Project Grant 2233868
- This $173,000 National Science Foundation project grant supports research to develop muscovite mica as a new continuous geothermometer for determining crustal rock temperature histories between 275-425 degrees Celsius. Lehigh University will conduct diffusion and dating experiments on muscovite samples with known thermal histories to test its utility for temperature measurement during rock cooling. Samples will also undergo reheating experiments to examine muscovite response to shorter thermal...
- This three-year, $337,782 Project Grant from the National Science Foundation's Geosciences program (CFDA 47.050) supports research at California State University Fullerton and Princeton University to determine the time and length scales of magma bodies in magmatic arcs. The grant recipients will study potassium feldspar phenocrysts and megacrysts up to 12 cm long containing mineral inclusions from the Tuolumne Intrusive Complex in Yosemite National Park. Electron microprobe, laser...
- This $809,775 National Science Foundation project grant will fund the acquisition of a next-generation multicollector-inductively coupled plasma mass spectrometer for the University of Arizona. The instrument will be housed at the university's Arizona LaserChron Center, a National Science Foundation-supported facility that supports earth sciences research. It will enable improved accuracy and precision for existing analytical methods, development of new techniques only possible with the proposed...
- This $150,388 Project Grant from the National Science Foundation's Geosciences program (CFDA 47.050) will fund collaborative research to reconstruct the missing geological record of late Proterozoic tectonism along the western margin of Laurentia using deep-time thermochronology. Three early-career researchers and twelve students from multiple universities will investigate ancient supercontinent breakup using geochemical signatures from rock heating and cooling during deposition and erosion....
- 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 award under the Geosciences program (CFDA 47.050) provides $409,005 to the University of Texas at Austin for a collaborative research project examining rodingites as recorders of tectonic processes. The research will determine the pressure-temperature-deformation-fluid-time histories of rodingites from the Dun Mountain ophiolite belt in New Zealand to constrain the timing and conditions of serpentinization and interpret the tectonic evolution of plate boundaries....
- This National Science Foundation Project Grant of $236,141 supports research by Columbia University under the Geosciences program (CFDA 47.050) from May 15, 2022 to April 30, 2025. The research aims to reconstruct the missing geological record of late Proterozoic tectonism along the western margin of Laurentia using low-temperature thermochronology. Researchers will study the thermal imprint of sedimentary cover on basement rocks beneath major unconformities to fill a one-billion-year gap in the...
- This Project Grant award from the National Science Foundation (NSF) Division of Earth Sciences (CFDA 47.050 - Geosciences) supports collaborative research by Trustees of Union College in Schenectady, NY to study diffusion behavior of elements in the minerals zircon and baddeleyite. The $118,795 award, active from September 1, 2023 to August 31, 2026, will fund experiments to better understand how atoms diffuse within these important geochronometric minerals. The findings will help improve...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will support collaborative research at the New Mexico Institute of Mining and Technology to develop a novel solution model for igneous biotite. The $465,220 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, a common mineral in silicic igneous rocks. The goal is to...
- This Project Grant award, funded by the National Science Foundation's Geosciences Program (CFDA 47.050), provides $975,000 to the University of Utah to acquire a multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS). This state-of-the-art instrumentation will enable high-precision isotope ratio measurements, which are critical for advancing research in Earth science disciplines at the University of Utah and across the region. The new MC-ICP-MS will support a range of...
