Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/27387
Title: Chemical activation of porous carbon extracted from biomass combustion bottom ash for CO2 adsorption
Authors: Gorbounov, M
Diaz-Vasseur, E
Danaci, D
Masoudi Soltani, S
Keywords: carbon capture;adsorption;biomass combustion ash;activated carbon;chemical activation
Issue Date: 14-Oct-2023
Publisher: Elsevier on behalf of the Institution of Chemical Engineers (IChemE)
Citation: Gorbounov, M. et al. (2024) 'Chemical activation of porous carbon extracted from biomass combustion bottom ash for CO2 adsorption', Carbon Capture Science and Technology, 10 (March 2024), pp. 1 - 10. doi: 10.1016/j.ccst.2023.100151.
Abstract: Copyright © 2023 The Author(s). Adsorption of CO2 by solid sorbents has been proposed as a pathway to decrease the emissions associated with combustion of fuels. However, if employing the waste residues of the combustion process (e.g. biomass combustion bottom ash), a pathway towards a green circular zero-waste and zero-emissions economy may be achieved. As such, a carbonaceous adsorbent has been produced (via chemical activation) using biomass combustion bottom ash as a precursor. This process entailed an intelligently designed experimental campaign based on a randomised Taguchi L9 orthogonal array, which revealed moderate activation temperatures (∼625 °C) and times (30 min) coupled with high ramp rates (10 – 15 °C/min) to be preferable. Following this method, a highly microporous (∼93 %) material was produced possessing a surface area of 643.6 m2/g. This, in turn, facilitated a substantial increase in CO2 uptake, namely, 1.29 mmol/g at 50 °C (quadruple that of the parent carbon and double that of the physically activated counterpart). Additionally, the working capacity as well as the heat of adsorption were measured. The latter properties are often overlooked with main focus drawn towards purely the adsorption capacity; however, they are imperative for industrial deployment of CO2 adsorbents.
Description: Data Availability Statement: Data have been made available in Brunel University London’s repository via Brunel Figshare database.
Supplementary materials are available online at: https://www.sciencedirect.com/science/article/pii/S2772656823000556?via%3Dihub#sec0021 .
URI: https://bura.brunel.ac.uk/handle/2438/27387
DOI: https://doi.org/10.1016/j.ccst.2023.100151
Other Identifiers: ORCID iD: Salman Masoudi Soltani https://orcid.org/0000-0002-5983-0397
Appears in Collections:Dept of Chemical Engineering Research Papers

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