Project Grant 2246330
- IRES: Nature-Based Solutions Research to Support Water Security in Peri-Urban Areas Oklahoma State University received a $447,911 Project Grant award from the National Science Foundation's Office of International Science and Engineering (CFDA 47.079) effective October 1, 2025, through September 30, 2028. This three-year International Research Experiences for Students (IRES) award supports student-led research projects conducted in partnership with colleagues in South Africa to investigate...
- This Project Grant award from the National Science Foundation (NSF) Office of Integrative Activities under the NSF Geosciences program (CFDA 47.050) provides $145,352 to the University Enterprises, Inc. at Sacramento State University to develop a diverse hydrology workforce through an undergraduate hydrological research experience in a coastal California watershed. The project will engage sophomore and transfer students across three California State University campuses in a year-long learning...
- This Project Grant award from the National Science Foundation's Office of International Science and Engineering (CFDA 47.079) provides $449,842 to Arizona State University (ASU) to empower diverse cohorts of undergraduate and graduate students to conduct interdisciplinary, community-based water resources research in the Vilcanota Urubamba Basin in Peru. The key products and services to be delivered under this award include: Training and empowering three diverse student cohorts from Rutgers...
- This three-year, $400,000 project grant from the National Science Foundation Office of International Science and Engineering (NSF OISE) CFDA #47.079 program will support international collaborations to develop expertise in solving water-related challenges. The University of California, Davis will partner with IHE Delft in the Netherlands to provide immersive experiences for three cohorts of U.S. graduate students in critical analysis of differing international approaches to water science,...
- The National Science Foundation (NSF) awarded a $650,000 Project Grant under the NSF Technology, Innovation, and Partnerships program (CFDA 47.084) to the University of South Florida (USF) to develop innovative decentralized wastewater management technologies and strategies for U.S. Pacific islands. The project, titled "Towards Resilient, Equitable, Safe and Sustainable Water for Islands (RESSI-H2O)", assembles a multi-disciplinary team from USF, the University of Hawai'i at Mānoa,...
- This five-year, $457,099 National Science Foundation Engineering grant funds research and educational activities at San Diego State University addressing the environmental sustainability of wastewater infrastructure along the U.S. West Coast under conditions of sea level rise. Specifically, the project will analyze how sea level rise-induced groundwater intrusion may disrupt sewer systems, examine potential eco-toxicity impacts on marginalized communities, develop machine learning tools to...
- This $1.125 million project grant from the National Science Foundation Office of Integrative Activities, under the Geosciences program (CFDA 47.050), will fund research and development of water and sanitation resilience strategies for rural Alaskan communities facing environmental change. Over a three-year period from January 2023 through December 2026, the University of Massachusetts will work with community partners in Kongiganak and Mekoryuk to evaluate near-term and long-term water provision...
- This $598,518 project grant from the National Science Foundation's Office of International Science and Engineering will fund research exploring links between surface water contamination, sanitation, and disease risk in Costa Rica. Led by the University of Lynchburg, the three-year award running from June 2022 to May 2025 will support coordinated student research projects examining interactions between personal septic systems, municipal wastewater treatment, and pollution of surface and...
- This Project Grant award from the National Science Foundation Office of Integrative Activities provides $916,096 in funding to Alaska Pacific University from January 1, 2023 through December 31, 2026. The award supports research under the Geosciences program (CFDA 47.050), which aims to strengthen understanding of the integrated Earth system through basic research in atmospheric, earth, and ocean sciences. Specifically, the university will evaluate near-term and long-term water and sanitation...
- This $499,942 Project Grant award from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program supports research investigating the impacts of climate change on coastal communities in an urban environment. The key products and services to be delivered under this 3-year award (August 2024 - July 2027) include: Analysis of the alignment between water infrastructure, policies, and practices with emerging climate and environmental challenges such as...
