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USF researchers secure $1.5 million federal grant to improve water quality and reduce runoff into Tampa Bay and the Gulf of Mexico

Professor Christian Wells visiting Aaran's Pond | Photo by: Cassidy Delamarter

USF researchers secure $1.5 million federal grant to improve water quality and reduce runoff into Tampa Bay and the Gulf of Mexico

By: Cassidy Delamarter, University Communications and Marketing

An interdisciplinary team of researchers from the 91社区 is working to protect the environment by preventing pollution from seeping into a local stormwater pond that flows into Tampa Bay and the Gulf of Mexico. 

Through a three-year, $1.5 million grant from the U.S. