Project Grant 2218460
- This Project Grant award from the National Science Foundation's (NSF) Geosciences program totaling $429,823 supports a collaborative research effort to investigate the Holocene biogeochemical evolution of the Great Lakes. The research team from Central Michigan University and Michigan State University will collect sediment cores from Lakes Superior, Huron, and Erie to analyze elemental and isotopic geochemical cycles over geologic time. This work will provide insights into past productivity,...
- This National Science Foundation (NSF) Geosciences program Project Grant award of $518,578 to Michigan State University (MSU), with a period of performance from March 1, 2024 to February 28, 2027, will investigate the Holocene biogeochemical evolution of the Great Lakes system. The project will collect sediment cores from Lakes Superior, Huron, and Erie to analyze geochemical proxies, including mercury isotopes, nutrient concentrations, and redox-sensitive elements. This research aims to...
- This Project Grant award of $397,338 from the National Science Foundation's Geosciences Program (CFDA 47.050) will support a research project titled "EMBRACE-EAR-GROWTH: Dating Ice Retreat and Advance Along the Lobate Southern Margin of the Laurentide Ice Sheet with Terrestrial Cosmogenic Nuclides" at Eastern Michigan University (EMU) from May 1, 2025 to April 30, 2029. The project aims to collect a large dataset of 80 new boulder ice-exposure ages to reconstruct the melting...
- This federal Project Grant award of $355,024 from the National Science Foundation's Geosciences Program (CFDA 47.050) will support a collaborative research effort to reconstruct the collapse of the Cordilleran Ice Sheet in western Canada since the last ice age. The project aims to determine the timing and rate of the ice sheet's disappearance over the past 10-20 thousand years through geologic dating of rock samples and computer modeling. By improving understanding of past ice sheet changes, the...
- This $400,757 Project Grant awarded by the National Science Foundation's Division of Polar Programs (CFDA 47.078 - Polar Programs) to the University of Wisconsin-Madison will fund a research project to determine the fundamental processes that control the geometry of subglacial cavities formed as glaciers slide over bedrock. The research will use a novel experimental device to systematically assess how factors like effective stress, sliding speed, and bedrock bump geometry affect cavity...
- The National Science Foundation Office of Integrative Activities awarded a $223,796 Project Grant to Michigan State University on January 1, 2022 under the Geosciences program (CFDA 47.050). The grant supports collaborative research to develop a holistic approach to monitoring abrupt environmental shifts in Canada's Kluane Lake region through December 31, 2023. Under the award, Michigan State University will work with sub-awardee University of Waterloo to demonstrate physical sampling...
- This three-year, $1.2 million Project Grant from the National Science Foundation Division of Earth Sciences aims to test the role of seasonality in abrupt climate change through reconstructing fluctuations of a late-glacial ice mass in eastern North America. Under the Geosciences program (CFDA 47.050), which supports basic research in atmospheric, earth, and ocean sciences, the University of Maine will collaborate with researchers to determine the signature of summer warming-driven ice retreat...
- This three-year, $109,644 project grant from the National Science Foundation Division of Earth Sciences aims to advance understanding of abrupt climate change through reconstructing fluctuations of a late-glacial ice mass in eastern North America. Funded under the Geosciences program (CFDA 47.050), the University of Arizona will lead efforts to determine the role of seasonality in abrupt climate shifts by mapping glacial landforms and dating the pattern and timing of recession for an ice cap...
- This Project Grant award of $4,170,230 from the National Science Foundation (NSF) under the Office of International Science and Engineering (OISE) program funds research at the University of Michigan to study the impacts of climate change on transboundary water resources in North America. The award supports the establishment of the Global Center for Climate Change Impacts on Transboundary Waters, which conducts research and develops solutions to address water crises resulting from intensifying...
- This collaborative research project, funded by the National Science Foundation's (NSF) Office of Integrative Activities under the Geosciences program (CFDA 47.050), was awarded $182,646 on September 1, 2025, with completion targeted for August 31, 2027. The CREVASSE (Coastal Resilience Through Effective Versatile Adaptation and Sediment Strategies for Sea-Level Rise Engagement) initiative, led by the California Institute of Technology, delivers management tools, techniques, and...
