Project Grant 2546571
- Federal Grant Award Summary The Smithsonian Institution's Office of Sponsored Projects received a $354,472 Project Grant from the National Science Foundation Division of Earth Sciences under the Geosciences program (CFDA 47.050), effective August 1, 2026 through July 31, 2029. This collaborative research initiative will deliver high-pressure and high-temperature laboratory experiments designed to simulate magma formation processes in Earth's mantle, with particular focus on understanding how...
- This National Science Foundation project grant of $249,976 supports research at Arizona State University from August 2022 through July 2025 under the Geosciences program (CFDA 47.050). The award will fund collaborative research between experimental mineral physics and computational geodynamics to advance understanding of deep Earth processes through three key pieces. First, dynamic compression experiments will measure the spin state and structure of dense iron-bearing silicate melts. Second,...
- This Project Grant award from the National Science Foundation (NSF) Division of Earth Sciences, under the NSF Geosciences program (CFDA 47.050), provides $225,000 to Michigan State University (MSU) over 2 years to conduct collaborative research on the effects of ferric iron on heat transport in Earth's mantle. The key objectives of this project are to: 1) Conduct experiments to grow mantle-relevant crystals with compositions including oxidized iron, 2) Measure the heat flow in these crystals...
- The National Science Foundation Division of Earth Sciences awarded a $239,517 Project Grant to Stanford University under the Geosciences federal grant program (CFDA 47.050) to support research exploring the potential role of a basal magma ocean in influencing early Earth's magnetic field processes. Over the two-year period from August 15, 2022 to July 31, 2025, the grantee will collect new experimental measurements on the physical properties of iron-bearing silicate melts under various...
- This National Science Foundation project grant award of $249,068 provides funding from February 1, 2022 through January 31, 2025 to support collaborative research understanding the influence of tectonic setting on the depth of magmatic processes in the mid-ocean ridge system. Funded under the Geosciences program (CFDA 47.050), which supports basic research in atmospheric, earth, and ocean sciences to expand fundamental knowledge and understanding of the integrated Earth system, this award will...
- The National Science Foundation Division of Earth Sciences awarded $480,458 under the Geosciences federal grant program (CFDA 47.050) to the Trustees of the Colorado School of Mines for a project grant titled "Collaborative Research: Advancing Thermodynamic Modeling of Open Magmatic Systems - Translithosphere Magma Chamber Simulator." The funding will support enhancements to the Magma Chamber Simulator, a free computer modeling tool used to study how magmas evolve as they move from...
- This Project Grant award, valued at $281,066.00 and spanning from December 1, 2024 to November 30, 2026, was provided by the National Science Foundation's (NSF) Geosciences Program (CFDA 47.050) to The Trustees of Columbia University in the City of New York. The primary objective of this award is to precisely quantify the carbon content and isotopic signature (δ13C) in the Earth's upper mantle. The research will involve two key activities: 1) conducting high-pressure/high-temperature experiments...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will support a collaborative research effort to develop a novel solution model for igneous biotite. The $144,199 award, effective December 15, 2024 through November 30, 2027, will enable the researchers to conduct high-temperature and high-pressure experiments to study the composition of biotite and other minerals, fluids, and glasses. The resulting solution model will be integrated into the...
- This National Science Foundation Project Grant of $208,680 will support research into the role of a basal magma ocean in influencing early Earth's magnetic field processes. Awarded on August 15, 2022 to the University of California San Diego's Scripps Institution of Oceanography, with performance through July 31, 2025, the grant is part of NSF's Geosciences program (CFDA 47.050). The research team will conduct dynamic and static compression experiments to measure physical properties of...
- The Regents of the University of Minnesota, through its Office of Sponsored Projects Administration, received a $286,561 Project Grant award from the National Science Foundation (NSF) Division of Earth Sciences under the Geosciences program (CFDA 47.050). The award, entitled "COLLABORATIVE RESEARCH: GLOW: IRON REDOX REACTIONS IN MAGMA OCEANS AND DIFFERENTIATION OF ROCKY PLANETS," will support experiments to study how planets become habitable through mantle oxidation during the...
