Please use this identifier to cite or link to this item: https://bura.brunel.ac.uk/handle/2438/33615
Title: Thermo-catalytic Conversion of Actual Drax Biomass Combustion Residue into Porous Carbon: A Dual Valorisation Approach
Authors: Masoudi Soltani, Salman
Awodun, Kofoworola
He, Yinghe
Keywords: biomass;pyrolysis;activation;adsorbent
Issue Date: 29-Jul-2026
Publisher: Elsevier
Citation: Masoudi Soltani, S. 'Thermo-catalytic Conversion of Actual Drax Biomass Combustion Residue into Porous Carbon: A Dual Valorisation Approach', Fuel Processing Technology, Vol. 0 (accepted), pp. 1-47.
Abstract: The valorisation of combustion residues offers a sustainable route to support sustained development of biomass power plants. This study investigates the synthesis of Ca-enhanced porous carbons from biomass combustion residues sourced from Drax Power Station (UK) and post-consumer chicken eggshells. Unburnt biomass was selectively recovered through systematic drying, size fractionation, and ultrasonic treatment, producing a carbon-rich precursor with reduced inorganic contamination. The recovered biomass was systematically pyrolysed, Ca-enhanced, and activated to yield a structurally stable porous sorbent with a fixed carbon content of 61%. Raman analysis confirmed turbostratic carbon formation with consistent defect characteristics (ID/IG ≈ 0.65), while FTIR spectra showed substantial attenuation of lignocellulosic O-H and C=O functionalities following carbonisation. Surface enhancement was achieved via eggshell-assisted calcium incorporation through dry-mixing and Ca-ion impregnation, with the latter producing superior dispersion and controlled pore development. Subsequent physical activation demonstrated that CO2 activation outperformed steam activation, generating predominantly microporous carbons with a total accessible surface area of 463 m2 g-1, micropore surface area of 384 m2 g-1 and an estimated external surface area of 92 m2 g-1. The resulting surface area was comparable to those reported for several physically activated biomass-derived carbons while avoiding chemical activating agents
Description: Data Availability Statement - All relevant raw data have been made available in Brunel University of London’s repository via Brunel Figshare database via the DOI: 10.17633/rd.brunel.32648235 (reserved).
URI: https://bura.brunel.ac.uk/handle/2438/33615
ISSN: 0378-3820
Other Identifiers: ORCiD : Salman Masoudi Soltani - https://orcid.org/0000-0002-5983-0397
ORCiD : Kofoworola Awodun - https://orcid.org/0009-0001-8086-2350
ORCiD : Yinghe He - https://orcid.org/0000-0003-4252-5414
Appears in Collections:Department of Chemical Engineering Embargoed Research Papers

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