Project Grant 2329343
- This $307,095 Project Grant awarded by the National Science Foundation (NSF) under the STEM Education (formerly Education and Human Resources) program supports a 2-year research project at the University of Puerto Rico - Rio Piedras Campus. The project aims to investigate the ecophysiological responses of two key tree species in Caribbean tidal freshwater wetlands to the impacts of climate change, including warmer temperatures and increased salinity. Using field observations and greenhouse...
- This National Science Foundation (NSF) Integrative Activities (CFDA 47.083) project grant, awarded to the University of Puerto Rico - Rio Piedras Campus, provides $150,000.00 over five years from September 1, 2023 to August 31, 2028. The project conducts collaborative research to understand how the timing and success of reproduction in tropical plants varies due to within-year seasonality, multi-year climate cycles, and the effects of climate change. The research takes place at three tropical...
- This National Science Foundation Project Grant of $142,251 supports research examining the influence of critical zone processes on topography in Puerto Rico. Funded under the Integrative Activities program, the award will test hypotheses about how differences in bedrock geology and associated soil characteristics impact landslide occurrence, sediment grain sizes in rivers, and flood frequencies. Researchers from the University of Puerto Rico Mayagüez and Colorado State University will conduct...
- This National Science Foundation (NSF) STEM Education federal project grant, awarded under CFDA 47.076, will provide $307,116 in funding from June 2024 to May 2026 to the University of Puerto Rico - Rio Piedras Campus. The project, titled "CREST-PRP: Soil Arthropods as Biosensors of Environmental Change in Caribbean Terrestrial Coastal Ecosystems," will examine how climate change and human activities impact coastal ecosystems in Puerto Rico by studying soil arthropods as indicators...
- The National Science Foundation awarded a $2,010,368 Project Grant to Columbia University under the Biological Sciences federal grant program (CFDA 47.074) from July 1, 2022 to June 30, 2026. The grant funds collaborative research on the impacts of severe drought on tropical forest recovery after hurricanes. Researchers are conducting a large-scale rainfall manipulation experiment in a forest in Puerto Rico recovering from Hurricane Maria to characterize forest resilience to climate change. Nine...
- This Project Grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) provides $472,614 to Cornell University from July 2022 through June 2026 to study the impacts of severe drought on tropical forest post-disturbance recovery. Specifically, the researchers are conducting a rainfall manipulation experiment in a forest in Puerto Rico that is recovering from Hurricane Maria in 2017. The project aims to characterize and predict forest resilience to climate change by...
- This Project Grant award, provided by the National Science Foundation's Geosciences Program (CFDA 47.050), will support collaborative research by Occidental College to investigate tropical hydroclimate responses to periods of abrupt hydrological changes. The $313,622 award, effective from September 1, 2025 to August 31, 2028, will accomplish three primary tasks: Expand cave monitoring efforts in the Philippines to better constrain seasonal variations in karst hydrology. Contribute new...
- This Project Grant award of $345,075 from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program supports a collaborative research project between Florida Atlantic University and the University of Puerto Rico at Cayey. The "Rhizomatic Nexus" project examines how communities in the Caribbean region culturally adapt to environmental disruption and climate instability. The research aims to understand how people from diverse backgrounds...
- This $860,741 Project Grant award from the National Science Foundation's (NSF) Biological Sciences program (CFDA 47.074) will fund a collaborative research project titled "COLLABORATIVE RESEARCH: MRA: PANAM PEAT: UNDERSTANDING WATER AND CARBON CYCLING ACROSS THE PAN-AMERICAN TROPICAL PEATLAND BIOME" at Arizona State University. The overarching goal is to gain new insights into tropical peatland environments and better constrain regional and global carbon budgets. Key deliverables...
- This National Science Foundation (NSF) Project Grant award under the Geosciences Program (CFDA 47.050) provides $796,213 to The Regents of the University of California, doing business as the University of California, Berkeley, to assess and understand the sensitivity of tropical orographic precipitation to climate variations. The research aims to further develop the theory of tropical orographic precipitation and investigate its response to environmental factors like wind speed, temperature, and...
