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      Physical and mechanical characteristics of composite briquette from coal and pretreated wood fines

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          Abstract

          Melina wood torrefied at 260 °C for 60 min was agglomerated with lean grade coal fines into composite briquettes using pitch as binder. Torrefied biomass (3%–20%) and coal fines (80%–97%) were blended together to produce the composite briquettes under a hydraulic press (28 MPa). The briquettes were cured at 300 °C. Density, water resistance, drop to fracture, impact resistance, and cold crushing strength were evaluated for the composite briquettes. The proximate, ultimate, and calorific value analyses were carried out according to different ASTM standards. Microstructural studies were carried out using scanning electron microscope and electron probe microanalyzer equipped with energy dispersive x-ray. Fourier Transform Infrared Spectrophotometer (FTIR) was used to obtain the functional groups in the raw materials and briquettes. The density of the composite briquettes ranged from 0.92 to 1.31 g/cm 3 after curing. Briquettes with < 10% torrefied biomass has good water resistance index (> 95%). The highest cold crushing strength of 4 MPa was obtained for briquettes produced from 97% coal fines and 3% torrefied biomass. The highest drop to fracture (54 times/2 m) and impact resistance index (1350) were obtained for the sample produced from 97% coal and 3% torrefied biomass. The fixed and elemental carbons of the briquettes showed a mild improvement compared to the raw coal. The peaks from FTIR spectra for the briquettes shows the presence of aromatic C=C bonds and phenolic OH group. The composite briquettes with up to 20% torrefied biomass can all be useful as fuel for various applications.

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          Biomass applications in iron and steel industry: An overview of challenges and opportunities

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            Characterization of Bio-oil and Bio-char from Pyrolysis of Palm Oil Wastes

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              A review of biomass co-firing in North America

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                International Journal of Coal Science & Technology
                Int J Coal Sci Technol
                Springer Science and Business Media LLC
                2095-8293
                2198-7823
                October 2021
                May 31 2021
                October 2021
                : 8
                : 5
                : 1088-1098
                Article
                10.1007/s40789-021-00438-0
                d198e350-6f0b-4a8e-83e4-0b73359b9aee
                © 2021

                https://creativecommons.org/licenses/by/4.0

                https://creativecommons.org/licenses/by/4.0

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