Project Grant 2418066
- This $250,000 Project Grant award from the National Science Foundation's Office of International Science and Engineering (CFDA 47.079) will establish the groundwork for developing a Global Center to provide real-time water quality forecasts and decision support tools for lakes and reservoirs in the U.S. and Australia facing climate change impacts. The key products to be delivered under this 2-year award include: 1) an American-Australian community of water researchers, managers, industry, and...
- 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 Project Grant award from the National Science Foundation's Geosciences program (CFDA 47.050) for $111,215 will support research by the Regents of the University of Michigan to study cyanobacteria, nitrogen cycling, and export production in the Laurentian Great Lakes. The key objectives are to: 1) determine the relative contributions of cyanobacteria versus eukaryotic algae to primary production, 2) evaluate export production of cyanobacterial productivity, and 3) constrain historical...
- Environmental Protection Agency Region 5 awarded Central Michigan University a $2,034,969 Cooperative Agreement on September 30, 2025, to conduct basin-wide Great Lakes coastal wetland monitoring through 2030 under the Geographic Programs - Great Lakes Restoration Initiative (CFDA 66.469). Central Michigan University coordinates annual sampling (2026–2030) of fish, macroinvertebrates, birds, anurans, macrophytes, and water quality at designated wetland sites across the Great Lakes basin, with...
- The University of Vermont & State Agricultural College received a $499,122 Cooperative Agreement award from the U.S. Geological Survey's Assistance to State Water Resources Research Institutes program (CFDA 15.805) to conduct research on the impact of extreme hydrological events on cyanobacteria blooms in eutrophic lake ecosystems. The project aims to integrate field surveys and ecosystem modeling to comprehensively understand the mechanistic drivers of harmful algal blooms and their...
- This five-year, $1.58 million Project Grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research by the University of Wisconsin Oshkosh to study the social and environmental drivers of toxic algal blooms in freshwater systems. The university will examine historical, socio-cultural, policy, and ecological factors contributing to algal blooms through partnerships with community organizations. Researchers will develop a predictive model to forecast...
- 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...
- The University of Massachusetts was awarded a $475,420.73 cooperative agreement from the U.S. Geological Survey under the USGS Research and Data Collection program (CFDA 15.808) to conduct research on climate, storms, and the drivers of cyanobacteria blooms in Lake Superior. The goal of the three-year project, beginning April 1, 2021, is to support USGS efforts to examine the geological structure, water, mineral, and biological resources of the national domain by studying how climate and weather...
- 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 federal Project Grant award from the National Institute of Environmental Health Sciences (NIEHS), under the Environmental Health (CFDA 93.113) program, provides $459,353 to the University of Toledo to conduct research on the discovery and characterization of novel cyanotoxins produced during harmful cyanobacterial blooms. The key objectives are to: 1) optimize high-performance liquid chromatography (HPLC) with native fluorescence detection and mass spectrometry (MS/MS) for structural...
GREAT LAKES CENTER FOR FRESH WATERS AND HUMAN HEALTH -THE GREAT LAKES CENTER FOR FRESH WATERS AND HUMAN HEALTH IS A CONSORTIUM OF OVER 10 UNIVERSITIES AND AGENCIES WORKING IN THE GREAT LAKES REGION AND DIRECTED BY THE UNIVERSITY OF MICHIGAN AND UNIVERSITY OF TOLEDO. THE CENTER IS A FIVE YEAR EFFORT TO FURTHER OUR UNDERSTANDING OF THE CRITICAL RISK THAT CLIMATE CHANGE, AND RESULTING CYANOBACTERIAL HARMFUL ALGAL BLOOMS (CHABS), POSE TO FRESHWATER ECOSYSTEMS AND HUMAN HEALTH. INCREASED PRECIPITATION, MORE POWERFUL STORM EVENTS, AND WARMING WATERS ALL ENCOURAGE THE PROLIFERATION OF CHABS, WHICH NOW OCCUR IN ALL FIVE GREAT LAKES. THE CENTER IS ORGANIZED AROUND SEVERAL OVERARCHING