Project Grant 2607497
- This Project Grant award from the National Science Foundation (NSF) Division of Polar Programs (CFDA 47.078) will fund research to constrain biomass mobilization within and out of Lake Fryxell in Antarctica's McMurdo Dry Valleys during a period of unprecedented ice thinning. The $159,765 award, effective September 1, 2023 through August 31, 2024, will support the University of New Mexico's efforts to 1) understand how changing regional climate and seasonal loss of lake ice cover will affect...
- This $508,887 project grant from the National Science Foundation's Polar Programs (CFDA 47.078) will fund collaborative research to understand massive phytoplankton blooms over the Australian-Antarctic Ridge. The University of Washington will lead efforts to study how hydrothermal activity stimulates large phytoplankton blooms in this region of the Southern Ocean, and impacts the carbon cycle. Over a three-year period, researchers will conduct satellite-based observations, numerical modeling,...
- The National Science Foundation Division of Polar Programs awarded a $225,215 Project Grant to the University Corporation for Atmospheric Research to support research titled "COLLABORATIVE RESEARCH: INTEGRATING ANTARCTIC ENVIRONMENTAL AND BIOLOGICAL PREDICTABILITY TO OBTAIN OPTIMAL FORECASTS." The period of performance for this award is from September 1, 2021 through August 31, 2024. Under this award, the University Corporation for Atmospheric Research, operating through its National...
- Northwest Research Associates, Inc. was awarded a $211,208 project grant from the National Science Foundation Division of Polar Programs on August 15, 2021 to complete the project by July 31, 2024. The project, titled "COLLABORATIVE RESEARCH: CLOUD RADIATIVE IMPACT ON THE SURFACE ENERGY BUDGET OF THE ANTARCTIC PENINSULA," will be performed in Redmond, WA. Under the grant, Northwest Research Associates will conduct basic research on cloud radiative impacts in the Antarctic Peninsula...
- This $156,128 project grant from the National Science Foundation's (NSF) Polar Programs will fund research at Oregon State University to understand massive phytoplankton blooms over the Australian-Antarctic Ridge. Over three years, the university will conduct collaborative research with satellite and ship-based measurements to study a poorly understood phytoplankton bloom in the northwestern Ross Sea sector of the Southern Ocean. Researchers will implement numerical models and target shipboard...
- This $250,771 Project Grant was awarded by the National Science Foundation (NSF) Division of Polar Programs to Colorado State University to conduct collaborative research on the interaction between Antarctic low clouds and natural aerosols. The research aims to improve global climate model simulations over Antarctica and the Southern Ocean by better representing low-level cloud physics, which have significant impacts on ice surface melt and solar energy transmission. The 4-year project will...
- This Project Grant from the National Science Foundation's Polar Programs will support research to enhance understanding of cloud impacts on the surface energy budget of the Antarctic Peninsula. With total funding of $248,364, the award period is from February 1, 2022 through July 31, 2024. The University of California San Diego's Scripps Institution of Oceanography, as awardee, will use surface-based and satellite measurements to characterize clouds and humidity in the region. Researchers will...
- This Project Grant from the National Science Foundation Division of Polar Programs, under the Polar Programs federal grant program (CFDA 47.078), provides $210,495 to support research examining how microbial extremophiles in Antarctica respond to environmental changes in salinity. Led by researchers at the University of Tennessee, the grant will fund comparative analyses of gene expression patterns and secondary metabolite production in lab microcosm studies using microbial isolates previously...
- Federal Project Grant Award Summary The University of Colorado received a $1,011,669 Project Grant award from the National Science Foundation's Division of Polar Programs (CFDA 47.078) effective October 1, 2025, with completion scheduled for December 31, 2027. This five-year research initiative examines the role of temperature, light-absorbing particles, snow algae growth, and radiative forcing effects on snow and ice melt in the western Antarctic Peninsula—one of the planet's most rapidly...
- The University of California San Diego Scripps Institution of Oceanography received a $1,247,478 Project Grant award from the National Science Foundation's Division of Polar Programs under the Polar Programs (CFDA 47.078) grant program. This 4-year award funds a collaborative research project titled "Antarctic Low Cloud Interaction with Natural Aerosol (ALCINA)". The project will collect comprehensive field data on aerosol properties and cloud optical characteristics at Palmer...
