Project Grant 2523536
- This $335,410 Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund a collaborative research study led by the Woods Hole Oceanographic Institution (WHOI) to investigate the cycling and uptake of monomethylmercury (MMHg) in natural phytoplankton assemblages. The 3-year study will focus on the Western North Atlantic Ocean and its estuaries, a region with productive fisheries. The research aims to better understand the fundamental processes governing...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) grant, totaling $180,000, will support a 2-year postdoctoral fellowship project to study the influence of land cover on the isotopic signature of mercury in surface and subsurface soils across the conterminous United States. The project aims to quantify the relative importance of different mercury input pathways to soils by land cover type and the differences in isotopic signatures between surface and subsurface soils....
- The National Science Foundation awarded a $432,778 Project Grant to the University of Connecticut under the Geosciences program (CFDA 47.050) for research titled "Collaborative Research: The Effects of Terrestrial Organic Matter Inputs on Coastal Mercury Cycling, Methylmercury Production and Bioaccumulation." The three-year award beginning June 1, 2022 will support research examining how increased terrestrial organic matter delivery to coastal waters from climate change influences...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) Project Grant, awarded to Bigelow Laboratory for Ocean Sciences, provides $158,036 to study monomethylmercury (MMHg) cycling in natural phytoplankton assemblages in the western North Atlantic Ocean. The overarching goal is to improve understanding of the factors controlling MMHg uptake by phytoplankton, which is crucial for modeling MMHg transfer through the marine food web. Key research activities include year-round...
- The National Science Foundation awarded a $1 million Project Grant to the Trustees of the Colorado School of Mines to support understanding and disrupting key convergence nodes of illicit gold and mercury supply chains in Latin America and Africa. The grant was awarded on February 15, 2021 under the Engineering program (CFDA 47.041) with a completion date of January 31, 2026. Under the award, the Colorado School of Mines will work to analyze and develop interventions for illicit trade networks...
- This $401,056 National Science Foundation project grant under the Geosciences program (CFDA 47.050) will fund research examining the effects of terrestrial organic matter inputs on coastal mercury cycling, methylmercury production and bioaccumulation in the Gulf of Maine. Specifically, the grantee will study how climate change-driven increases in rainfall and river runoff influence the delivery of contaminants, organic matter and nutrients from land to coastal waters. Field surveys and shipboard...
- The National Science Foundation Division of Atmospheric and Geospace Sciences awarded a $235,435 Project Grant to the University of Nevada, Reno (UNR) under the Geosciences program (CFDA 47.050) to conduct a collaborative research project on the verification of atmospheric mercury redox rates. The key objectives are to: (1) conduct year-long measurements of elemental and divalent mercury, related oxidants, and other variables; (2) use a zero-dimensional model to identify mercury chemical...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) project grant award of $341,396 to the University of California San Diego's Scripps Institution of Oceanography aims to investigate the microbial mechanisms of dimethylmercury (DMHG) formation in marine environments. The project seeks to understand how DMHG, which can degrade and contribute to the supply of the neurotoxicant monomethylmercury (MMHG) in seafood, is produced by marine microbes, particularly during algal...
- The National Science Foundation (NSF) has awarded a $808,280 Project Grant under the Geosciences program (CFDA 47.050) to the University of Connecticut (UConn) to conduct collaborative research on studying monomethylmercury (MMHg) in natural phytoplankton assemblages in the western North Atlantic Ocean and its estuaries. The 3-year project aims to investigate the fundamental processes that govern MMHg uptake and cycling in the ocean, leveraging seasonal and geographical changes in biological...
- This three-year, $925,541 Project Grant from the National Science Foundation Division of Atmospheric and Geospace Sciences aims to develop a better understanding of ambient reactive mercury chemistry, reactions forming, and methods for measurement. The University of Nevada, Reno will collaborate with the University of California Santa Cruz to focus initial data collection on a subset of Clean Air Status and Trends Network and National Atmospheric Deposition Program Mercury Deposition Network...