THEMES. THE FIRST IS TO RESOLVE HOW CLIMATE CHANGE INFLUENCES THE OCCURRENCE OF CHABS AND THE TRANSPORT OF THE TOXINS THEY PRODUCE. THE SECOND IS TO UNDERSTAND TOXIN PRODUCTION AND HOW TOXINS IMPACT HEALTH, THROUGH BOTH AIRBORNE AND WATERBORNE EXPOSURE. THE THIRD IS TO DEVELOP NEW TECHNOLOGIES FOR ENHANCED MONITORING AND FORECASTING. IN COLLABORATION WITH AGENCY AND COMMUNITY PARTNERS THE TEAM WILL INTEGRATE FINDINGS INTO STATE-OF-THE-ART FORECASTS AND OTHER DATA PRODUCTS THAT REACH A WIDE STAKEHOLDER AUDIENCE. A COMMUNITY ENGAGEMENT CORE (CEC) WILL CONNECT CENTER SCIENCE TO RELEVANT COMMUNITIES, PROMOTING CO-DESIGN OF RESEARCH AND COMMUNICATION OF RESEARCH OUTCOMES TO STAKEHOLDERS. THE TEAM WILL LEVERAGE THE CENTER?S RESEARCH ENTERPRISE TO RECRUIT AND TRAIN A DIVERSE NEXT GENERATION OF SCIENTISTS IN THE FIELD OF OCEANS AND HUMAN HEALTH, INCLUDING SUPPORT FOR GRADUATE STUDENTS AND POSTDOCS. THE CENTER WILL ADVANCE INCLUSIVITY IN ALL FACETS OF RESEARCH AND ENGAGEMENT. TOGETHER, THESE RESEARCH, ENGAGEMENT, AND TRAINING ACTIVITIES WILL ADVANCE PROGRESS TOWARD THE STATED GOALS OF UNDERSTANDING AND TRANSLATING CLIMATE CHANGE EFFECTS ON CHAB EVENTS AND THEIR THREATS TO HUMAN HEALTH IN THE GREAT LAKES REGION. THE CENTER IS JOINTLY SUPPORTED BY NSF?S DIVISION OF OCEAN SCIENCES AND BY THE NATIONAL INSTITUTE FOR ENVIRONMENTAL HEALTH SCIENCES (NIEHS). THE CENTER?S RESEARCH IS ORGANIZED AROUND FOUR DISTINCT BUT HIGHLY INTEGRATED PROJECTS. PROJECT 1 SEEKS TO DETERMINE HOW A CHANGING CLIMATE INFLUENCES THE PROLIFERATION AND TOXIN PRODUCTION OF CHAB TAXA. THIS PROJECT WILL USE A MULTIPRONGED FIELD-LAB EXPERIMENTAL APPROACH TO TEST THE HYPOTHESIS THAT CLIMATE-DRIVEN EPISODIC EVENTS (E.G., STORMS) AFFECT SEVERAL CLASSES OF CYANOTOXINS (MICROCYSTINS, ANATOXINS, SAXITOXINS, AND ANABAENOPEPTINS), TASTE AND ODOR COMPOUNDS, AND PHYCOSPHERE INTERACTIONS. PROJECT 2 SEEKS TO REVEAL THE DIVERSITY, SPATIAL AND TEMPORAL DISTRIBUTION, AND BIOACTIVITY OF KNOWN AND UNDISCOVERED TOXINS AND OTHER SECONDARY METABOLITES. THIS PROJECT WILL USE A COMBINATION OF APPROACHES (INCLUDING METAGENOMICS, TRANSCRIPTOMICS, AND METABOLOMICS) TO CHARACTERIZE THE DIVERSITY OF EMERGING TOXINS AND BIOACTIVE COMPOUNDS CURRENTLY INVISIBLE TO METHODS USED IN ROUTINE WATER QUALITY ANALYSIS. PROJECT 3 WILL STUDY TOXIN RELEASE FROM CHAB CELLS, AEROSOLIZATION, AND TRANSPORT TO TEST THE HYPOTHESIS THAT CLIMATE CHANGE WILL INCREASE HUMAN EXPOSURE TO CHAB TOXINS THROUGH INGESTION AND INHALATION. A COMBINED MEASUREMENT AND MODELING APPROACH WILL BE USED TO EVALUATE THE IMPACT OF CLIMATE-CHANGE DRIVEN STRESSORS ON THE DISTRIBUTION OF DISSOLVED AND PARTICULATE TOXINS IN BOTH WATER BODIES AND AEROSOLS GENERATED FROM CHABS, ENABLING PREDICTIONS OF TOXIN EXPOSURE UNDER A CHANGING CLIMATE. PROJECT 4 WILL ASSESS THE EFFECTS OF AEROSOLIZED TOXINS ON HUMAN HEALTH WITH A SPECIAL FOCUS ON POPULATIONS THAT ARE VULNERABLE DUE TO PRE-EXISTING CONDITIONS, SUCH AS ASTHMA. PROJECT 4 WILL TEST THE OVERALL HYPOTHESIS THAT EXPOSURE TO AEROSOLIZED CYANOTOXINS INDUCES SIGNIFICANT INFLAMMATION IN THE AIRWAY EPITHELIUM AND THAT INDIVIDUALS WITH ASTHMA ARE PARTICULARLY SUSCEPTIBLE TO CHAB AEROSOLS. COMBINED WITH THE RESULTS OF THE OTHER THREE PROJECTS, THIS WORK WILL ENABLE ASSESSMENT OF HUMAN HEALTH RISKS OF CHAB TOXINS UNDER CURRENT CONDITIONS AND FUTURE CLIMATE SCENARIOS. IN SUMMARY, THE GREAT LAKES CENTER FOR FRESH WATERS AND HUMAN HEALTH AIMS TO UNDERSTAND AND COMMUNICATE THE RISKS OF CHABS IN THE FACE OF CLIMATE CHANGE THROUGH COLLABORATIVE RESEARCH, ENGAGEMENT EFFORTS, AND TRAINING INITIATIVES. 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 PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $769.2k | 8/28/25 | ||
| Not listed | $772.4k | 9/18/24 | ||
| Not listed | $783.8k | 4/11/24 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
SUBK00018450S | University Of Tennessee | Project Grant 2418066 | $0 | 3/2/26 | |
SUBK00018450S | University Of Tennessee | Project Grant 2418066 | $347.7k | 3/2/26 | |
SUBK00018453S | The Research Foundation For The State University Of New York | Project Grant 2418066 | $157.1k | 10/23/25 | |
SUBK00018452S | The Ohio State University | Project Grant 2418066 | $549.5k | 10/1/25 | |
SUBK00018451S | University Of North Carolina At Chapel Hill | Project Grant 2418066 | $270.9k | 9/22/25 |