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2013, CCC, ISBN 9789290295440, Volume 224., London, England
Book
Fuel, ISSN 0016-2361, 12/2017, Volume 210, pp. 826 - 835
[Display omitted] •A novel mining fire extinguishing material is proposed.•A self-foaming gel mixed with expandable graphite to form an intelligent gel... 
Spontaneous combustion | Thermal radiation | Stability | Intelligent gel | Coal | SYSTEM | ENERGY & FUELS | BEHAVIOR | MINE FIRE | ENGINEERING, CHEMICAL | EXPANDABLE GRAPHITE | FOAM | FLAME-RETARDANT | GAS | Fire prevention | Combustion | Hydroxides | Analysis | Acrylic acid | Polyacrylamide | Graphite | Radiation | Green technology | Design and construction | Mine accidents
Journal Article
Fuel, ISSN 0016-2361, 10/2015, Volume 157, pp. 261 - 269
•A 15-t experimental furnace of coal spontaneous combustion was constructed.•Characteristics of coal spontaneous combustion and anaerobic cooling were... 
Oxygen consumption rate | Coal temperature | Cooling rate | Heat intensity | Gas ratios | ENGINEERING, CHEMICAL | FIRES | LOW-TEMPERATURE OXIDATION | MECHANISM | ENERGY & FUELS | Combustion | Furnaces
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 3/2018, Volume 131, Issue 3, pp. 2963 - 2974
Spontaneous combustion, if not eradicated immediately, may lead to coal ignition and even a full-blown fire. An understanding of the characteristics of coal... 
Polymer Sciences | Chemistry | Analytical Chemistry | TG/DSC–FTIR | Measurement Science and Instrumentation | Physical Chemistry | The spontaneous combustion of coal | Coal oxidation | Inorganic Chemistry | Gaseous products | Ignition temperature
Journal Article
Journal Article
Energy, ISSN 0360-5442, 10/2018, Volume 160, pp. 1174 - 1185
Three commercial inhibitors were investigated for their suitability in preventing the spontaneous combustion of noncaking coal (NCC) and gas coal (GC), two... 
Low metamorphic grade | Reaction mechanism | Inhibiting ability | Kinetic analysis | Spontaneous coal combustion | OXIDATION | RATES | THERMODYNAMICS | LAYERED DOUBLE HYDROXIDES | ENERGY & FUELS | Phosphates | Air pollution | Combustion | Hydroxides | Greenhouse gases | Analysis
Journal Article
Fuel, ISSN 0016-2361, 07/2018, Volume 223, pp. 63 - 73
[Display omitted] •A 2-ton experimental furnace of coal spontaneous combustion was constructed.•Random forest (RF) model was developed based on the oxidation... 
Random forest | Coal temperature | Gas concentration | Modeling | Coal spontaneous combustion | Mineral industry | Combustion | Mining industry | Analysis
Journal Article
Fuel, ISSN 0016-2361, 01/2018, Volume 211, pp. 458 - 470
[Display omitted] •Three-dimensional distribution maps and contour plots were generated.•A method on comprehensive division of “three zones” in gob was... 
Spontaneous combustion | Support vector regression | Modelling | Coal explosion | Minimum mining speed | FIRES | SEAMS | POWDER-RIVER-BASIN | ENERGY & FUELS | CHINA | PERFORMANCE | ARTIFICIAL NEURAL-NETWORK | ENGINEERING, CHEMICAL | BANKS | MACHINE | IMPACTS | Mineral industry | Combustion | Mining industry | Analysis
Journal Article
by Lei, CK and Deng, J and Cao, K and Ma, L and Xiao, Y and Ren, LF
FUEL, ISSN 0016-2361, 07/2018, Volume 223, pp. 63 - 73
The accurate prediction of coal temperature plays a vital role in preventing and controlling the spontaneous combustion of coal in coal mines. In this study, a... 
GROSS CALORIFIC VALUE | FIRES | OXYGEN-CONSUMPTION | SUPPORT VECTOR REGRESSION | ENERGY & FUELS | Coal spontaneous combustion | ALGORITHM | Random forest | Coal temperature | MODEL | PARAMETERS | Modeling | ARTIFICIAL NEURAL-NETWORKS | EXPLAINING RELATIONSHIPS | ENGINEERING, CHEMICAL | Gas concentration | INDEX
Journal Article
Fuel Processing Technology, ISSN 0378-3820, 09/2018, Volume 178, pp. 312 - 321
Journal Article
Fuel, ISSN 0016-2361, 09/2018, Volume 227, pp. 325 - 333
•Experimental methods of a 15-t experimental furnace and STA-FTIR were developed.•The entire process of 1st and 2nd coal spontaneous combustions was... 
Mass loss | Alkanes | Temperature change rate | Alkenes | Exothermic reaction | Heat energy intensity | NEW-ZEALAND | MECHANISM | ENERGY & FUELS | BITUMINOUS COAL | CHINA | MINE FIRE | ENGINEERING, CHEMICAL | HYDROGEN | LOW-TEMPERATURE OXIDATION | KINETICS | PYROLYSIS | OXIDIZED COALS | Combustion | Furnaces | Comparative analysis | Product introduction
Journal Article