Project Grant 2202698
- This $696,926 National Science Foundation Project Grant under the Geosciences program (CFDA 47.050) funds collaborative research between the University of New Mexico, University of South Florida, and Harvard University to advance understanding of global mean sea level variations and the relative contributions of polar ice sheets and glaciers. The researchers will use geological records preserved in coastal cave deposits to reconstruct global mean sea level history over the past 130,000 years...
- The University of South Florida was awarded a $537,362 Project Grant from the National Science Foundation's Geosciences program (CFDA 47.050) for the period of July 1, 2022 to June 30, 2025. The grant aims to advance understanding of global mean sea level variations over the last 130,000 years through geological records preserved in coastal cave deposits from multiple locations. Researchers will reconstruct past sea level history and study sea level high stands during prior warm periods. They...
- This National Science Foundation (NSF) Project Grant award under the Geosciences program (CFDA 47.050) provides $162,339 to Trustees of Boston College, doing business as Boston College, for a research project titled "Developing a 500 kyr Speleothem Growth History near the Southern Laurentide Ice Sheet Margin in New York State." The project will use speleothem (cave formation) data to determine if the Laurentide Ice Sheet advanced to near its Last Glacial Maximum extent during each of...
- This $129,726 Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund a collaborative research project to develop a 500,000-year speleothem growth history near the southern margin of the Laurentide Ice Sheet in New York State. The research aims to determine if the ice sheet reached New York during each of the past five ice ages, which will provide insights into the consistency of ice sheet response to climate change drivers and improve estimates...
- This $786,904 National Science Foundation project grant supports research to measure absolute paleo-surface temperatures for important past climate periods in the southwestern and northern United States. Funded under the Geosciences program (CFDA 47.050), the award will provide quantitative paleoclimate reconstructions using dual clumped isotope and strontium isotope analyses of speleothem samples from multiple caves. Researchers from the University of New Mexico and the University of Michigan...
- The University of California Irvine was awarded a three-year, $607,706 Project Grant from the National Science Foundation to conduct collaborative research titled "COLLABORATIVE RESEARCH: P2C2--SPELEOTHEM CONSTRAINTS ON SEASONAL HYDROCLIMATE VARIABILITY IN MAINLAND SOUTHEAST ASIA SINCE THE LATE PLEISTOCENE." The grant is funded through the NSF's Geosciences program (CFDA 47.050), which supports basic research in the atmospheric, earth, and ocean sciences to strengthen understanding...
- This three-year, $384,577 project grant from the National Science Foundation's Division of Ocean Sciences, under the Geosciences program (CFDA 47.050), will support collaborative research to construct robust temperature and ice volume histories during the late Cretaceous and Cenozoic periods (approximately 77-0 million years ago). The University of Rochester will utilize benthic foraminiferal test compositions from sea floor sediments to develop proxy records of deep ocean temperatures,...
- This three-year, $361,678 National Science Foundation project grant supports research investigating the importance of sea-level feedbacks in stabilizing marine-based ice sheets during retreat. Funded under the Geosciences program, which supports basic research expanding understanding of the integrated Earth system, the University of California, Santa Barbara will combine new late Pleistocene/Holocene relative sea-level data from Scotland with ice sheet and glacial isostatic adjustment...
- This $146,450 National Science Foundation project grant supports collaborative research to reconstruct speleothem proxy records from Central Texas during past abrupt global change events between 16,000-11,000 years ago. The research team, led by Rice University, will analyze seven coeval speleothems spanning a 375-kilometer transect to discern changes in moisture sources and the location of wet-dry gradients. The speleothem records will be compared to proxy system models and climate models to...
- Federal Project Grant Award Summary The National Science Foundation's Division of Earth Sciences (Geosciences Program, CFDA 47.050) awarded Columbia University $286,967 on September 1, 2025, for collaborative research examining sea-level changes during the last interglacial period (approximately 129,000 to 116,000 years ago) using fossil coral reefs and cave deposits from the Yucatán Peninsula. The project will deliver scientific research products including uranium-thorium dating analyses of...