IRES TRACK 1: US-GHANA STUDENT RESEARCH EXPERIENCE: UNDERSTANDING AND CONCEPTUALIZING THREATS AND SOLUTIONS OF ONSITE SANITATION AND SEA LEVEL RISE ON COASTAL GROUNDWATER RESOURCES -IN COASTAL AREAS, THE QUALITY OF GROUNDWATER SYSTEMS THAT SUPPORT MILLIONS OF PEOPLE IS INCREASINGLY THREATENED BY SALTWATER ENCROACHMENT AS SEA LEVEL RISES IN RESPONSE TO A WARMING CLIMATE. FOR COASTAL POPULATIONS IN THE DEVELOPING WORLD, WHERE THE USE OF ONSITE SANITATION IS PREVALENT, THE RISK OF GROUNDWATER CROSS-CONTAMINATION FROM SEPTIC SYSTEMS PRESENTS AN ADDED CHALLENGE. THROUGHOUT SUB-SAHARAN AFRICA (SSA), PERI-URBAN COMMUNITIES COMMONLY LACK ACCESS TO POTABLE WATER, COMPELLING HOUSEHOLDS TO RELY ON SHALLOW GROUNDWATER, SOURCED LARGELY FROM HAND-DUG WELLS. SIMILARLY, THESE COMMUNITIES ALSO LACK ACCESS TO IMPROVED SANITATION FACILITIES, RESULTING IN A PROLIFERATION OF ONSITE SYSTEMS, SUCH AS SEPTIC TANKS AND PIT LATRINES. ROUTINELY, GROUNDWATER WELLS END UP TOO CLOSE TO TOILET FACILITIES, HEIGHTENING THE RISK OF GROUNDWATER CROSS-CONTAMINATION. THE RISKS TO HUMAN HEALTH FROM THIS DUAL THREAT ARE NOT IN DOUBT. HOWEVER, CONTAMINANT MIGRATION PATHWAYS IN SUBSOIL MEDIA, AS WELL AS THE FACTORS THAT DRIVE CONTAMINATION, ARE OFTEN COMPLEX AND SITE-SPECIFIC. HENCE, A LITANY OF PHYSICAL, CHEMICAL, AND BIOLOGICAL PARAMETERS, AND PHYSIOGRAPHIC FACTORS, MUST BE WELL UNDERSTOOD TO CONCEPTUALIZE AND ADVANCE SUSTAINABLE SOLUTIONS. RELATEDLY, THE NEED FOR A TRAINED, GLOBALLY COMPETENT SCIENTISTS AND ENGINEERS WHO CAN ADDRESS CURRENT AND FUTURE WATER CHALLENGES HAS NEVER BEEN GREATER. THIS PROJECT WILL ADDRESS BOTH NEEDS BY; (1) UNDERTAKING HIGH-IMPACT WATER QUALITY RESEARCH TO BROADLY ASSESS IMPACTS OF SALTWATER INTRUSION AND ON-SITE SANITATION FACILITIES ON COASTAL GROUNDWATER QUALITY IN CAPE COAST, GHANA, A LOCATION THAT TYPIFIES THE DUAL CHALLENGE, AND 2) STRENGTHEN THE PROFESSIONAL PREPARATION OF US STUDENTS AS FUTURE, GLOBALLY ENGAGED WATER RESOURCES SCIENTISTS AND ENGINEERS. FACULTY AT SHIPPENSBURG UNIVERSITY (SU) AND UNIVERSITY OF SOUTH FLORIDA (USF) WILL WORK COLLABORATIVELY WITH THEIR COUNTERPARTS AT THE UNIVERSITY OF CAPE COAST (UCC), IN GHANA, TO BRING THREE COHORTS OF US STUDENTS (GRAD AND UNDERGRAD) TO GHANA AND ENGAGE THEM IN TRANSFORMATIONAL LEARNING EXPERIENCES VIA RESEARCH IN WATER QUALITY, SANITATION, AND CLIMATE CHANGE. THIS PROJECT WILL STRATEGICALLY RECRUIT UNDERREPRESENTED MINORITY GROUPS, INCLUDING FEMALES, AS AN INCENTIVE TO BROADEN THEIR PARTICIPATION IN INTERNATIONAL