Sodium-based flue gas desulphurisation for the South African coal-fired power industry a review
| dc.contributor.author | Mchabe, Dursman | |
| dc.contributor.author | Hattingh, Burgert B | |
| dc.contributor.author | Koech, Lawrence | |
| dc.contributor.author | Rutto, Hilary | |
| dc.contributor.author | Neomagus, Hein W.J.P | |
| dc.date.accessioned | 2025-11-04T13:30:07Z | |
| dc.date.issued | 2024 | |
| dc.description | Journal Article. Centre of Excellence for Carbon-based Fuels & School of Chemical and Minerals Engineering, Faculty of Engineering, North-West University, Potchefstroom | |
| dc.description.abstract | A comprehensive review of sodium-based flue gas desulphurisation is presented in this article. The paper provides a comparison of various sodium-based technologies with regards to sulphur removal efficiency, sorbent cost, by-product valorisation and overall process economics. More emphasis was placed on dry sorbent injection (furnace sorbent injection, economizer sorbent injection, duct sorbent injection) and semi-dry flue gas desulphurisation. Particular effort was devoted in identifying state-of-the-art technologies and potential research gaps in a summarized way. In water-scarce countries, where sodium-based technologies are more economically feasible, and duct sorbent injection processes are favourable, it is recommended to use sodium-based absorbents since they will have higher sorbent utilization and improved electrical resistivity (compared to their calcium-based and/or magnesium-based sorbent equivalents). However, the check-and-balance of the associated advantages and disadvantages are a pivotal determinant of the sorbent choice. Apart from sulphur dioxide abatement, the additional advantages of sodium-based absorbents include its high sulphur trioxide removal efficiency as well as its hydrogen fluoride and hydrogen chloride removal capability. A scarcity in literature, especially as it relates to application in the South African coal-fired power generation industry, necessitates the need for further research with particular focus on local sodium-based absorbent markets, the physiochemical properties and sulphur dioxide reduction potential of locally acquired sodium-based absorbents, modelling of sulphation reaction kinetics in semi-dry and dry application, as well as the techno-economic feasibility of sorbent based technologies for the South African power industry. | |
| dc.identifier.citation | Mchabe, D et al .2024. Sodium-based flue gas desulphurisation for the South African coal-fired power industry a review. South African Journal of Chemical Engineering, 48(1), pp.167-183. https://doi.org/10.1016/j.sajce.2024.01.016 | |
| dc.identifier.issn | 1026-9185 | |
| dc.identifier.uri | http://hdl.handle.net/10394/43894 | |
| dc.language.iso | en | |
| dc.publisher | Elsevier B.V. | |
| dc.subject | Flue gas desulphurization | |
| dc.subject | Coal-fired power plants | |
| dc.subject | Sodium-based absorbents | |
| dc.subject | SO2 emissions abatement | |
| dc.title | Sodium-based flue gas desulphurisation for the South African coal-fired power industry a review | |
| dc.type | Article |
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