COLLABORATIVE RESEARCH: THE LAKE SUPERIOR BASIN: NATURAL GEOMORPHIC EXPERIMENT, DEEPWATER-TERMINATING ICE STREAM, AND ISOSTATICALLY ADJUSTING RIFT -GLACIERS, LAKES, RIVERS, AND THE SOLID EARTH INTERACT TO RESHAPE THE SURFACE ENVIRONMENT. THIS APPLIES TO THE LAKE SUPERIOR BASIN, A BASIN THAT FORMED AS A RIFT IN EARTH'S CRUST 1.1 BILLION YEARS AGO AND SINCE HAS HOSTED MOUNTAINS, LAKES, GLACIERS, RIVERS, AND HUMAN INHABITANTS. PAST AND PRESENT LAKE-LEVEL CHANGE IS RESPONDING TO ANCIENT ICE-SHEET RETREAT, WHOSE UNWEIGHTING OF EARTH'S SURFACE CAUSES OUR PLANET'S CRUST TO BEND AND UNDERLYING MANTLE TO FLOW. THIS PROJECT TAKES A MULTIDISPLINARY APPROACH TO BETTER UNDERSTAND THE SHAPING OF THIS CONTINENTAL LANDSCAPE. THE RESEARCH TEAM IS RECONSTRUCTING HOW THE GEOLOGICAL PAST OF THE LAKE SUPERIOR BASIN IMPACTS ONGOING UPLIFT AND TILTING OF THE LAND SURFACE AS WELL AS SURFACE PROCESSES INCLUDING RIVER EROSION. LAKE-LEVEL FALL INCITES RIVERS TO SLICE DOWNWARDS THROUGH SEDIMENT AND ROCK, WHILE LAKE-LEVEL RISE DROWNS THE RIVER MOUTHS, CAUSING DEPOSITION OF GRAVEL AND SAND. MAPPING THE THREE-DIMENSIONAL PATTERNS OF THE RIVERS ENCOMPASSING THE LAKE SUPERIOR BASIN, AS THEY CUT THROUGH MATERIALS RANGING FROM SOFT MUD TO HARD ROCK, IS CRITICAL FOR UNDERSTANDING EROSIONAL PROCESSES. ADDITIONALLY, DATING LANDFORMS ASSOCIATED WITH PAST WATER-TERMINATING GLACIERS AND SIMULATING THEIR DYNAMICS USING COMPUTER MODELS WILL IMPROVE SCIENTISTS' ABILITY TO PREDICT THE FATE OF EARTH?S EXISTING ICE SHEETS. INDIGENOUS OJIBWE PARTNERS WILL CONSULT IN THE RESEARCH AND SHARE KNOWLEDGE OF BOTH LAND AND LAKE. THROUGH A PARTNERSHIP WITH THE SUPERIOR HIKING TRAIL ASSOCIATION, THE PROJECT TEAM WILL ENHANCE OUTDOOR RECREATION BY PROVIDING PUBLIC SCIENTIFIC KNOWLEDGE OF THE REGION AND ITS NATURAL HISTORY. FINALLY, THE RESEARCH TEAM IS SELF-EXAMINING ITS APPROACHES AND PRACTICES TO LEARN HOW TO BETTER INCLUDE AND SUPPORT UPCOMING GENERATIONS OF EARTH SCIENTISTS. THROUGH THE NEXUS OF THE LAKE SUPERIOR BASIN, THIS RESEARCH IS ANSWERING FUNDAMENTAL QUESTIONS ABOUT RIVER INCISION, (DE)GLACIAL LANDSCAPE AND LAKE-SCAPE EVOLUTION, WATER-TERMINATING GLACIER INSTABILITIES, AND GLACIAL ISOSTATIC ADJUSTMENT. LAKE SUPERIOR PROVIDES A UNIQUELY SUITED TESTBED TO ADVANCE EACH OF THESE KNOWLEDGE AREAS AND TO UNDERSTAND THEIR FEEDBACKS. SYNCHRONOUS BASE-LEVEL FALL ON LAKE SUPERIOR TRIGGERED RIVER INCISION AND KNICKPOINT PROPAGATION ACROSS MYRIAD LITHOLOGIES, PROVIDING REPLICATE NATURAL EXPERIMENTS IN EROSIONAL MECHANICS. THE PROJECT TEAM IS APPLYING TRADITIONAL GLACIAL GEOLOGICAL APPROACHES TOGETHER WITH STATE-OF-THE-ART TOPOGRAPHIC ANALYSES TO MAP LAKE-LEVEL EVOLUTION AND THE EXTENT OF GLACIAL AND FLUVIAL PROCESS DOMAINS. PALEOLAKE SHORELINES AND SPILLWAYS WERE MODIFIED BY, AND RECORD, GLACIAL ISOSTATIC ADJUSTMENT, WHICH CAN BE FURTHER CONSTRAINED VIA DETAILED SEISMIC IMAGING OF THREE-DIMENSIONAL SOLID-EARTH STRUCTURE AND EXTENSIVE MODERN GLOBAL NAVIGATION SATELLITE SYSTEM DATA. THESE DATA ARE BEING USED TO PROBE DEEPLY INTO THE MECHANISMS AND FEEDBACKS SURROUNDING THE MARINE ICE SHEET INSTABILITY, CRITICAL FOR UNDERSTANDING THE RESPONSE AND SENSITIVITY OF MARINE-TERMINATING OUTLET GLACIERS AND ICE SHEETS. THE RESEARCH TEAM IS PARTNERING WITH LOCAL NONPROFIT AND GOVERNMENT ORGANIZATIONS TO SHARE THE NARRATIVE OF THE LAKE SUPERIOR REGION, INTEGRATE INDIGENOUS KNOWLEDGE, AND BUILD AN INCLUSIVE FIELD-RESEARCH PROGRAM WHOSE GOAL IS TO INVITE A DIVERSIFYING NEXT GENERATION INTO THE GEOSCIENCES 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 | $217.2k | 8/9/22 |