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      Influence of torrefaction, hydrothermal carbonization and degradative solvent extraction pretreatments on moisture absorption and self-ignition characteristics of biomass

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      Fuel
      Elsevier BV

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          Production of solid biochar fuel from waste biomass by hydrothermal carbonization

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            Coal oxidation at low temperatures: oxygen consumption, oxidation products, reaction mechanism and kinetic modelling

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              Impact of torrefaction on the grindability and fuel characteristics of forest biomass.

              Thermal pretreatment or torrefaction of biomass under anoxic condition can produce an energy dense and consistent quality solid biomass fuel for combustion and co-firing applications. This paper investigates the fuel characteristics and grindability of pine chips and logging residues torrefied at temperatures ranging from 225 °C to 300 °C and 30 min residence time. Grinding performance of torrefied biomass evaluated by determining energy required for grinding, particle size distribution and average particle size were compared with raw biomass and coal. Specific energy required for grinding of torrefied biomass decreased significantly with increase in torrefaction temperatures. The grinding energy of torrefied biomass was reduced to as low as 24 kW h/t at 300 °C torrefaction temperature. The gross calorific value of torrefied chips increased with increase in torrefaction temperature. Torrefaction of biomass clearly showed the improved fuel characteristics and grinding properties closer to coal. Copyright © 2010 Elsevier Ltd. All rights reserved.
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                Author and article information

                Contributors
                Journal
                Fuel
                Fuel
                Elsevier BV
                00162361
                December 2020
                December 2020
                : 282
                : 118843
                Article
                10.1016/j.fuel.2020.118843
                d753238c-77e2-4e5d-9a08-ebc6298f3ae5
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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