IN SITU RB-SR MICA PETROCHRONOLOGY: A TRANSFORMATIVE APPROACH TO CHARACTERIZING TECTONIC PROCESSES -THE RADIOGENIC DECAY OF 87RB TO 87SR IS AN IMPORTANT ?CLOCK? THAT GEOLOGISTS USE TO MEASURE THE AGE OF ROCKS AND MINERALS. HOWEVER, THESE MEASUREMENTS HAVE TRADITIONALLY REQUIRED TIME-CONSUMING LAB WORK ON POOLED MINERAL SEPARATES. SEVERAL TECHNICAL ADVANCES HAVE RECENTLY ALLEVIATED THIS PROBLEM BY ENABLING IN-PLACE (IN SITU) RB-SR MEASUREMENTS, BUT THERE ARE STILL BARRIERS TO THEIR WIDESPREAD USE. THESE INCLUDE A LACK OF APPROPRIATE REFERENCE MATERIALS, AS WELL AS QUESTIONS ABOUT WHAT RB-SR DATES RECORD IN DIFFERENT ROCKS. THIS PROPOSAL ADDRESSES THESE PROBLEMS IN TWO WAYS. FIRST, THE RESEARCHERS WILL DEVELOP TWO RB-SR REFERENCE GLASSES TO SIGNIFICANTLY EXPAND THE USE AND APPLICATION OF RB-SR DATING. THEY WILL ALSO DETERMINE RB-SR DATES FROM THREE WELL-STUDIED ROCK SUITES, TO PROVIDE KEY CONTEXT FOR SIMILAR DATA ELSEWHERE. THIS TECHNIQUE IS NOVEL BECAUSE IT ALLOWS US TO ACCURATELY DATE MICA, ONE OF THE MOST COMMON MINERALS IN EARTH'S CRUST. IT ALSO FACILITATES THE MEASUREMENT OF ROCK RB-SR DATES IN LESS THAN AN HOUR, FAR SHORTER THAN THE TRADITIONAL METHOD (WEEKS TO MONTHS). THIS PROJECT IS LED BY MIDDLE AND EARLY CAREER SCIENTISTS AND SUPPORTS THE PROFESSIONAL DEVELOPMENT OF TWO UNDERGRADUATE AND TWO GRADUATE STUDENTS. IT ADDITIONALLY PROMOTES SCIENTIFIC COLLABORATION BETWEEN TWO RURAL INSTITUTIONS IN THE NORTHEASTERN US. THE SCIENTIFIC GOALS OF THIS PROPOSAL ARE TWO-FOLD. FIRST, THE RESEARCHERS WILL PRODUCE TWO MICA GLASSES (MUSCOVITE + BIOTITE) AND CHARACTERIZE THEM FOR MAJOR + TRACE ELEMENTS AND RB-SR ISOTOPES. THIS INCLUDES HIGH-PRECISION ISOTOPE-DILUTION TECHNIQUES AS WELL AS A COMMUNITY-WIDE, MULTI-INSTRUMENT PROFICIENCY TESTING SCHEME (G-PROBE). THEIR MICA GLASS REFERENCE MATERIALS WILL BE FREELY AND WIDELY DISSEMINATED, FILLING A CRITICAL ANALYTICAL GAP AND SPURRING FURTHER DEVELOPMENT OF THE RB-SR TECHNIQUE IN OTHER LABS, WHICH WILL INEVITABLY LEAD TO OTHER SIGNIFICANT DISCOVERIES. AS PART OF THIS EFFORT, A DATA REDUCTION SCHEME (DRS) FOR PROCESSING LASER ABLATION RB-SR DATA WILL BE FURTHER DEVELOPED TO INCLUDE MASS-SHIFTED ISOTOPES FROM MULTICOLLECTOR INSTRUMENTS AND DOWNHOLE FRACTIONATION ASSESSMENT. SECOND, THEY WILL DETERMINE IN SITU MICA RB-SR DATES BY SINGLE- AND MULTI-COLLECTOR LA-ICP-MS/MS FROM THREE WELL-CHARACTERIZED LOCALES REPRESENTING ENDMEMBER TECTONIC CASES: THE MOOSELOOKMEGUNTIC CONTACT AUREOLE, ME (USA); THE FRANCISCAN SUBDUCTION COMPLEX, CA (USA); AND THE IVREA-VERBANO ZONE, S. ALPS (ITALY). BY PERFORMING CAMPAIGN-STYLE MICA RB-SR GEOCHRONOLOGY IN THREE TECTONIC CASE STUDIES, WITHIN THE CONTEXT OF OTHER TEXTURAL AND GEOCHEMICAL DATA COLLECTED DURING THIS WORK, THE RESEARCHERS WILL TEST THE BEHAVIOR OF THE RB-SR SYSTEM ACROSS A RANGE OF GEOLOGICALLY RELEVANT CONDITIONS. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 6/20/25 | ||
| Not listed | $391.3k | 1/12/23 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
UMS1440S | The Pennsylvania State University | Project Grant 2233868 | $18.1k | 3/7/24 |