DISES INVESTIGATING MERCURY BIOGEOCHEMICAL CYCLING VIA MIXED-METHODS IN COMPLEX ARTISANAL GOLD MINING LANDSCAPES AND IMPLICATIONS FOR COMMUNITY HEALTH -HUMAN ACTIVITIES LEAD TO INCREASED CONTAMINATION IN BOTH TERRESTRIAL AND AQUATIC ECOSYSTEMS. CONTAMINANTS CAN POSE HARM TO BOTH PEOPLE AND WILDLIFE, WITH SPECIFIC HARMS AND EXPOSURES DEPENDENT ON COMPLEX SOCIO-ECOLOGICAL FACTORS. THIS STUDY INVESTIGATES ENVIRONMENTAL RISK VIS-A-VIS MERCURY (HG) RELEASED FROM ARTISANAL AND SMALL-SCALE GOLD MINING (ASGM) SITES. MERCURY IS A POTENT NEUROTOXIN USED TO AMALGAMATE GOLD IN ASGM CONTEXTS GLOBALLY. ASGM HAS BECOME THE LEADING CAUSE OF MERCURY EMISSIONS WORLDWIDE AND IS PARTICULARLY HARMFUL WHEN BURNED OFF GOLD AND EMITTED AS GASEOUS ELEMENTAL MERCURY (GEM). HOWEVER, LITTLE IS KNOWN ABOUT THE FATE OF MERCURY FROM ASGM ACTIVITIES, INCLUDING IF AND HOW MERCURY ACCUMULATES IN CROPS, OR LOCAL KNOWLEDGE OF MERCURY DANGERS AND EXPOSURE ROUTES, ALL OF WHICH CONTRIBUTE TO ACTUAL AND PERCEIVED ENVIRONMENTAL RISK. THIS RESEARCH ASKS: (1) WHAT IS THE LOCAL AND REGIONAL FATE OF HG VAPORIZED FROM ASGM IN TERRESTRIAL ECOSYSTEMS? (2) TO WHAT EXTENT IS HG ACCUMULATING IN CROPS GROWN NEAR ASGM, AND HOW DO LANDSCAPE AND SOIL CHARACTERISTICS IMPACT CROP HG CONCENTRATIONS? (3) HOW DO LOCAL PEOPLE UNDERSTAND HG CONTAMINATION AND EXPOSURE, AND HOW DO SPATIALITIES OF LOCAL KNOWLEDGE ARTICULATE WITH ENVIRONMENTAL CONTAMINATION VARIABILITY? RESULTS FROM THIS RESEARCH WILL PROVIDE DIRECT BENEFITS RELATED TO THE GOALS OF THE RECENTLY RATIFIED INTERNATIONAL MINAMATA CONVENTION ON MERCURY. THE RESEARCH FOCUSES ON MERCURY IN GHANAIAN ASGM SYSTEMS WITH CONTRASTING GEOLOGY, MINING TYPE, CLIMATE, AND ECOSYSTEM. GHANA POSSESSES EXTENSIVE ASGM ACTIVITIES, WHICH INCREASED DRAMATICALLY IN THE LAST 15 YEARS. TO QUERY THE RESEARCH QUESTIONS, THE RESEARCHERS EMPLOY MIXED METHODS INCLUDING COMMUNITY MAPPING ACTIVITIES AND SEMI-STRUCTURED INTERVIEWS, BIOGEOCHEMICAL DATA COLLECTION (PASSIVE AIR SAMPLES, BULK DEPOSITION, THROUGHFALL, LITTERFALL, SOIL, AND CROP) AND MODELING (EMPIRICALLY CONSTRAINED MASS BUDGETS, LAGRANGIAN PLUME MODELS). AS FARMERS GROW CROPS DIRECTLY ADJACENT TO ASGM SITES, THIS PROJECT MODELS WHERE MERCURY TRAVELS, AND HOW IT ACCUMULATES IN AGRICULTURAL FIELDS AND SPECIFIC STAPLE CROPS GROWN IN BOTH COMMUNITIES (E.G. CASSAVA, COCOA YAM, PLANTAIN). THE DATA GENERATED FROM THIS PROPOSAL WILL IMPROVE HG MODELS, ALLOWING FOR BETTER UNDERSTANDING OF ENVIRONMENTAL RISKS AND CONTAMINATION DYNAMICS (I.E., HG USE, ATMOSPHERIC TRANSPORT, DEPOSITION, SOIL STORAGE, AND CROP ACCUMULATION) ASSOCIATED WITH LOCALIZED ASGM ACTIVITY. FURTHERMORE, THIS RESEARCH SYSTEMATICALLY INVESTIGATES WHAT SOIL AND LANDSCAPE FEATURES LEAD TO THE ACCUMULATION OF HG WITHIN CROPS TO BETTER UNDERSTAND POTENTIAL HUMAN EXPOSURE PATHWAYS TO HG BEYOND OCCUPATIONAL EXPOSURE AND CONSUMPTION OF CONTAMINATED FISH. AT THE END OF THE PROJECT, WORKSHOPS AND TRAINING WILL BE ORGANIZED TO INFORM HARM REDUCTION PRACTICES, INCLUDING AGRICULTURAL AND MINING PRACTICES TO REDUCE MERCURY ACCUMULATION IN CROPS, AND OTHER LOCAL EXPOSURES. THIS RESEARCH LINKS TOGETHER CONCEPTS FROM POLITICAL ECOLOGY AND LANDSCAPE ECOLOGY IN A DYNAMIC BI-DIRECTIONAL COUPLING OF SOCIO-ENVIRONMENTAL SYSTEMS THAT DETERMINES WHERE AND WHEN CONTAMINANTS DEPOSIT AND ACCUMULATE ON THE LANDSCAPE. THE CONCEPT OF ?ENVIRONMENTAL RISK LANDSCAPE? CAN BE FURTHER DEVELOPED TO EVALUATE ENVIRONMENTAL RISK IN OTHER SOCIO-ENVIRONMENTAL CONTEXTS, INCLUDING ENVIRONMENTAL INJUSTICE IN THE U.S. 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 | $1.4m | 4/1/25 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
SUBK00023266S | Cornell University | Project Grant 2523536 | $721.4k | 7/3/25 | |
SUBK00023267S | University Of Mines And Technology | Project Grant 2523536 | $207.5k | 5/6/25 |