Project Grant 2340719
- The National Science Foundation (NSF) Division of Earth Sciences awarded a $383,646 Project Grant to Rutgers, The State University of New Jersey to conduct collaborative research on hydrogeophysical monitoring and modeling of soil salinization processes in coastal transition zones. The research aims to improve understanding of how subsurface heterogeneity regulates gradual and rapid saltwater intrusion driven by climate change and sea level rise. Key project activities include: Applying...
- The University of Delaware has been awarded a $127,882 Project Grant from the National Science Foundation (NSF) Office of Integrative Activities under the Integrative Activities program (CFDA 47.083). The grant will support collaborative research to improve understanding of the role of subsurface heterogeneity in regulating gradual and rapid (storm surge) salinization processes across marsh-upland transition zones. The project will apply electrical geophysical imaging technologies and...
- This $499,225 National Science Foundation award under the Geosciences program (CFDA 47.050) will fund a collaborative research project between Old Dominion University Research Foundation and the United States Department of Geological Survey to decipher drivers and variability in salt marsh lateral carbon export. Over three years, the researchers will investigate how elevation within the tidal frame influences dissolved inorganic carbon, total alkalinity, and dissolved organic carbon export...
- This Project Grant award of $923,715.00 from the National Science Foundation's Geosciences Program (CFDA 47.050) supports an interdisciplinary research project led by Texas A&M AgriLife Research to investigate the relationships between soil properties, water content, and cycling of carbon and nitrogen in soils from local to landscape scales. The project will involve field sampling, controlled laboratory experiments, and data analysis to better understand how soil structure, wetness, and...
- This $224,827 Project Grant awarded by the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) will support collaborative research at Virginia Polytechnic Institute & State University (Virginia Tech) to quantify how salinization impacts carbon processing across terrestrial-aquatic boundaries. The key objectives are to: 1) measure field relationships between soil and stream chemistry across a salinity gradient, 2) experimentally determine how soil salinization...
- This three-year project grant from the National Science Foundation (NSF) totaling $398,998 will support the development of a multi-modal integrated sensor system and through-the-soil wireless power transmission technique for continuous monitoring of soil variables. The Research Foundation for the State University of New York at Buffalo will receive the funding and collaborate with Tennessee Technological University and the University of Tennessee Knoxville on this research under the NSF's...
- This $480,691 federal Project Grant award, funded by the National Science Foundation's Geosciences Program (CFDA 47.050), supports fundamental research to investigate temporal and spatial changes in organic carbon sequestration in continental shelf sediments along a fluvially influenced margin. The principal investigators will revisit a shelf region off the Umpqua River in Oregon to map the area using geophysical techniques and collect new sediment cores. They will analyze the physical and...
- This $300,000 EAGER (Early-concept Grants for Exploratory Research) project, awarded by the National Science Foundation's (NSF) Geosciences Program (CFDA 47.050), aims to examine whether chemical reactions can alter the composition of land-derived organic carbon in a way that makes it appear similar to marine organic carbon. The research team from Old Dominion University Research Foundation will conduct experiments to monitor the reaction rates and compositional changes of land-derived organic...
- This three-year, $489,998 project grant from the National Science Foundation Division of Ocean Sciences aims to advance understanding of lateral carbon export from salt marshes. Under the Geosciences program (CFDA 47.050), which supports basic research in the atmospheric, earth, and ocean sciences, the Woods Hole Oceanographic Institution will investigate drivers of dissolved inorganic carbon, dissolved organic carbon, and total alkalinity fluxes across six New England marsh sites. Researchers...
- This $334,856 National Science Foundation (NSF) Project Grant award to Kent State University supports research to study iron cycling in sediments in the Gulf of Alaska. The research aims to better understand the source of iron from sediments to the ocean water column in this high nutrient, low chlorophyll region, where iron limits primary productivity. The project will use a paired porewater and sediment geochemical approach to investigate the quantity, speciation, and remobilization processes...
