Project Grant 2317939
- This $303,642 National Science Foundation project grant will fund research to quantify global carbon cycle feedbacks during the Paleocene-Eocene Thermal Maximum, a past period of global warming. Led by the University of California Santa Cruz, the research team will measure how volcanism contributed to atmospheric carbon dioxide rise during this event and constrain total carbon emissions through new ocean acidification records. They will also develop novel carbon cycle modeling to compare...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund collaborative research to develop an integrated framework for understanding the Late Devonian mass extinctions and associated changes in ocean chemistry and climate. The $231,421 award to Texas A&M University aims to: Establish a new geologic framework linking Late Devonian mass extinctions to the formation of epeiric black shale deposits across North and South America using...
- The National Science Foundation awarded a two-year Project Grant of $174,000 to researchers at the California Institute of Technology to develop a new technique for determining eruption timescales applied to Large Igneous Provinces and climatic events over Earth's history. The grant is part of the Geosciences program (CFDA 47.050) to strengthen understanding of the integrated Earth system through basic research in atmospheric, earth, and ocean sciences. Researchers will receive funding from...
- This Project Grant award of $172,793 was provided by the National Science Foundation (NSF) Division of Earth Sciences under the Geosciences program (CFDA 47.050) to support a collaborative research project. The goal is to study a geological core sample from the U.S. Midwest that provides a record of the dramatic climate transition from a glacial "icehouse" period to a severe "hothouse" period approximately 300 million years ago, culminating in the largest mass extinction...
- This Project Grant award from the National Science Foundation (NSF) Division of Atmospheric and Geospace Sciences, under the Geosciences program (CFDA 47.050), provides $493,422 over 3 years to The Trustees of Columbia University for a collaborative research project to diagnose global climatic responses to large volcanic eruptions. The key products or services to be delivered through this funding include: Providing proxy-based global estimates of spatiotemporal changes in temperature and...
- The National Science Foundation awarded a $104,601 Project Grant under its Geosciences program (CFDA 47.050) to The Research Foundation for the State University of New York (SUNY) at the Geneseo campus. The grant, effective November 1, 2024 through October 31, 2027, supports collaborative research to develop an integrated understanding of the Late Devonian Earth system, with a focus on ocean-climate-biosphere interactions during this critical period in Earth's history. Key objectives include: 1)...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $335,953 to Purdue University to conduct collaborative research comparing the geochemical and temporal links between volcanism and plutonism in an ancient subduction zone volcano in Washington. The key products of this 3-year project include: Reconstruction of the record of volcanic eruptions and subvolcanic intrusive activity by studying the geochemistry, geochronology, and petrology of...
- This National Science Foundation (NSF) Geosciences program (CFDA 47.050) Project Grant awards $362,421 to Utah State University for a five-year research initiative (April 1, 2026–March 31, 2031) examining the ancient carbon cycle through analysis of siliceous deep-sea sediments. The primary research deliverable is a new proxy methodology using germanium/silicon (Ge/Si) ratios in microfossils, particularly radiolarians, to constrain ancient silicate weathering rates. The project will generate...
- 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 $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....