COLLABORATIVE RESEARCH: RAPID: CATALYZING A JOINT US-NZ SPECTRAL REPOSITORY OF ANTARCTIC PHOTOAUTOTROPHS IN THE FACE OF ONGOING ENVIRONMENTAL SHIFTS -THIS PROJECT WILL GENERATE A COMPREHENSIVE DATABASE LINKING THE BIOGEOCHEMICAL PROPERTIES OF ANTARCTIC LAND-BASED ECOSYSTEMS IN THE MCMURDO DRY VALLEYS TO THEIR SPECTROSCOPIC PROPERTIES THAT CAN BE DETECTED BY DRONES, AIRCRAFT, AND SATELLITES. THE MULTI-TECHNIQUE AND MULTI-SCALE APPROACH OF THIS PROJECT WILL ENABLE SCALING FROM LOCAL OBSERVATIONS TO LANDSCAPE-LEVEL PATTERNS AND WILL CREATE A STANDARDIZED MONITORING FRAMEWORK COMPATIBLE WITH GLOBAL OBSERVATION NETWORKS SUCH AS THE NATIONAL ECOLOGICAL OBSERVATORY NETWORK (NEON), ENSURING INTEROPERABILITY AND LONG-TERM SCIENTIFIC VALUE. THE URGENCY OF THIS WORK IS DRIVEN BY ITS ALIGNMENT WITH THE CATALYST STRATEGIC NEW ZEALAND?UNITED STATES JOINT ANTARCTIC RESEARCH PROGRAMME, WHICH CREATES A UNIQUE AND TIME-CRITICAL OPPORTUNITY FOR COLLABORATION BETWEEN TWO NATIONS AT THE FOREFRONT OF ANTARCTIC RESEARCH. THIS OPPORTUNITY ADDRESSES THE IMMEDIATE NEED TO SYNCHRONIZE METHODOLOGIES, SHARE INFRASTRUCTURE, AND INITIATE JOINT DATA COLLECTION. THE CATALYST PROGRAM IS STRUCTURED TO ACCELERATE INTEGRATION OF U.S. AND NEW ZEALAND CAPABILITIES, REDUCE DUPLICATION, AND ESTABLISH A FOUNDATION FOR SUSTAINED MONITORING OF TERRESTRIAL ECOSYSTEMS. THIS PROJECT ALSO CONTRIBUTES TO THE TRAINING OF AN UNDERGRADUATE STUDENT IN THE DEVELOPMENT OF CUTTING-EDGE DRONE OPERATIONS AND SPECTROSCOPY SKILLS. COORDINATED SAMPLING/DATA COLLECTION, LAB ANALYSES, AND REMOTE SENSING INVESTIGATIONS WILL BE CONDUCTED TO GENERATE A COMPREHENSIVE DATABASE OF THE MORPHOLOGICAL, SPECTRAL, AND GENETIC CHARACTERISTICS OF ANTARCTIC PHOTOAUTOTROPHS. THESE EFFORTS WILL ENABLE BOTH SPATIAL AND TEMPORAL STUDIES OF PHOTOAUTOTROPHIC ACTIVITY BY BRIDGING PLOT-, LOCAL-, AND REGIONAL-SCALE REMOTE AND IN SITU OBSERVATIONS. NEWLY COLLECTED AND AGGREGATED DATA WILL BE STATISTICALLY ASSESSED TO MORE ACCURATELY PREDICT THE SUITABILITY AND DISTRIBUTION OF PHOTOAUTOTROPHIC HABITATS. THE PROJECT WILL FOCUS PRIMARILY WITHIN TAYLOR VALLEY AND THE PYRAMID TROUGH REGIONS OF THE MCMURDO DRY VALLEYS, WHICH HAVE LONG BEEN STUDIED FOR THEIR UNIQUE TERRESTRIAL AND AQUATIC ECOSYSTEMS AND OBSERVED CHANGE OVER TIME. THEY REPRESENT THE GREATEST EXPECTED RESPONSES BY VEGETATION TO CHANGING ENVIRONMENTAL CONDITIONS AND GLACIAL MELT ACTIVITY AMONG SITES EASILY ACCESSIBLE FROM ROSS ISLAND. THIS PROJECT WILL IDENTIFY ESSENTIAL SPECTRAL, ECOLOGICAL, AND LANDSCAPE VARIABLES THAT UNDERPIN THE DETECTION, SPATIAL EXPANSION, AND COMMUNITY SUCCESSION OF KEY PHOTOSYNTHETIC BIOTA IN THE GREATER MCMURDO DRY VALLEYS. THESE VARIABLES WILL HAVE BEEN COLLECTED TO APPROXIMATE THE TECHNICAL CAPABILITIES OF THE NEON AIRBORNE OBSERVATION PLATFORM (AOP) TO MAXIMIZE THE POTENTIAL SYNERGIES AND IMPACT OF THIS WORK. THIS PROJECT WILL PROVIDE AN IMPROVED UNDERSTANDING OF THE COMBINATIONS OF ENVIRONMENTAL AND SPECTRAL VARIABLES THAT CORRELATE WITH IMPORTANT ECOLOGICAL ATTRIBUTES SUCH AS DIVERSITY, EVENNESS, AND FUNCTIONAL TRAITS, LAYING A FOUNDATION FOR ENHANCED CAPABILITIES TO GENERATE SPATIALLY EXPLICIT AND CLIMATE-SCENARIO-BOUND PROJECTIONS OF VEGETATIONS THAT ARE ARGUABLY THE MOST USEFUL SENTINEL BIOTA FOR CHANGE IN ANTARCTIC TERRESTRIAL ECOSYSTEMS. 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 | $63.4k | 3/20/26 |