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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium REWAS 2022: Energy Technologies and CO2 Management
Presentation Title Review on Hydrotalcite-derived Material from Waste Metal Dust, a Solid Adsorbent for CO2 Capture: Challenges and Opportunities in South African Coal Fired Thermal Plant
Author(s) Daniel Ogochukwu Okanigbe, Olawale M Popoola, Abimbola PI Popoola
On-Site Speaker (Planned) Daniel Ogochukwu Okanigbe
Abstract Scope CO2 is a major greenhouse gas contributing to global warming; future projections portray CO2 emissions will gradually grow unless there is counter progress in the formation of carbon-neutral technologies. These technologies are however, linked with a number of shortcomings: high cost, high energy requirement and release of hazardous by-products. Hence, the need for cost-effective and energy efficient carbon capture and separation (CCS) technologies. This paper aimed at determining the gap of knowledge in this area of research. This was achieved by conducting a review of publications under the following sub-themes: CCS technologies; CO2 adsorbent potential of hydrotalcite derived material (HDM) from metallurgical dusts, amongst others. It was concluded that a gap of knowledge exist in the area of using metallurgical dusts to prepare HDM for CO2 capture. As recommendation, future research in line with review should focus on study of HDM from metallurgical dusts for CO2 capture from power plants.
Proceedings Inclusion? Planned:
Keywords Energy Conversion and Storage, Recycling and Secondary Recovery, Sustainability

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Benefits of a Smart Electrical Energy Management Information System and Its Impact in Your CO2 Footprint
Copper in Biomass Fuels and Its Effect on Combustion Processes
Design of a Molten Salt Metal-air Battery with High-energy Density
Design of Phase Change Material Composites for Efficient and Rapid Storage of Thermal Energy
Development of a Thermodynamic Model for Chromates, Molybdates, Tungstates and Vanadates Involved in the Corrosion of Steels (Fe, Cr, Ni, Mo, W, V) at High Temperatures in Atmospheres Containing O-H-S-C-Cl and Alkaline Salts
Energy Efficiency, Electrification, and Low-carbon Fuels & Energy Sources for Decarbonizing Materials Industry
Geomimicry Inspired MicroNano Concrete as Subsurface Hydraulic Barrier Materials: Learning from Shale Rocks as Best Geological Seals
Heat Island Mitigation Strategy for Urban Areas Using Phase Change Materials (PCM)
Macroscopic Modeling and Phase Field Modeling of Solar Grade Silicon by Molten Salt Electrolysis
Modes of Operation, Design, and Experiments in a Laboratory Solar Convective Furnace System
NOW ON-DEMAND ONLY - Circored Fine Ore Direct Reduction Plus DRI Smelting - Proven Technologies for the Transition towards Green Steel
Power to Hydrogen the Prospects of Green Hydrogen Production Potential in Africa
Radiative Cooling: Harnessing the Cold of Space as a Renewable Thermodynamic Resource
Review on Hydrotalcite-derived Material from Waste Metal Dust, a Solid Adsorbent for CO2 Capture: Challenges and Opportunities in South African Coal Fired Thermal Plant
Silicon-production from SiO-gas via Gas-phase Reactions
Solidification of Salt Hydrate Eutectics Using Multiple Nucleation Agents
Synthesis Methods for Nanoparticle Morphology Control in Clean Energy Applications
The Influence of H2 and CO Atmospheres on SiO Formation
Thermoeconomics and Dyanamics of Orange Hydrogen Production, an Energy Matter
To Decarbonize Industry, We Must Decarbonize Heat
Treatment of an Indigenous Lepidolite Ore for Sustainable Energy Considerations

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