Project Grant 2317726
- This $710,000 Project Grant awarded by the National Science Foundation's (NSF) Engineering program (CFDA 47.041) will fund a multi-year research project at the University of Nebraska-Lincoln to advance the understanding of naturally occurring hydrogen deposits in the Midcontinent region of the United States. The key objectives of the project are to: 1) elucidate the transport and accumulation of natural hydrogen in soils and rocks through laboratory testing and field monitoring, 2) identify...
- This Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) provides $300,000 to Texas Tech University to develop a new, high-risk approach for carbon-negative hydrogen production from reactions between iron-rich rocks and water in the Earth's subsurface. The principal investigators will leverage geothermal energy and heat from exothermic reactions to self-sustain the hydrogen production process while simultaneously injecting CO2 to permanently store...
- This $460,000 Project Grant award from the National Science Foundation (NSF) under the Integrative Activities Program (CFDA 47.083) supports a collaborative research project led by Howard University to develop an innovative electromagnetic (EM)/microwave-assisted catalytic process for in-situ hydrogen (H2) generation within petroleum reservoir formations. The key objectives of this 3-year research effort are to: 1) elucidate the fundamental rock-hydrocarbon-water-catalyst interactions under...
- This Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) supports fundamental research and development at the University of Tulsa to advance the modeling and analysis of CO2 transport in porous media for geological carbon sequestration. The $157,471 award, effective July 1, 2024 through March 31, 2025, aims to develop computationally efficient data-driven models to predict and analyze the complex flow behavior of CO2 in geological formations. The...
- This Project Grant award for $100,000 from the National Science Foundation (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program supports a research project titled "CRISES: DECARBONIZATION: ENHANCING JUST ENERGY TRANSITIONS" conducted by the University of California, Santa Barbara (UCSB). The primary objectives of this project are to: 1) map energy transitions, 2) identify best practices for managing energy transitions, and 3) engage communities in energy transition...
- The National Science Foundation (NSF) awarded a $290,078 Project Grant under the Integrative Activities (CFDA 47.083) program to the Board of Regents of the University of Nebraska, doing business as the University of Nebraska, to conduct research on hydrogen flow in porous media for underground energy storage. The key objectives are to: (1) elucidate the hydrogen transport, storage, and loss in porous media during repetitive drainage-imbibition processes at the fundamental pore scale; and (2)...
- The National Science Foundation (NSF) awarded a $149,525 Early-Concept Grant for Exploratory Research (EAGER) under the Integrative Activities (IA) program to Oklahoma State University (OSU). The project, titled "CET: Decentralized Algorithms for Integrating Decarbonized Chemical Process Heating with Renewable-Driven, Electric Power Systems", aims to address critical barriers to information and data sharing that impede decarbonization efforts for chemical process heating through...
- This Project Grant awarded by the National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems (CFDA 47.041) provides $397,818 in funding to the University of Oklahoma for a three-year research initiative (September 1, 2025 – August 31, 2028). The project delivers an integrated multiscale kinetic modeling framework designed to optimize the design of porous catalysts used in industrial chemical manufacturing processes. The research team,...
- Oklahoma State University received a $241,726 Project Grant award from the National Science Foundation Division of Chemical, Bioengineering, Environmental, and Transport Systems. The award is supporting collaborative research on visible-light-augmented reverse water gas shift reaction on hybrid plasmonic photocatalysts from June 1, 2021 through May 31, 2024. This Project Grant is being funded through the NSF's Engineering program (CFDA 47.041), which aims to improve quality of life and...
- The National Science Foundation (NSF) awarded a $275,000 Project Grant to Redshift Energy, Inc., a small disadvantaged business, under the NSF Technology, Innovation, and Partnerships (CFDA 47.084) program. The funding supports the development of a plasma technology for the dissociation of hydrogen sulfide (H2S) to produce carbon-free hydrogen and recover sulfur. Key innovations include: 1) a high-speed vortex flow design to achieve high energy efficiency, 2) a gas-dynamic and chemical-kinetic...
