Project Grant 2141091
- This $300,000 project grant from the National Science Foundation's (NSF) Integrative Activities (CFDA 47.083) program aims to advance electrocatalytic technologies for capturing and converting carbon dioxide (CO2) into valuable fuels like methane and ethylene. The award to Clemson University's Division of Research will fund research to utilize captured (bi)carbonate ions rather than pure CO2 gas as the feedstock for the electrochemical reduction process. This approach seeks to improve the energy...
- This Project Grant award, provided by the National Science Foundation (NSF) under the NSF Technology, Innovation, and Partnerships (CFDA 47.084) program, supports the development of a light-based, energy-generating carbon removal process. The $274,094 award to Banyu Carbon Inc. aims to reduce greenhouse gas emissions by sequestering or reusing captured carbon dioxide. Key objectives include improving the resistance of the proprietary photoacid catalyst to degradation and replacing expensive...
- The National Science Foundation awarded a $100,000 Project Grant under the Technology, Innovation, and Partnerships program to the University of Wisconsin-Madison to develop a direct air capture technology for carbon dioxide sequestration. The university will utilize industrial waste materials and a two-step mineral carbonation method to directly capture CO2 from the atmosphere and store it as a stable mineral. This has the potential to offer a low-cost solution for permanent CO2 removal on a...
- This $185,080 project grant from the National Science Foundation's Engineering program (CFDA 47.041) supports collaborative research between the University of Wisconsin-La Crosse and Purdue University to develop porous bi-layer catalysts for converting carbon dioxide into valuable products like ethylene at industrially relevant rates. The researchers will engineer novel layered catalyst structures combining specific metal/metal oxide heterostructures to reduce reaction overpotential and...
- The National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems awarded a $299,980 Project Grant to the University of Southern California (USC) for the period of August 1, 2023 to July 31, 2026. The purpose of this grant is to investigate mass and energy transfer mechanisms in stimuli-responsive "smart" sorbent materials for direct air capture of carbon dioxide (CO2). The research aims to develop new sorbent materials that can release...
- This $460,000 Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) will support a comprehensive computational and experimental investigation to elucidate the key mechanisms and energies associated with the stability of liquid carbon dioxide (CO2) dispersions in brine. The primary objectives are to: 1) develop a coarse-grained model of cellulose nanocrystals and predict their aggregation and morphology on liquid interfaces, 2) correlate predicted...
- The National Science Foundation (NSF) Engineering program (CFDA 47.041) awarded a $259,494 Project Grant to the University of Connecticut (UConn). The grant supports collaborative research to develop an innovative system for directly capturing CO2 from air and electrochemically converting it into value-added liquid fuels. This work involves engineering a novel polymer-nanocatalyst membrane that utilizes natural cellulose and a cobalt nanosheet catalyst to facilitate efficient CO2 capture and...
- The National Science Foundation (NSF) Engineering program (CFDA 47.041) has awarded a $344,481 project grant to the University of Southern California (USC) Department of Contracts and Grants Division. The grant, titled "CAREER: In-Situ Capture and Conversion of CO2 to Hydrocarbons," will fund research to develop perovskite-based materials capable of efficiently capturing carbon dioxide (CO2) and catalyzing its conversion to valuable hydrocarbon compounds like syngas, ethane, and...
- The Department of Energy's Office of Science awarded a $250,000 Project Grant under the Office of Science Financial Assistance Program (CFDA 81.049) to Carbon To Stone, Inc. located in Ithaca, NY. The grant is for the project "REACTIVE CO2 CAPTURE AND MINERALIZATION USING ALKALINE INDUSTRIAL RESIDUES TO PRODUCE SUSTAINABLE CONSTRUCTION MATERIALS" with a performance period from July 22, 2024 to July 21, 2025. The project aims to develop a process for capturing and mineralizing CO2 using...
- The National Science Foundation (NSF) Engineering program (CFDA 47.041) awarded a $199,786 Project Grant to the Florida Institute of Technology Inc. (Florida TECH) on May 1, 2024. The grant supports the development of a waste heat-driven adsorption-based carbon dioxide (CO2) separation technique using adsorbent-coated microchannels. Key objectives include comprehensively evaluating how hot liquid water can effectively remove adsorbed CO2, and developing a fundamental understanding of the complex...
This two-year, $250,000 project grant from the National Science Foundation's Engineering program (CFDA 47.041) will support the development of an innovative low-temperature approach to convert captured carbon dioxide emissions into calcium and magnesium carbonates using a vortex-flow driven process. Specifically, Cornell University will advance the fundamental aspects of reactor engineering and tuning of multiphase chemical interactions to chemically regenerate carbon dioxide-loaded solvents, such as sodium glycinate, into inorganic carbonates using calcium- and magnesium-bearing materials at 50-75°C. This represents a significantly lower-temperature alternative to conventional thermal regeneration above 90°C. The research is also expected to realize calcium and magnesium carbonates with well-ordered particle size distributions using turbulent vortices in a customized Taylor-Couette reactor. If successful, this process could integrate carbon dioxide capture and regeneration via solid carbonate formation to produce new filler and construction materials on a commercial scale.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $250.0k | 1/25/22 |