CAREER: ELECTRICAL SIGNALS IN SOILS ACROSS TERRESTRIAL AND AQUATIC INTERFACES -SOILS ALONG COASTAL INTERFACES WHERE THE LAND AND OCEAN MEET PLAY IMPORTANT ROLES IN CAPTURING, STORING, TRANSFORMING, AND RELEASING CARBON, NITROGEN, SEDIMENTS, WATER, AND ENERGY. THE TRANSFORMATION AND EXCHANGE OF MATERIALS AT THESE INTERFACES DEPEND ON EXTREME HYDROLOGICAL DISTURBANCES SUCH AS FLOODING, SEA LEVEL RISE, AND SEICHES. AS THE INTENSITY OF EXTREME HYDROLOGICAL EVENTS INCREASES WITH A WARMING CLIMATE, THERE IS A NEED TO KNOW THE RATE AT WHICH THESE PROCESSES TAKE PLACE ALONG COASTAL INTERFACES. HOWEVER, SCIENTISTS OFTEN RELY ON DIRECT DISCRETE MEASUREMENTS USING SOIL CORES AND SENSORS TO ESTIMATE THESE RATES, WHICH ARE INCAPABLE OF CAPTURING SPATIAL CHANGES, MAKING IT HARD TO USE MODELS TO PREDICT HOW THESE AREAS WILL BE AFFECTED BY CHANGES IN CLIMATE. HENCE, BETTER WAYS TO MEASURE THESE PROCESSES ARE NEEDED, AND MORE SCIENTISTS FROM DIFFERENT DISCIPLINES NEED TO WORK TOGETHER TO LEVERAGE THEIR DIFFERENT APPROACHES. THIS PROJECT WILL ADVANCE THE USE OF GEOPHYSICAL IMAGING TECHNIQUES, INCLUDING NATURAL ELECTRICAL POTENTIAL, INDUCED POLARIZATION, AND ELECTRICAL CONDUCTIVITY, TO BETTER UNDERSTAND CHANGES IN SOIL CONDITIONS ALONG COASTAL INTERFACES. THIS PROJECT WILL ALSO MENTOR ENVIRONMENTAL SCIENCE AND ECOLOGY STUDENTS ON HOW TO USE THESE GEOPHYSICAL METHODS TO EXPAND THE SPATIAL RESOLUTION OF ENVIRONMENTAL MEASUREMENTS. THE PROPOSED RESEARCH IN THIS PROJECT WILL [1] ASSESS THE RELATIONSHIP BETWEEN THE DISTRIBUTION OF NATURAL ELECTRIC POTENTIAL AND REDOX POTENTIAL AND HOW BOTH CHANGE WITH DIFFERENT SOIL MOISTURE AND ORGANIC MATTER CONTENTS, [2] INVESTIGATE HOW ORGANIC MATTER AND SOIL MOISTURE CONTENTS AFFECT THE MIGRATION AND STORAGE OF ELECTRIC CURRENT, AND [3] ASSESS HOW CHANGES IN PERMEABILITY AFFECT THE STORAGE OF ELECTRICAL CHARGES WITHIN SOILS ALONG COASTAL INTERFACES. THIS STUDY WILL INVOLVE USING GEOPHYSICAL DATA FROM LABORATORY EXPERIMENTS AND AUTOMATED LONG-TERM, REPEATED FIELD MEASUREMENTS ON SOILS AT BOTH THE CHESAPEAKE BAY AND LAKE ERIE REGIONS. THESE ROBUST DATASETS WILL BE COMBINED WITH DIRECT MEASUREMENTS OF SOIL REDOX POTENTIAL, MOISTURE CONTENT, MATRIC POTENTIAL, SALINITY, AND SOIL RESPIRATION TO STUDY HOW PROCESSES ALONG COASTAL SOILS CHANGE SPATIALLY. THE MULTIDISCIPLINARY APPROACH OF INTEGRATING GEOPHYSICS WITH ECOLOGICAL STUDIES DEVELOPED IN THIS RESEARCH WILL BE USED TO TRAIN UPPER-LEVEL UNDERGRADUATE AND GRADUATE STUDENTS. A CASE-STUDY APPROACH WILL ALSO BE USED TO INCLUDE GEOPHYSICS IN THE ENVIRONMENTAL SCIENCE AND ECOLOGY CURRICULUM AT THE UNIVERSITY OF TOLEDO AND MADE PUBLICLY AVAILABLE. THIS WOULD EQUIP FUTURE ENVIRONMENTAL SCIENTISTS TO USE AND THINK OF METHODS BEYOND GEOPHYSICS FOR SCALING LABORATORY AND DIRECT MEASUREMENTS TYPICALLY USED IN ENVIRONMENTAL INVESTIGATIONS. 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 | $253.1k | 7/31/25 | ||
| Not listed | $294.4k | 2/20/24 |