GCR: TRANSITION TO GREEN ENERGY IN GAS-PRODUCING REGIONS: HOW THE CONVERGENCE OF ENGINEERING, SOCIAL SCIENCES AND GEOSCIENCE CAN ENABLE CARBON-FREE H2 TECHNOLOGIES -THE VISION OF THIS PROJECT IS TO ENABLE THE TRANSITION TO GREEN ENERGY IN GAS-PRODUCING REGIONS USING A UNIQUE PROPOSITION: TO ENGAGE LOCAL COMMUNITIES IN THE CO-DEVELOPMENT OF RESEARCH GOALS RELATED TO HYDROGEN ENERGY TRANSITION. THIS EFFORT WILL INVOLVE CUTTING-EDGE CAPABILITIES IN PRODUCING HYDROGEN FROM NATURAL GAS IN A WAY THAT DOES NOT PRODUCE CARBON-CONTAINING GASES THAT POLLUTE THE ENVIRONMENT. THE PROJECT WILL USE SOCIAL SCIENCE TO GUIDE ENGINEERING AND GEOSCIENCE RESEARCH, BASED ON ISSUES, PERCEIVED RISKS, AND INTERESTS OF RURAL COMMUNITIES THAT ARE EXPECTED TO BE IMMEDIATELY IMPACTED BY A TRANSITION TO HYDROGEN ENERGY. BY IDENTIFYING AND CLEARLY ARTICULATING THE NEEDS OF RURAL COMMUNITIES, INCLUDING MEMBERS OF INDIGENOUS COMMUNITIES, RESEARCHERS WILL DEVELOP VIABLE WAYS TO PURSUE HYDROGEN PRODUCTION AND STORAGE RESEARCH. IN THIS MANNER, THE PROJECT WILL DISCOVER HOW TO UTILIZE THE RESOURCES OF A STATE LIKE OKLAHOMA, WHICH HAS SIGNIFICANT OIL AND GAS PRODUCTION, TO GENERATE GREEN ENERGY. ENABLING A REGION RICH IN FOSSIL-FUEL RESOURCES TO USE THESE TO CREATE A HYDROGEN-BASED ECONOMY CAN HELP CREATE A DIVERSIFIED AND ROBUST FREE MARKET ECONOMY, LESS PRONE TO BOOM-AND-BUST CYCLES. IT CAN ALSO HELP DEVELOP HIGH-TECHNOLOGY, SKILL-INTENSIVE NEW INDUSTRIES IN THE PRODUCTION, STORAGE, AND DISTRIBUTION OF HYDROGEN. MOST HYDROGEN TODAY IS PRODUCED IN OIL REFINERIES OR COAL POWER GENERATION PLANTS THROUGH THE CENTURY-OLD STEAM METHANE REFORMING (SMR) PROCESS THAT EMITS LARGE AMOUNTS OF CARBON DIOXIDE. FOR ZERO-CARBON EMISSIONS DURING SMR, CARBON DIOXIDE WOULD HAVE TO BE CAPTURED AND SEQUESTERED, BUT THIS APPROACH ADDS COST AND IS NOT FEASIBLE IN ALL AREAS. TRULY GREEN HYDROGEN CAN BE PRODUCED WITH ELECTROLYSIS USING POWER ONLY FROM RENEWABLE SOURCES, BUT THIS TECHNOLOGY IS ALSO QUITE COSTLY AND REQUIRES CLEAN WATER AND SCARCE MATERIALS AS ELECTRODES. THIS PROJECT FOCUSES ON AN ALTERNATIVE PATH, ONE MORE APPROPRIATE FOR GAS-PRODUCING REGIONS IN THE US: CATALYST-ASSISTED METHANE PYROLYSIS, WHERE METHANE DECOMPOSES DIRECTLY INTO HYDROGEN AND SOLID CARBON (WITH ZERO CARBON DIOXIDE PRODUCTION). THE SOLID CARBON BYPRODUCT CAN BE UTILIZED IN OTHER INDUSTRIES. YET, BECAUSE OF THE HISTORY OF THE FOSSIL FUEL INDUSTRY AND BECAUSE OF POTENTIAL RESISTANCE TO NOVEL TECHNOLOGIES, ANY VIABLE RESEARCH AND DEVELOPMENT PROGRAM WILL NEED TO BE CALIBRATED TO LOCAL GEOLOGICAL, SOCIAL, AND ECONOMIC CONDITIONS. HOW CAN WE FORMULATE A HYDROGEN-FOCUSED RESEARCH MODEL THAT CONSIDERS THE SPECIAL SOCIAL AND ECONOMIC CONDITIONS OF A STATE THAT DEPENDS ON OIL AND GAS PRODUCTION? ADDRESSING THIS CHALLENGING QUESTION REQUIRES A DEEP UNDERSTANDING OF INTERSECTING SOCIAL AND ECONOMIC FACTORS INVOLVED IN AN ENERGY TRANSITION, INCLUDING DECODING POTENTIAL NEW VULNERABILITIES OR OTHER NEGATIVE IMPACTS THAT COULD BE CREATED BY DECARBONIZATION. THIS PROJECT WILL INVESTIGATE LOCAL PERCEPTIONS OF THE ENERGY TRANSITION AND USE THESE FINDINGS TO FINE TUNE RESEARCH GOALS TO ADDRESS THE POINTS OF CONCERN. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 9/23/25 | ||
| Not listed | $0 | 8/1/25 | ||
| Not listed | $1.2m | 9/19/23 |