Project Grant 2537068
- The National Science Foundation (NSF) Division of Ocean Sciences awarded a $346,823 Project Grant to the Regents of the University of Colorado (doing business as the University of Colorado) to conduct research under the NSF Geosciences program (CFDA 47.050). This research project aims to better understand how transformations to microplastics in coastal environments impact their regional-scale transport and fate. The study will use Lagrangian tracers and existing hydrodynamic modeling to quantify...
- This National Science Foundation (NSF) Geosciences program Project Grant award, with a total funding of $438,734, supports a collaborative research effort to study the turbulence in the stratified layer at the air-water interface caused by waves and wind. The research will be conducted through a combination of controlled laboratory experiments and state-of-the-art numerical simulations, with the goal of improving the representation of the ocean surface boundary layer in Earth-system models....
- This three-year, $192,385 Project Grant from the National Science Foundation's Division of Chemistry and Mathematical and Physical Sciences program will support research into the formation and properties of micro- and nano-plastics in water systems. Professors Julie Peller of Valparaiso University and Stephen Mezyk of California State University, Long Beach will lead their students in experiments simulating the environmental weathering and chemical changes of small plastic particles over time...
- This three-year, $473,907 Project Grant from the National Science Foundation Division of Ocean Sciences will support research into quantifying the exchange processes between the ocean surface boundary layer and interior at submesoscales. Submesoscale interactions between currents, waves, and turbulence can significantly impact biogeochemistry and climate through entrainment and subduction of tracers between layers. The awardee, Brown University, will conduct numerical simulations and develop new...
- This three-year, $303,793 project grant from the National Science Foundation Division of Chemistry supports research into the formation and environmental impacts of micro- and nano-plastics in water systems. Titled "Collaborative Research: CAS-MNP: Radical-Induced Weathering of Micro- and Nanoplastics in Water: Impacts on Suspensions, Agglomerations, and Contaminant Adsorptions," the award enables Professors Julie Peller of Valparaiso University and Stephen Mezyk of California State...
- This three-year, $459,000 Project Grant from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) will fund research into the origins and mitigation of secondary microplastics and nanoplastics pollution. The grantee, Columbia University, will combine experimental and theoretical tools to elucidate the degradation mechanisms of semicrystalline polymers when exposed to mechanical forces, water, air and UV light. This work aims to delineate the critical physics...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) Project Grant award in the amount of $353,715 will fund a collaborative research project to study the turbulence in the stratified layer at the air-water interface, as driven by waves and wind. The project will utilize a combination of controlled laboratory experiments and advanced numerical simulations (large-eddy simulations) to test the hypothesis that coupling between waves and wind-driven currents is necessary to...
- This Project Grant from the National Science Foundation Division of Polar Programs supports collaborative research on sea ice-ocean exchange of microplastics in the Arctic. The $111k award runs from March 2022 through February 2026. The researchers are developing new laboratory techniques and numerical models to understand the uptake and release of microplastics between Arctic sea ice and the ocean, including the effect of marine gels. Laboratory studies are measuring the optical properties of...
- This CAREER award from the National Science Foundation's Division of Ocean Sciences under the Geosciences program (CFDA 47.050) provides $913,292 in funding to the University of Washington from September 1, 2025 through August 31, 2030. The grant supports fundamental research investigating submesoscale density fronts—narrow oceanographic features measuring hundreds of meters to tens of kilometers in width—that significantly influence heat exchange, energy transfers, and biological processes in...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund research to investigate the interactions between internal waves and submesoscale currents in the ocean's bottom boundary layer. The total award is $418,382 over a period of 3 years, from June 1, 2024 to May 31, 2027. The research will combine theoretical concepts, analyses of existing measurements, and computer modeling to assess how these wave-current interactions affect mixing and...
