Project Grant 2303300
- This $359,899 Project Grant was awarded on September 1, 2023 by the National Science Foundation (NSF) Division of Atmospheric and Geospace Sciences under the Geosciences (CFDA 47.050) program. The grant supports a collaborative research project between researchers at Vanderbilt University and other institutions to reconstruct climate variability in the southern Caribbean region using coral and speleothem (cave) paleoclimate proxy records. Key objectives include: Generating geochemical records of...
- This National Science Foundation (NSF) Geosciences program Project Grant, CFDA 47.050, provides $303,755 in funding to Georgia Tech Research Corporation to conduct collaborative research on reconstructing climate variability in the Southern Caribbean using coral and speleothem paleoclimate records. The 3-year project from September 2023 to August 2026 will generate high-resolution, precisely dated proxy records of temperature and hydroclimate from the arid Southern Caribbean region, which has...
- The National Science Foundation (NSF) Division of Earth Sciences awarded the Berkeley Geochronology Center (BGC), a non-profit organization, a $138,373 Project Grant under the Geosciences program (CFDA 47.050) to reconstruct southern Caribbean climate variability using coral and speleothem proxies. This 3-year grant, awarded on September 1, 2023, will support BGC's research to generate precisely dated records of local temperature and aridity from reef ecosystems and cave environments on the...
- This three-year project grant from the National Science Foundation Division of Atmospheric and Geospace Sciences totals $417,928 to fund research titled "COLLABORATIVE RESEARCH: P2C2--CORAL PROXY AND CLIMATE MODEL COMPARISON TO UNDERSTAND CLIMATE VARIABILITY IN THE INTRA-AMERICAS SEA REGION." The research will be performed by Louisiana State University under the NSF's Geosciences program (CFDA 47.050), which supports basic research in atmospheric, earth, and ocean sciences to...
- 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...
- 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...
- This $409,233 federal Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports collaborative research to connect seasonal to millennial timescales through a new 4D variational framework for assimilating paleoclimate proxy data. The key products and services to be delivered include: Developing and implementing a new data assimilation approach to integrate high-resolution (monthly to decadal) paleoclimate proxies, such as coral records and sediment...
- This $749,164 National Science Foundation Project Grant under the Geosciences program (CFDA 47.050) will fund research to reconstruct climate linkages across the tropical oceans over the last millennium. The University of California, Santa Barbara will collaborate with researchers to produce records of tropical sea surface temperature variability using geochemistry from long-lived corals in the Pacific, Atlantic, and Indian Oceans. Comparing multi-century coral data from these ocean basins...
- This $172,778 project grant from the National Science Foundation Division of Ocean Sciences, under the Geosciences program (CFDA 47.050), will fund research to test climate model predictions of hydrologic change in the tropical Atlantic during a past warm period. Specifically, the awardee, Utah State University, will geochemically analyze oxygen isotopes and magnesium-to-calcium ratios in planktonic foraminifera from deep-sea sediment cores at several sites, including Ocean Drilling Project Site...
- This Project Grant award from the National Science Foundation's Geosciences program (CFDA 47.050) provides $144,969 to Iowa State University of Science and Technology to produce a continuous, annually resolved, and millennial-length marine climate history of the Northeast Pacific Ocean region. The project will utilize paleoclimate proxies from bivalve mollusks, tree-ring chronologies, and tropical coral growth-increment records to reconstruct sea surface temperatures and climate variability in...
