This five-year Project Grant from the National Science Foundation's Division of Chemical, Bioengineering, Environmental, and Transport Systems will provide $921,728 to Cornell University under the Engineering (47.041) federal grant program. The funding will support research investigating the crystallization mechanisms of calcium and magnesium carbonates in confined fluids within architected siliceous nanochannels. The project aims to further understanding of pore-scale interfacial processes influencing carbon mineralization for carbon dioxide storage. Insights gained will inform new technologies for reactive gas separation, metal recovery, and predicting the fate of injected CO2. The award is also integrated with educational outreach activities, including engaging underrepresented groups in STEM and rural communities in carbon removal solutions. Undergraduate and graduate students will be trained through research on carbon transformations and decarbonization topics. The products and services provided under this award will advance fundamental scientific knowledge of carbonate crystallization while co-creating carbon dioxide removal solutions and broadening participation in related STEM fields.
Mod # | Description | Reason For Modification | Federal Obligation (Click to sort descending) | Date (Click to sort ascending) |
|---|---|---|---|---|
| Not listed | $460.9k | 6/17/22 |