COLLABORATIVE RESEARCH: P2C2--CONSTRAINTS ON LAST INTERGLACIAL AND LATE HOLOCENE GLOBAL MEAN SEA LEVEL AND FINGERPRINTING POLAR ICE MASS FLUX FROM BROADLY DISTRIBUTED COASTAL CAVES -THIS PROJECT AIMS TO ADVANCE THE KNOWLEDGE OF GLOBAL MEAN SEA LEVEL (GMSL) AND CHARACTERIZE THE RELATIVE CONTRIBUTION OF ICE SHEETS AND GLACIERS TO GMSL VARIATIONS. THE RESEARCHERS WILL USE GEOLOGICAL RECORDS PRESERVED IN CAVE DEPOSITS TO RECONSTRUCT THE GMSL HISTORY OVER THE LAST 130.000 YEARS FROM MULTIPLE LOCATIONS (MEDITERRANEAN SEA, YUCATAN PENINSULA, PHILIPPINE SEA), AND TO STUDY SEA-LEVEL HIGH STANDS DURING PAST WARM CLIMATES. WITH OVER ONE THIRD OF THE WORLD?S POPULATION LIVING WITHIN COASTLINE REGIONS, ASSESSING THE REGIONAL VULNERABILITY TO FUTURE-SEA LEVEL RISE IS OF SOCIETAL RELEVANCE AND REQUIRES AN UNDERSTANDING OF THE MAGNITUDE, RATE, AND DRIVERS OF PAST SEA LEVEL FLUCTUATIONS TO PUT CURRENT TRENDS IN CONTEXT. THIS WILL BE ACHIEVED BY DIRECT SEA LEVEL ESTIMATES PROVIDED BY COASTLINE MINERALOGICAL RECORDS, NAMELY PHREATIC OVERGROWTH ON SPELEOTHEMS WHICH FORM AT SEA LEVEL ON PARTLY SUBMERGED CAVES. PHREATIC OVERGROWTHS ON SPELEOTHEMS (POS) ARE PRECISE AND ACCURATE INDICATORS OF LOCAL SEA LEVEL CHANGES DURING CRITICAL PERIODS OF THE ICE AGE, INCLUDING THE MID-PLIOCENE WARM PERIOD, THE LAST INTERGLACIAL (LIG) AND THE LATE HOLOCENE. THIS PROJECT AIMS TO ANALYZE EXISTING POS ARCHIVES AND TO EXPAND THIS ARCHIVE TO INCLUDE SEVERAL PROMISING CAVE SITES. THE SCIENTIFIC GOALS ARE ENCAPSULATED IN SEVERAL CORE RESEARCH QUESTIONS: 1) WHAT IS THE TEMPORAL VARIABILITY OF GMSL FROM THE LIG TO THE LATE HOLOCENE AND WHAT IS THE PHASING BETWEEN PEAK GMSL AND THE INITIATION OF GLOBAL SCALE WARMING; 2) WHAT ARE THE RELATIVE CONTRIBUTIONS OF THE MAJOR POLAR ICE SHEETS TO THIS VARIABILITY AND IS THERE EVIDENCE OF HEMISPHERIC TELECONNECTIONS?; AND 3) TO WHAT EXTENT IS THE GMSL RISE AND ACCELERATION ANOMALOUS RELATIVE TO THE RECORD OF GMSL ACROSS THE LATE HOLOCENE? THE RESEARCHERS WILL DEVELOP A NEAR CONTINUOUS GMSL CURVE FOR CLIMATE WARM INTERVALS DERIVED FROM HIGH TEMPORALLY AND VERTICALLY WELL RESOLVED POS OBSERVATIONS LINKED TO STATE OF THE ART STATISTICAL AND GEOPHYSICAL MODELLING. THE OBSERVATIONS INCLUDE U-SERIES CHRONOLOGIES, HIGH-RESOLUTION STABLE ISOTOPE ANALYSES OF C AND O, AND MINERALOGICAL AND PETROGRAPHICAL ANALYSES TO CONSTRAIN TIMING AND DURATION OF PEAK SEA-LEVEL HIGH STANDS. ADDITIONALLY, NUMERICAL SIMULATIONS OF GLACIAL ISOSTATIC ADJUSTMENT (GIA) WILL BE USED TO CORRECT GMSL RECORD FROM THE IMPACT OF GIA. THE POTENTIAL BROADER IMPACTS (INCLUDE A GREATER KNOWLEDGE AND A BETTER UNDERSTANDING OF THE MAGNITUDE AND DRIVERS OF SEA LEVEL RISE. THIS HAS DIRECT IMPLICATION FOR DIFFERENT SCIENTIFIC COMMUNITIES INVESTIGATING KEY RELATIONSHIPS BETWEEN SEA LEVEL, ICE SHEETS, EARTH?S CLIMATE, AND PROPERTIES OF THE SOLID EARTH. FURTHER, THE NEWLY DEVELOPED KNOWLEDGE WILL BE OF A BROAD SOCIETAL RELEVANCE AS IT WILL POTENTIALLY BENEFIT COASTAL COMMUNITIES, STAKEHOLDERS, AND POLICY MAKERS. THIS PROJECT WILL PROVIDE EDUCATION AND RESEARCH TRAINING FOR GRADUATE AND UNDERGRADUATE STUDENTS AT THE UNIVERSITIES OF SOUTH FLORIDA, NEW MEXICO AND HARVARD WHO WILL BE INVOLVED IN MANY ASPECTS OF THE INTERDISCIPLINARY RESEARCH. ADDITIONALLY, THE RESULTS OF THIS RESEARCH WILL BE COMMUNICATED THROUGH TEACHING AT THE VARIOUS PROJECT INSTITUTIONS. THE RESEARCHERS WILL DISSEMINATE THE PROJECT FINDINGS WITH THE RELEVANT SCIENTIFIC COMMUNITIES VIA PEER-REVIEWED PUBLICATION AND PRESENTATION AT NATIONAL AND INTERNATIONAL CONFERENCES. THE RESEARCH FINDING WILL BE ALSO DISSEMINATED TO THE BROADER PUBLIC THROUGH PUBLIC PRESENTATIONS, POPULAR SCIENCE ARTICLES AND MEDIA COVERAGE. EDUCATIONAL MATERIAL WILL BE DEVELOPED FOR OUTREACH ACTIVITIES AT THE STUDIED CAVES, INCLUDING UNDERWATER IMAGES AND VIDEOS. THE DATA COLLECTED DURING THIS PROJECT WILL BE MADE PUBLICLY ACCESSIBLE. 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 | 7/3/25 | ||
| Not listed | $68.4k | 6/27/22 |