CAREER: PARTICLE DYNAMICS AT THE FREE SURFACE: WAVES, TURBULENCE, AND MICROPLASTICS -PLASTIC POLLUTION IS A UBIQUITOUS ISSUE IMPACTING THE HEALTH OF MARINE ECOSYSTEMS WORLDWIDE. YET, CRITICAL KNOWLEDGE GAPS SURROUNDING THE FATE AND TRANSPORT OF PLASTIC ONCE IT ENTERS THE OCEAN IMPEDE REMEDIATION AND PREVENTION EFFORTS. PREDICTING TRANSPORT IS DIFFICULT FOR ANY PARTICLE IN THE OCEAN, BUT MICROPLASTICS PRESENT A PARTICULAR CHALLENGE BECAUSE THEIR SIZE AND DENSITY FALL OUTSIDE THE REGIMES OF TRADITIONALLY STUDIED ENVIRONMENTAL PARTICLES SUCH AS LOW-DENSITY BUBBLES AND HIGH-DENSITY SEDIMENT. THUS, THE GOAL OF THIS AWARD IS TO (1) OBSERVE PLASTIC PARTICLES IN REALISTIC OCEAN FLOWS RECREATED IN A CONTROLLED LABORATORY SETTING, AND (2) USE THE OBSERVATIONS TO BUILD A MODELLING FRAMEWORK THAT DESCRIBES THE VERTICAL MIXING AND TRANSPORT OF PLASTIC AT THE OCEAN SURFACE. BY EXAMINING FUNDAMENTAL INTERACTIONS BETWEEN PARTICLES AND OCEAN FLOWS, THIS AWARD WILL ENABLE MORE ACCURATE MODELLING OF BUOYANT PARTICLES AT THE OCEAN SURFACE. THE INVESTIGATOR WILL PARTNER WITH LOCAL BEACH-CLEANUP ORGANIZATIONS TO SHARE THIS WORK THROUGH OUTREACH EVENTS. THIS AWARD WILL ADDITIONALLY SUPPORT EDUCATIONAL ACTIVITIES FOR BOTH UNDERGRADUATE AND GRADUATE STUDENTS. THE OCEAN SURFACE BOUNDARY LAYER IS A MULTIPHASE FLOW FORCED BY THE OVERLYING WIND, WHICH GENERATES WAVES AND TURBULENCE. THESE PROCESSES AFFECT THE TRANSPORT AND MIXING OF MATERIALS RANGING FROM NUTRIENTS AND POLLUTANTS TO BUBBLES AND ORGANISMS. MICROPLASTICS ARE A NEW ENVIRONMENTAL PARTICLE THAT IS INCREASING IN CONCENTRATION AT THE OCEAN SURFACE; YET, PREDICTING THE BEHAVIOR OF MICROPLASTICS IS NON-TRIVIAL BECAUSE IT DEPENDS ON POORLY UNDERSTOOD INTERACTIONS AMONG WAVES, TURBULENCE, AND PARTICLE INERTIA IN THE OCEAN SURFACE BOUNDARY LAYER (WHERE MOST MICROPLASTICS RESIDE). TO HELP CLOSE THIS FOUNDATIONAL KNOWLEDGE GAP IN PARTICLE-LADEN FLOWS AND IMPROVE MICROPLASTICS TRANSPORT MODELING, THIS AWARD SEEKS TO DESCRIBE HOW THE RISE VELOCITY OF BUOYANT PARTICLES IS MODULATED BY THE COMBINED EFFECTS OF WAVES AND TURBULENCE, THE PROCESSES BY WHICH PARTICLES ARE ENTRAINED BENEATH THE SURFACE, AND THE CONTROLS ON PARTICLE DIFFUSIVITY IN WAVES AND TURBULENCE. THE RESEARCH WILL BE CONDUCTED IN A LABORATORY FACILITY THAT CAN GENERATE BOTH WIND AND WAVES. ADVANCED OPTICAL TECHNIQUES WILL BE USED TO TRACK PARTICLES BOTH AT THE SURFACE AND BENEATH IT UNDER A RANGE OF SURFACE CONDITIONS, INCLUDING BREAKING WAVES. THESE OBSERVATIONS WILL BE USED TO DEVELOP A WAVE PHASE-RESOLVED MODEL FOR THE TRANSPORT AND MIXING OF BUOYANT PARTICLES IN A FREE-SURFACE BOUNDARY LAYER, A MODEL WHICH WILL BE BROADLY APPLICABLE TO MICROPLASTICS, AND OTHER PARTICLES FOUND AT THE OCEAN SURFACE. 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 | $0 | 9/16/25 | ||
| Not listed | $242.3k | 8/13/25 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
SUB0000918S | University Of Washington | Project Grant 2537068 | $99.5k | 3/5/26 |