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Fuel Processing Technology, ISSN 0378-3820, 2015, Volume 134, pp. 372 - 377
Abstract Biomass is an especially reactive fuel. There have been large increases in the transportation and utilization of biomass fuels over the past 10 years... 
Spontaneous combustion | Biomass | Smouldering combustion | Ignition | Self-heating | ENGINEERING, CHEMICAL | ENERGY & FUELS | KINETICS | MODEL | CHEMISTRY, APPLIED | THERMAL-DECOMPOSITION | Pyrolysis | Activation energy | Analysis | Utilization | Categories | Risk | Combustion | Fuels
Journal Article
Applied Energy, ISSN 0306-2619, 04/2017, Volume 191, pp. 153 - 162
....•Generation of high quality syngas is not restricted to entrained flow gasification.•Instead, it is technology independent and coupled to high process temperature... 
Gasification | Biomass | Fixed bed | Entrained flow | Oxygen blown | ENTRAINED-FLOW GASIFICATION | ENERGY & FUELS | PERFORMANCE | BEHAVIOR | STEAM | COAL | AIR | ENGINEERING, CHEMICAL | WASTE | TORREFIED WOOD | PYROLYSIS | BIOMASS GASIFICATION | Powders
Journal Article
Fuel (Guildford), ISSN 0016-2361, 2019, Volume 235, pp. 306 - 316
•The heat treatment temperature had the highest influence on char reactivity.•Co-pyrolysis of pinewood char with biooil decreased the char reactivity... 
Biomass char | Biooil | Metallurgical coke | High-temperature pyrolysis | Reactivity | Raman spectroscopy | Pyrolysis | Analysis
Journal Article
BioEnergy Research, ISSN 1939-1234, 3/2013, Volume 6, Issue 1, pp. 114 - 130
...) temperature regimes from sugarcane bagasse, peanut hulls, pecan shell, pine chips, poultry litter, and switchgrass... 
Life Sciences | Energy content | Plant Breeding/Biotechnology | Wood Science & Technology | Thermogravimetric analysis | Bioenergy | GRACEnet | Nuclear magnetic resonance | Plant Sciences | Plant Genetics & Genomics | Plant Ecology | Pyrolysis | Litter | Poultry | Feedstock | Combustion | Chars | Ashes | Thermal energy
Journal Article
Industrial & Engineering Chemistry Research, ISSN 0888-5885, 03/2008, Volume 47, Issue 6, pp. 1846 - 1854
.... The effects of pyrolysis temperature (350−600 °C), and biomass particle size (100−600 μm), on the yields and composition of bio-oil, gas, and char are reported... 
ENGINEERING, CHEMICAL | WESTERN-AUSTRALIA | BIO-OILS | VACUUM PYROLYSIS | FLUIDIZED-BED REACTOR | PART 1 | SCALE | PF RESOLS | CELLULOSE | SOFTWOOD | OLIGOMERS
Journal Article
ISIJ international, ISSN 0915-1559, 2014, Volume 54, Issue 3, pp. 553 - 558
Al2O3–C sensor based on the blackbody cavity theory achieved a continuous measurement of molten steel temperature... 
molten steel temperature | firing temperature | mechanical properties | Al2O3–C sensor | OXIDATION RESISTANCE | Al2O3-C sensor | BEHAVIOR | METALLURGY & METALLURGICAL ENGINEERING | CORROSION | ADDITIVES | MICROSTRUCTURES | REFRACTORIES | WATER-WETTABILITY | PHENOLIC RESIN | BRICKS | PYROLYSIS
Journal Article
Journal of cleaner production, ISSN 0959-6526, 2018, Volume 174, pp. 977 - 987
.... Here we show pyrolysis dependent properties of rapeseed stem biochar pyrolyzed under various temperatures (200–700 °C, in 50 °C intervals), heating rates (1, 5, 10, 15, 20 °C/min... 
Pyrolysis temperature | Rapeseed stem | Residence time | Heating rate | Biochar pH | SURFACE-PROPERTIES | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | LIFE-CYCLE ASSESSMENT | CONTAMINATED SOIL | CARBON | LEAD IMMOBILIZATION | ADSORPTION | ENVIRONMENTAL SCIENCES | SLOW PYROLYSIS | ENGINEERING, ENVIRONMENTAL | RENEWABLE ENERGY | FEEDSTOCK TYPE | STRAW | Pyrolysis | Analysis
Journal Article
Fuel, ISSN 0016-2361, 11/2015, Volume 160, pp. 16 - 23
...>THFS>THFR at a pyrolysis temperature of 800°C.•PAHs in 300DF are mainly mono- and multi- alkyl substituted compounds... 
PAHs | Low-temperature coal tar | Gradient extraction | TG-FTIR | Formaldehyde
Journal Article
Chemical engineering journal (Lausanne, Switzerland : 1996), ISSN 1385-8947, 2014, Volume 240, pp. 574 - 578
•Higher temperatures produced higher thermal stability biochars.•Production method showed strong effect on biochar properties... 
Hydrothermal carbonization | Biochar | Slow pyrolysis | Soil amendment | Seed germination | ENGINEERING, CHEMICAL | REMOVAL | ENGINEERING, ENVIRONMENTAL | HEAVY-METALS | Pyrolysis | Production management | Methods | Carbon content | Production methods | Chemical engineering | Germination | Feedstock | Combustion | Chars
Journal Article
Fuel (Guildford), ISSN 0016-2361, 2014, Volume 136, pp. 79 - 88
In order to predict coal behaviour during certain utilisation processes, and to improve and develop coal conversion technologies, it is important to understand... 
Swelling | Low-temperature devolatilisation | Large coal particles | COMBUSTION | ENERGY & FUELS | K2CO3 ADDITION | REACTIVITY | FRAGMENTATION | SINGLE COAL | ENGINEERING, CHEMICAL | PRESSURE | DEVOLATILIZATION | GASIFICATION | FLUIDIZED-BED | PYROLYSIS | Powders | Analysis | Coal conversion | CT imaging
Journal Article