CREST-PRP: ECOHYDROLOGY IN THE ANTHROPOCENE: HYDROMETEOROLOGICAL CONTROLS OF PHYSICAL AND BIOGEOCHEMICAL PROCESSES IN CHRONICALLY STRESSED ECOSYSTEMS -THE CREST POSTDOCTORAL RESEARCH PROGRAM (CREST-PRP) PROVIDES TWO YEARS OF SUPPORT FOR RESEARCH, TRAINING, AND MENTORING EXPERIENCES FOR INDIVIDUAL EARLY CAREER SCIENTISTS AT ACTIVE CREST CENTERS. THE GOAL OF THE CREST-PRP AWARDS IS TO INCREASE THE STEM WORKFORCE PRESENCE OF INDIVIDUALS WHO ARE MEMBERS OF GROUPS UNDERREPRESENTED IN STEM FIELDS. CREST-PRP AWARDS RECOGNIZE INVESTIGATORS WITH SIGNIFICANT POTENTIAL AND SUPPORT THEIR RESEARCH EXPERIENCES TO BROADEN THEIR PERSPECTIVES, FACILITATE INTERDISCIPLINARY INTERACTIONS, AND PREPARE CREST-PRP SCHOLARS FOR POSITIONS OF LEADERSHIP WITHIN THE SCIENTIFIC COMMUNITY. THE RESEARCH PROJECT, CREST-PRP: ECOHYDROLOGY IN THE ANTHROPOCENE: HYDROMETEOROLOGICAL CONTROLS OF PHYSICAL AND BIOGEOCHEMICAL PROCESSES IN CHRONICALLY STRESSED ECOSYSTEMS, IS IN DIRECT ALIGNMENT WITH THE CREST-PRP GOALS. SUBMITTED BY A RESEARCHER AFFILIATED WITH THE CREST CENTER FOR INNOVATION, RESEARCH, AND EDUCATION IN ENVIRONMENTAL NANOTECHNOLOGY AT THE UNIVERSITY OF PUERTO RICO, THE PROJECT IS DESIGNED TO STUDY IMPACTS ON ECOSYSTEMS DUE TO THE COMBINED EFFECTS OF HUMAN-INDUCED CHANGES IN LAND USE AND CHANGING WEATHER AND CLIMATE PATTERNS. TWO SITES LOCATED IN THE PUERTO RICO ARCHIPELAGO WITH A COMMON SEMI-ARID CLIMATE BUT CONTRASTING LAND USE WILL BE THE SITES FOR THIS STUDY: MOSQUITO BAY, A WORLD-RENOWNED TOURISTIC BIOLUMINESCENT BAY WITH MANGROVE VEGETATION WHERE AGRICULTURE AND MILITARY OPERATIONS WERE CARRIED OUT DURING THE LAST THREE CENTURIES, AND FINCA ATABEY, A MULTI-CROPPING FARM WITH A PREVIOUS HISTORY OF SUGAR CANE PRODUCTION. COMBINING HYDROLOGY, ECOLOGY, PLANT ECOPHYSIOLOGY AND METEOROLOGICAL COMPONENTS, THE RESEARCH WILL AIM TO ANSWER COMPLEX QUESTIONS RELATED TO CHANGING CLIMATE CONDITIONS, ASSESSING ECOSYSTEMS? ADAPTABILITY TO PRESENT AND FUTURE STRESSORS. RESEARCH OUTCOMES INCLUDE A MODEL FRAMEWORK THAT CAN BE USED FOR STUDYING THE EFFECTS OF ANTHROPOGENIC AND CLIMATE STRESSORS AT OTHER SITES IN THE CARIBBEAN BASIN AND THE TROPICS. FINDINGS FROM THIS TYPE OF WORK WILL ALSO ASSIST COMMUNITIES IN DEVELOPING INFORMED PUBLIC POLICIES RELATED TO ENVIRONMENTAL CONSERVATION PRACTICES, BENEFITTING LOCAL ECONOMIES, AND SUPPORTING FOOD SOVEREIGNTY AS COMMUNITIES WORK TO RESTORE AND DEVELOP ENVIRONMENTALLY SUSTAINABLE ECOSYSTEMS. THE CARIBBEAN REGION IS VULNERABLE TO CLIMATE CHANGE-RELATED FACTORS AND ANTHROPIC DISTURBANCES WHICH ARE TESTING THE ENVIRONMENTAL SUSTAINABILITY OF ECOSYSTEMS. BIOPHYSICAL