The Mining Industry's Role in Enhanced Weathering and Mineralization for CO 2 Removal
Enhanced weathering and mineralization (EWM) aim to remove carbon dioxide (CO ) from the atmosphere by accelerating the reaction of this greenhouse gas with alkaline minerals. This suite of geochemical negative emissions technologies has the potential to achieve CO removal rates of >1 gigatonne p...
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Veröffentlicht in: | Environmental science & technology 2024-01, Vol.58 (1), p.43-53 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Enhanced weathering and mineralization (EWM) aim to remove carbon dioxide (CO
) from the atmosphere by accelerating the reaction of this greenhouse gas with alkaline minerals. This suite of geochemical negative emissions technologies has the potential to achieve CO
removal rates of >1 gigatonne per year, yet will require gigatonnes of suitable rock. As a supplier of rock powder, the mining industry will be at the epicenter of the global implementation of EWM. Certain alkaline mine wastes sequester CO
under conventional mining conditions, which should be quantified across the industry. Furthermore, mines are ideal locations for testing acceleration strategies since tailings impoundments are contained and highly monitored. While some environmentally benign mine wastes may be repurposed for off-site use─reducing costs and risks associated with their storage─numerous new mines will be needed to supply rock powders to reach the gigatonne scale. Large-scale EWM pilots with mining companies are required to progress technology readiness, including carbon verification approaches. With its knowledge of geological formations and ore processing, the mining industry can play an essential role in extracting the most reactive rocks with the greatest CO
removal capacities, creating supply chains, and participating in life-cycle assessments. The motivations for mining companies to develop EWM include reputational benefits and carbon offsets needed to achieve carbon neutrality. |
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ISSN: | 0013-936X 1520-5851 |
DOI: | 10.1021/acs.est.3c05081 |