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Journal Article
Applied energy, ISSN 0306-2619, 06/2016, Volume 171, pp. 314 - 324
... out.•Economic costs and returns during the lifetime of slag were calculated. The high-temperature blast furnace slag is conventionally treated by water quenching (WQ... 
Life cycle assessment | Dry slag granulation | Water quenching | Blast furnace slag | Slag treatment | LIFE-CYCLE ASSESSMENT | ENERGY & FUELS | COAL | IRON | ENGINEERING, CHEMICAL | RECOVERY | WASTE HEAT | REDUCTION | COLD EXPERIMENTS | DISINTEGRATION | Furnaces | Economic aspects | Explosions | Sustainable development | Environmental protection | Slags | Blast furnace slags | Granulation | Sustainability | Waste heat | Drying
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 01/2015, Volume 40, Issue 3, pp. 1607 - 1615
The coal gasification rate of Datong coal in molten blast furnace slag using carbon dioxide as gasifying agent was studied at the temperature ranging from 1473 to 1723 K... 
Energy recovery | Gasification | Molten blast furnace slag | Kinetic | Coal | ELECTROCHEMISTRY | FEASIBILITY | MECHANISM | ENERGY & FUELS | STEAM | CHEMISTRY, PHYSICAL | CHARS | ELEVATED-TEMPERATURES | KINETICS | LATENT-HEAT | CARBON-DIOXIDE | CO2/CHAR GASIFICATION
Journal Article
Journal of cleaner production, ISSN 0959-6526, 01/2016, Volume 112, pp. 1150 - 1155
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2016, Volume 317, pp. 373 - 384
....•Ba-modified blast-furnace slag geopolymer showed sorption capacity up to 119mg/g.•Sorption capacity was among the highest of reported in the literature... 
Metakaolin | Sulphate | Geopolymer | Adsorption | Blast-furnace slag | MODIFIED CLINOPTILOLITE | ADSORBENTS | SORPTION | RICE HUSK | AQUEOUS-SOLUTION | ENVIRONMENTAL SCIENCES | ENGINEERING, CIVIL | ENGINEERING, ENVIRONMENTAL | WASTE-WATER | EQUILIBRIUM | FLY-ASH | Furnaces | Barium | Green technology
Journal Article
Ceramics international, ISSN 0272-8842, 2015, Volume 41, Issue 1, pp. 1421 - 1435
...) and blast furnace slag (BFS). FA–BFS blends were alkali-activated with sodium silicate (water glass) solution. The synthesis of alkali-activated binders was conducted at 95... 
Physical–mechanical properties | Microstructure | Blast furnace slag | C. Fly ash | Alkali activation | Physical-mechanical properties | HARDENED PROPERTIES | MORTARS | CURING CONDITIONS | ASH/SLAG PASTES | MATERIALS SCIENCE, CERAMICS | CALCIUM SILICATE HYDRATE | Fly ash | ACCELERATED CARBONATION | TEMPERATURE | SHRINKAGE-REDUCING ADMIXTURES | GEOPOLYMER | PHASE EVOLUTION | Mechanical properties | Explosions
Journal Article
Journal of non-crystalline solids, ISSN 0022-3093, 2018, Volume 499, pp. 344 - 349
Granulated blast furnace slag (GBS) is a glassy by-product of the steel industry that is formed during quenching of the molten slag after the blast furnace in a water-jet... 
Hyperquenched glass | Fictive temperature | Cooling rate | Calcium aluminosilicate glass | Thermal history | Blast furnace slag | GLASS-TRANSITION TEMPERATURE | FORMING ABILITY | PERFORMANCE | STABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | RELAXATION | VISCOSITY | MATERIALS SCIENCE, CERAMICS | DEPENDENCE | ALUMINOSILICATE GLASS | DYNAMICS | Furnaces | Explosions | Force and energy
Journal Article
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 3/2018, Volume 131, Issue 3, pp. 2951 - 2962
A novel strategy that combines steam reforming of bio-oil and recovering waste heat from blast furnace (BF... 
Polymer Sciences | Thermodynamics | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Waste heat recovery | Physical Chemistry | Bio-oil model compounds | Hydrogen | Steam reforming | Inorganic Chemistry | Blast furnace slag
Journal Article