QUANTIFICATION OF THE SYSTEM IS CRUCIAL FOR A CONSERVATION APPROACH TO ADAPTIVE SUSTAINABILITY. THIS RESEARCH STUDY IS BASED ON AN INTEGRATED, TRANSDISCIPLINARY ECOHYDROLOGICAL-ECOPHYSIOLOGY RESEARCH FRAMEWORK WITHIN A TERRESTRIAL-AQUATIC-MARINE CONNECTIVITY-BASED MATRIX. THE PROJECT WILL SEEK TO ANSWER THE FOLLOWING OVERARCHING QUESTIONS: 1) HOW DOES SPATIOTEMPORAL VARIABILITY AND RECURRENT CLIMATE CHANGE IMPACT ECOPHYSIOLOGY PLANT RESPONSES AND THEIR TOLERANCE TO SHIFTING CLIMATIC CONDITIONS? 2) HOW DOES WEATHER AND CLIMATE VARIABILITY AFFECT WATER SOURCE DISTRIBUTION AND AVAILABILITY IN THE PUERTO RICAN SEMI-ARID REGIONS? 3) WHAT ARE THE PAST AND PRESENT SOURCES OF SOIL ORGANIC MATTER AND HOW SPATIOTEMPORAL VARIABILITY AFFECTS ORGANIC MATTER ORIGIN AND DISTRIBUTION? 4) WHAT ARE THE SPATIOTEMPORAL DYNAMICS OF ANTHROPOGENIC N INPUTS IN ECOSYSTEMS WITH HISTORY OF ANTHROPOGENIC USE? THE RESEARCH WILL ASSESS HYDROMETEOROLOGICAL EFFECTS ON THE BIOGEOCHEMICAL PROCESSES AND PLANT TOLERANCE IN TWO CONTRASTING ECOSYSTEMS LOCATED IN SEMI-ARID REGIONS IN THE PUERTO RICO ARCHIPELAGO, WHERE FRESHWATER AVAILABILITY IS THE MAIN STRESSOR. THE STUDY WILL USE AN ECOHYDROLOGICAL AND HYDROMETEOROLOGICAL APPROACH WHERE NATURAL ABUNDANCE OF ISOTOPES (?D, ?18O, ?15N AND ?13C) WILL BE INDICATORS OF ENVIRONMENTAL STRESSORS AND PLANT RESPONSE. STRUCTURAL (AREA, WEIGHT, SPECIFIC LEAF AREA) AND ECO-PHYSIOLOGICAL LEAF FUNCTIONAL TRAITS (STOMATAL CONDUCTANCE, OSMOLARITY, OSMOTIC POTENTIAL, ELEMENTS) WILL BE MEASURED TO ASSESS PLANT PHYSIOLOGICAL RESPONSES TO HYDRIC AND SALINITY STRESS. SOIL AND WATER WILL BE SAMPLED FOR BIOGEOCHEMICAL ANALYSES (ORGANIC CARBON, SOM LIGHT FRACTION AND HEAVY FRACTION, NATURAL ABUNDANCE OF ?15N AND ?13C FOR ORGANIC MATTER ORIGIN AND NITROGEN SOURCES, PH, SALINITY, CONDUCTIVITY, VOLUMETRIC WATER CONTENT, ELEMENTAL ANALYSES). A VARIETY OF WATER SOURCES WILL BE SAMPLED TO DETERMINE THE NATURAL ABUNDANCE OF ?D AND ?18O. PLANTS WILL BE SAMPLED FOR NATURAL ABUNDANCE OF ?D AND ?18O DETERMINATIONS. WATER USE EFFICIENCY (BASED ON ?13C AND ?18O) WILL BE DETERMINED BI-MONTHLY. AN R-BASED BAYESIAN MIXING MODEL WILL BE USED TO DETERMINE THE RELATIVE PROPORTIONS OF THE WATER SOURCES IN THE PLANTS. DIFFERENCES IN PLANT WATER SOURCE, WATER AVAILABILITY, AND PHYSICAL AND PHYSIOLOGICAL PLANT CHARACTERISTICS BETWEEN DRY AND WET WEATHER ARE TO BE EXPECTED TO REFLECT SEASONAL WEATHER VARIABILITY AS WELL AS CLIMATE CHANGE RELATED TO PULSING EVENTS IN THE CARIBBEAN REGION. 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 | 5/16/25 | ||
| Not listed | $338.3k | 8/1/23 |