STEM RESEARCH AND ENHANCE THEIR STANDING IN STEM DISCIPLINES. THE PROJECT WILL ADDRESS THREE MAJOR THEMES: 1. EFFECTS OF ONSITE SANITATION ON GROUNDWATER QUALITY: TO EXPLORE THE VULNERABILITY OF SHALLOW GROUNDWATER TO ONSITE SANITATION, STUDENT PARTICIPANTS WILL CONDUCT BOTH FIELD EVALUATIONS AND LABORATORY ANALYSES OF GROUNDWATER SAMPLES FOR SPECIFIC CHEMICAL AND MICROBIAL CONTAMINANTS. THEY WILL EVALUATE EXISTING SANITATION INFRASTRUCTURE (E.G., SIZE OF SEPTIC SYSTEM & NUMBER OF USERS PER HOUSEHOLD), CALCULATE SEPTIC SYSTEM DENSITIES, COLLECT GPS COORDINATES OF WELLS AND SEPTIC SYSTEMS, PERFORM SOIL TESTS, AND ASSESS OTHER PERTINENT FACTORS TO HELP CHARACTERIZE AND ATTRIBUTE SOURCES OF VULNERABILITY. 2. EFFECTS OF SEA LEVEL RISE ON GROUNDWATER QUALITY: ALTHOUGH EVIDENCE OF SALTWATER INTRUSION INTO WELLS HAS BEEN REPORTED FOR SOME OF THE COMMUNITIES CLOSEST TO THE COASTLINE, IT IS NOT CLEAR HOW FAR INLAND THE SALTWATER HAS ENCROACHED. THE US STUDENTS WILL WORK COLLABORATIVELY WITH THEIR UCC PARTNERS, TO DETERMINE THE SPATIAL EXTENT OF SALTWATER INTRUSION IN THE AREA. THEY WILL CONDUCT IN-SITU MEASUREMENTS OF WELLS FOR SALINITY/CONDUCTIVITY/TDS, TEST WATER SAMPLES IN THE LABORATORY, AND PERFORM SPATIAL STATISTICAL ANALYSES ON THEIR RESULTS. 3. EDUCATION: AN IMPORTANT COMPONENT OF THIS PROJECT IS A PROPOSED ANNUAL WATER, SANITATION, AND HYGIENE (WASH) FAIR. THE DIFFERENT COHORTS OF US STUDENTS WILL COLLABORATE WITH THEIR LOCAL PARTNERS, MENTORS, AND LOCAL HIGH SCHOOL (HS) STUDENTS (AND THEIR TEACHERS) TO IMPLEMENT A WASH FAIR, WHICH WILL BECOME AN ANNUAL EVENT PROVIDING WASH ADVISORY SERVICES TO THE LOCAL COMMUNITIES BEYOND THE LIFE OF THIS PROJECT. THE PROJECT ALSO HAS ANOTHER OUTREACH COMPONENT WHERE THE US STUDENTS WILL ENGAGE WITH COMMUNITY MEMBERS FOR KNOWLEDGE SHARING. THEY WILL COLLABORATE WITH GHANAIAN HS TEACHERS TO DEVELOP A LOCAL PROGRAM FOR HS STUDENTS TO CONTINUE ROUTINE WELL WATER MONITORING INTO THE FUTURE. OVERALL, THE PROJECT WILL GIVE US STUDENTS FIRST-HAND EXPERIENCES WITH THE CRITICAL WATER QUALITY CONDITIONS IN A DEVELOPING COUNTRY CONTEXT, AND ENHANCE THEIR INTERDISCIPLINARY, PROBLEM-SOLVING, AND COLLABORATIVE SKILLS. THROUGH THEIR INTERACTIONS WITH LOCAL RESEARCHERS AND COMMUNITIES, THE US STUDENTS WILL FURTHER GAIN KNOWLEDGE OF THE SOCIAL-CULTURAL UNDERPINNINGS THAT COMPLICATE WATER QUALITY CHALLENGES IN THE DEVELOPING WORLD AND HOW TO PROPOSE SOLUTIONS FROM A GLOBAL CONTEXT. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $291.8k | 4/12/23 |