COLLABORATIVE RESEARCH: UNDERSTANDING MAGMA SOURCES AND FORMATION THROUGH EXPERIMENTS AND MODELING -THIS PROJECT WILL USE HIGH-PRESSURE AND HIGH-TEMPERATURE LABORATORY EXPERIMENTS TO SIMULATE PROCESSES OF MAGMA FORMATION. RESEARCHERS WILL STUDY DIFFERENT ELECTRICAL CHARGES OF IRON IN EARTH?S MANTLE AND HOW DIFFERING CONDITIONS AFFECT KEY EARTH PROCESSES. EXAMPLES INCLUDE THE PRODUCTION OF VOLCANIC GASES, THE CONCENTRATION OF CRITICAL MINERALS AND ORES, AND THE FORMATION OF DIAMONDS. THE TEAM WILL THEN USE THE EXPERIMENTAL RESULTS TO DEVELOP A MATHEMATICAL MODEL AND THAT MODEL WILL BE SHARED WITH OTHER RESEARCHERS TO ANSWER THEIR OWN QUESTIONS ABOUT HOW MAGMAS FORM ON EARTH. THE TEAM WILL DEVELOP THE U.S. STEM WORKFORCE BY TRAINING STUDENTS AND RESEARCHERS IN CUTTING-EDGE LABORATORY AND MODELING TECHNIQUES. MEMBERS OF THE PUBLIC WILL BE ABLE TO LEARN ABOUT THIS RESEARCH THROUGH PUBLIC PROGRAMS. OUTCOMES OF THIS PROJECT WILL AID IN STRENGTHENING NATIONAL ECONOMIC PROSPERITY AND GLOBAL COMPETITIVENESS. THE PROPOSED PROJECT IS A COMBINED EXPERIMENTAL, ANALYTICAL, AND MODELING CAMPAIGN WITH THE MAJOR GOAL OF DETERMINING THE FE3+/?FE OF PERIDOTITES IN MAGMA SOURCE REGIONS IN EARTH?S MANTLE BY INVERTING MEASURED FE3+/?FE OF BASALTS. THEY WILL TEST WHETHER DIFFERENCES IN SOURCE OXYGEN FUGACITY BETWEEN MID-OCEAN RIDGES BASALTS (MORB) AND OCEANIC ISLAND BASALTS (OIB) MAY BE ACCOUNTED FOR BY THE DIFFERENCE BETWEEN MELTING IN THE SPINEL STABILITY FIELD (MORB) VERSUS THE GARNET STABILITY FIELD (OIB). NEW EXPERIMENTS WILL PRODUCE LIQUIDS SATURATED IN EITHER A GARNET PERIDOTITE OR SPINEL PERIDOTITE RESIDUE. FE2O3 IN THESE PHASES WILL BE ANALYZED BY A COMBINATION OF ELECTRON MICROPROBE AND X-RAY ABSORPTION NEAR-EDGE STRUCTURE (XANES) ANALYSES. FE2O3 MINERAL/MELT PARTITION COEFFICIENTS RELEVANT TO MELTING IN THE SPINEL AND GARNET STABILITY FIELDS WILL UPDATE AN EMPIRICAL MODEL OF MANTLE MELTING THAT WILL ALLOW INVESTIGATION OF THE OXYGEN FUGACITY OF MELTING UNDER A RANGE OF POSSIBLE TEMPERATURE REGIMES AND SOURCE PERIDOTITE COMPOSITIONS. THIS OPEN-SOURCE MODEL WILL BE AVAILABLE FOR OTHER RESEARCHERS TO USE AND MODIFY FOR THEIR OWN RESEARCH QUESTIONS. THIS PROJECT WILL TRAIN ONE MASTERS STUDENT AND ONE POSTDOCTORAL RESEARCHER IN EXPERIMENTAL PETROLOGY, MICROANALYTICAL TECHNIQUES, THERMODYNAMICS, AND NUMERICAL MODELING. RESULTS WILL BE DISSEMINATED THROUGH PEER-REVIEWED PUBLICATIONS AS WELL AS TO LAY AUDIENCES THROUGH PUBLIC PROGRAMS AT SMITHSONIAN?S NATIONAL MUSEUM OF NATURAL HISTORY IN WASHINGTON D.C. 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 | $30.0k | 4/16/26 |