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From gas to stone: KAUST demonstrates CO₂ sequestration underground with reduced water usage

KAUST ·

Researchers at King Abdullah University of Science and Technology (KAUST) have demonstrated a novel method to permanently convert carbon dioxide (CO₂) into solid rock underground. This system recycles water already present deep underground, addressing the critical water scarcity challenge for CO₂ mineralization in arid regions. In a field trial in western Saudi Arabia, 131 tons of CO₂ were injected into ancient basalt formations, with approximately 70% mineralized into solid minerals within ten months. Why it matters: This breakthrough significantly expands the global potential for carbon mineralization as a secure CO₂ storage solution, particularly in water-stressed industrial areas.

Postdoctoral Fellow Focus: Daffne López-Sandoval

KAUST ·

KAUST postdoctoral fellow Daffne López-Sandoval's marine science research was inspired by Jacques Cousteau's ocean exploration documentaries. She joined KAUST in October 2016 after working at the Institute of Marine Sciences in Barcelona, drawn by the university's potential and opportunities for collaboration. At KAUST, her research focuses on developing new tools to measure microalgae productivity in the Red Sea. Why it matters: This research contributes to understanding the role of marine microbes in the Red Sea ecosystem and their impact on global CO2 sequestration.