELS | BEHAVIOR | VISCOSITY | MODEL | FLOW | PREDICTION | FUSIBILITY | ENGINEERING, CHEMICAL | FLUIDIZED-BED COMBUSTION | POTASSIUM | Coal industry | Scanning electron microscopy | X-rays | Coal | Fusion temperature | Carbon | Ashes | X-ray photoelectron spectroscopy | Bituminous coal
Journal Article