COLLABORATIVE RESEARCH: RECONSTRUCTIONS OF SOUTHERN CARIBBEAN CLIMATE VARIABILITY USING CONTEMPORANEOUS AND CO-LOCATED CORALS AND SPELEOTHEMS -HISTORICAL AND ANCIENT CLIMATE DATA FROM PALEOCLIMATE PROXY RECORDS CAN PROVIDE THE LONG-TERM CLIMATE CONTEXT NECESSARY TO SUPPORT COASTAL CARIBBEAN COMMUNITIES IN PREPARING FOR, ADAPTING TO, AND/OR MITIGATING THE NUMEROUS IMPACTS OF ANTHROPOGENIC CLIMATE CHANGE. THIS PROJECT WILL STUDY CORAL AND SPELEOTHEM CARBONATES FROM REEF ECOSYSTEMS AND CAVE ENVIRONMENTS ON THE ISLAND OF CURA?AO IN THE ARID SOUTHERN CARIBBEAN. GEOCHEMICAL ANALYSES AND DATING OF THESE CARBONATES WILL BE USED TO GENERATE RECORDS OF LOCAL TEMPERATURE AND ARIDITY THAT SPAN THE INTERVAL AS EARTH WARMED FROM THE LAST GLACIAL MAXIMUM (~20 THOUSAND YEARS AGO) TO PRESENT. COUPLING THESE GEOCHEMICAL ANALYSES WITH MONITORING OF MODERN REEF AND CAVE ENVIRONMENTS AND NUMERICAL MODELING WILL HELP DETERMINE THE EXTENT TO WHICH CARIBBEAN SEA CLIMATES HAVE VARIED IN THE PAST AND THE ROLE THAT THEY PLAY IN MEDIATING GLOBAL CLIMATE ON SEASONAL TO GLACIAL-INTERGLACIAL TIMESCALES. THE PROPOSED RESEARCH PRESENTS A UNIQUE OPPORTUNITY TO DEVELOP AND APPLY INTEGRATED APPROACHES TO UNDERSTAND COEVAL ARCHIVES OF TERRESTRIAL AND MARINE CLIMATE VARIABILITY AT A SINGLE, RELATIVELY UNDERSTUDIED LOCATION. BROADER IMPACTS OF THIS RESEARCH INCLUDE THE DISSEMINATION OF MAJOR FINDINGS THROUGH COMMUNITY-INFLUENCED GEOSCIENCE CURRICULA DEVELOPMENT AND TIERED MENTORSHIP OPPORTUNITIES FOR STUDENTS FROM THE K-12 THROUGH POSTDOCTORAL LEVELS. FOR EXAMPLE, THE RESEARCH WILL SUPPORT RESEARCH EXCHANGE OPPORTUNITIES FOR UNIVERSITY OF CURA?AO STUDENTS THROUGH A TARGETED CROSS-INSTITUTIONAL PARTNERSHIP WITH THE CARIBBEAN RESEARCH AND MANAGEMENT OF BIODIVERSITY (CARMABI) FOUNDATION, IN WHICH UNDERGRADUATE STUDENTS WILL WORK ON THE GEORGIA TECH AND VANDERBILT CAMPUSES WHERE THEY WILL BE INTEGRATED INTO A DIVERSE, MULTI-INSTITUTIONAL TEAM OF PIS, POSTDOCS, AND GRADUATE AND UNDERGRADUATE STUDENTS. ANTHROPOGENIC CLIMATE CHANGE IN THE CARIBBEAN SEA IS PROJECTED TO EXTEND SEASONAL WARM PERIODS, INCREASE THE FREQUENCY AND INTENSITY OF HEAVY RAINFALL EVENTS, AND INCREASE PERIODS OF PROLONGED DROUGHT. PALEOCLIMATE RECORDS FROM SPELEOTHEM AND CORAL CARBONATES FROM THE WET TROPICAL NORTHERN AND WESTERN CARIBBEAN HAVE PROVIDED CONTEXT FOR THESE PROJECTIONS BY ILLUSTRATING THE RELEVANT CLIMATE DRIVERS AND TELECONNECTIONS OVER THE PAST SEVERAL THOUSAND YEARS. HOWEVER, EQUALLY EXTENSIVE AND INFORMATIVE RECORDS ARE NOTABLY ABSENT FROM THE ARID SOUTHERN CARIBBEAN. THIS PROJECT WILL DEVELOP PRECISELY DATED, CO-LOCATED CORAL AND SPELEOTHEM PROXY TEMPERATURE AND HYDROCLIMATE RECORDS FROM CURA?AO, SYNTHESIZE THESE RECORDS WITH OTHER REGIONAL AND GLOBAL PROXIES, AND MAKE TRANSFORMATIVE PROGRESS IN THE UNDERSTANDING OF HOW CARBONATE MINERALS IN TERRESTRIAL AND MARINE ECOSYSTEMS RECORD PAST ENVIRONMENTAL CHANGE IN THIS REGION. TRACE ELEMENT-TO-CALCIUM RATIOS (I.E. SR/CA, MG/CA, BA/CA, ETC.) AND TRADITIONAL STABLE ISOTOPES (?18O, ?13C, ETC.) FROM ACTIVELY-PRECIPITATING STALAGMITES, DRIP WATERS, MODERN CORAL SKELETONS, AND SEAWATER WILL BE FURTHER INTEGRATED WITH PROXY SYSTEM MODELS AND INSTRUMENTAL DATA TO FINGERPRINT THE DOMINANT DRIVERS OF TERRESTRIAL AND MARINE CLIMATE ON SEASONAL TO DECADAL TIMESCALES. THIS UNDERSTANDING WILL BE APPLIED TO JOINTLY INTERPRET SPELEOTHEM AND CORAL PROXY RECORDS OF HYDROCLIMATE AND SST AND DEVELOP A COMPREHENSIVE PICTURE OF SEASONAL TO MILLENNIAL CLIMATE EVOLUTION SINCE THE LAST DEGLACIATION. THIS WORK INCLUDES THE DEVELOPMENT OF OPTIMAL U-TH DATING TECHNIQUES TO JOINTLY ANALYZE SPELEOTHEM AND CORAL CARBONATES, ACTIVE SEAWATER AND CAVE MONITORING, AND THE DEVELOPMENT AND APPLICATION OF NOVEL GEOCHEMICAL PROXIES, INCLUDING NEW METHODS FOR THE ANALYSIS OF THE CALCIUM ISOTOPE QUANTITATIVE PRECIPITATION PROXY IN SPELEOTHEMS VIA COLLISION CELL MULTI-COLLECTOR ICP-MS. THIS AWARD IS CO-FUNDED BY THE DIVISION OF EARTH SCIENCES AND DIVISION OF ATMOSPHERIC AND GEOSPACE SCIENCES BY WAY OF THE PALEO PERSPECTIVES ON PRESENT AND PROJECTED CLIMATE PROGRAM, AS WELL AS THE DIVISION OF EARTH SCIENCES FUNDS FOR SUPPORT OF PROJECTS THAT INCREASE RESEARCH CAPABILITIES, CAPACITY AND INFRASTRUCTURE AT A WIDE VARIETY OF INSTITUTION TYPES, AS OUTLINED IN THE GEO EMBRACE DCL. 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 | $67.1k | 7/30/25 | ||
| Not listed | $146.6k | 7/27/23 |