COLLABORATIVE RESEARCH: NSFGEO/NERC: AFTER THE CATACLYSM: CRYPTIC DEGASSING AND DELAYED RECOVERY IN THE WAKE OF LARGE IGNEOUS PROVINCE VOLCANISM -LARGE IGNEOUS PROVINCE VOLCANISM IS ASSOCIATED WITH EXTRAORDINARY MANTLE MELTING AND VOLUMINOUS ERUPTIVE EPISODES, WHICH HAVE BEEN LINKED TO MAJOR MASS EXTINCTIONS THROUGH THE PAST HALF-BILLION YEARS OF EARTH?S HISTORY. SIGNIFICANT RESEARCH OVER THE LAST THREE DECADES HAS BROUGHT THE EXTREME NATURE OF THESE EVENTS INTO FOCUS. BUT CONTROLS ON THE NATURE AND TEMPO OF RECOVERY AFTER THESE CATASTROPHIC EVENTS REMAIN UNKNOWN, DESPITE IMPLICATIONS FOR POTENTIAL CLIMATE SYSTEM TIPPING POINTS. IN PARTICULAR, UNEXPECTEDLY PROTRACTED PERIODS OF WARM CLIMATE AND DELAYED ENVIRONMENTAL AND BIOLOGICAL RECOVERY FOLLOWING SOME LARGE IGNEOUS PROVINCES UNDERSCORE A FUNDAMENTAL LACK OF UNDERSTANDING OF THE GASES RELEASED DURING THE WANING STAGES OF THESE EVENTS AND/OR CONTROLS ON GLOBAL CLIMATE. THIS PROJECT WILL CARRY OUT A MULTI-DISCIPLINARY EFFORT COMBINING FIELD OBSERVATIONS; HIGH-RESOLUTION RECORDS OF VOLCANISM, CLIMATE, WEATHERING, AND LIFE; AND NUMERICAL MODELING TO UNDERSTAND CO-EVOLUTION OF SOLID AND SURFACE EARTH DURING PERTURBATION AND RECOVERY. THIS IS A PROJECT JOINTLY FUNDED BY THE NATIONAL SCIENCE FOUNDATION?S DIRECTORATE FOR GEOSCIENCES (NSF/GEO) AND THE NATIONAL ENVIRONMENT RESEARCH COUNCIL (NERC) OF THE UNITED KINGDOM (UK) VIA THE NSF/GEO-NERC LEAD AGENCY AGREEMENT. THIS AGREEMENT ALLOWS A SINGLE JOINT US/UK PROPOSAL TO BE SUBMITTED AND PEER-REVIEWED BY THE AGENCY WHOSE INVESTIGATOR HAS THE LARGEST PROPORTION OF THE BUDGET. UPON SUCCESSFUL JOINT DETERMINATION OF AN AWARD RECOMMENDATION, EACH AGENCY FUNDS THE PROPORTION OF THE BUDGET THAT SUPPORTS SCIENTISTS AT INSTITUTIONS IN THEIR RESPECTIVE COUNTRIES. THIS PROJECT IS CO-FUNDED BY THE DIRECTORATE FOR GEOSCIENCES TO SUPPORT AI/ML ADVANCEMENT IN THE GEOSCIENCES. THIS PROJECT ADDRESSES A FUNDAMENTAL UNANSWERED QUESTION: WHAT PROCESSES SHAPE CLIMATE AND BIOTIC RECOVERY FROM MAJOR LARGE IGNEOUS PROVINCE-DRIVEN CARBON CYCLE PERTURBATIONS? THE PROJECT AIMS TO TEST THE NEW OVERARCHING HYPOTHESIS THAT A LARGE-SCALE TRANSITION IN CRUSTAL RHEOLOGY SHUTS DOWN LARGE IGNEOUS PROVINCE VOLCANISM, BUT CONTINUED MANTLE MELTING DRIVES CRYPTIC CARBON DIOXIDE RELEASE AND DELAYS CLIMATE AND BIOTIC RECOVERY. IF CORRECT, THIS HYPOTHESIS IMPLIES THAT CRYPTIC DEGASSING?CARBON DIOXIDE RELEASE THROUGH THE CRUST DECOUPLED FROM ERUPTION RATES?IS A KEY, AND PREVIOUSLY UNACCOUNTED FOR, CONTROL ON THE CLIMATIC CONDITIONS AND TEMPO CHARACTERIZING RECOVERY. TO TEST THIS HYPOTHESIS, THIS PROJECT PURSUES FOUR KEY SCIENTIFIC OBJECTIVES: 1) DEVELOPMENT OF HIGH-RESOLUTION, MULTI-DISCIPLINARY RECORDS OF VOLCANISM AND WEATHERING, 2) COUPLING OF MODELS OF MANTLE GEODYNAMICS, MAGMA TRANSPORT, AND OUTGASSING, 3) ASSIMILATION OF RECORDS OF PAST CLIMATE AND WEATHERING INTO CLIMATE-BIOGEOCHEMICAL MODELING TO INVERT FOR OUTGASSING FLUXES AND PLACE TOP-DOWN CONSTRAINTS ON INTERIOR EVOLUTION, 4) INTEGRATION OF PALEOBIOLOGICAL DATABASES WITH RECORDS AND MODELING OF VOLCANISM, CLIMATE AND WEATHERING TO TEST FACTORS SHAPING WHICH TYPES OF ORGANISMS THRIVE BEYOND RECOVERY. THE PROJECT LEVERAGES THREE POWERFUL NATURAL LABORATORY LARGE IGNEOUS PROVINCES AND CLIMATE EVENTS, BUILDING FROM THE YOUNGEST AND BEST-RESOLVED, THE COLUMBIA RIVER BASALTS AND MID-MIOCENE CLIMATIC OPTIMUM; TO THE MORE VOLUMINOUS NORTH ATLANTIC IGNEOUS PROVINCE, PALEOCENE-EOCENE THERMAL MAXIMUM, AND EARLY EOCENE CLIMATIC OPTIMUM; AND FINALLY TO THE SIBERIAN TRAPS, CATASTROPHIC END-PERMIAN MASS EXTINCTION, AND EARLY TRIASSIC HOTHOUSE. THE PROJECT WILL CARRY OUT A SUSTAINED OUTREACH/INREACH EFFORT IN NORTHEASTERN OREGON, THE EPICENTER OF COLUMBIA RIVER BASALT VOLCANISM AND SITE OF PROJECT FIELD WORK. ACTIVITIES AIM TO HUMANIZE SCIENCE AND ENHANCE EDUCATION THROUGH ENGAGEMENT OF RURAL COMMUNITIES. PROJECT PIS AND STUDENTS WILL ENGAGE SCHOOL-AGE CHILDREN IN OREGON AND NEW JERSEY, AND GLOBAL LARGE IGNEOUS PROVINCE RESEARCHERS THROUGH: A DATA PORTAL AND SET OF VIRTUAL FIELD TRIPS; LARGE IGNEOUS PROVINCES FOR KIDS PROGRAMMING IN THE FORM OF VISITS TO WALLOWA COUNTY SCHOOLS AND ?WRITE A SCIENTIST? CORRESPONDENCES WITH PROJECT SCIENTISTS; AND A FIELD FORUM AT THE MID-POINT OF THE PROJECT THAT WILL WELCOME THE LARGE IGNEOUS PROVINCE COMMUNITY. 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 | $37.5k | 9/8/25 | ||
| Not listed | $162.1k | 9/8/23 |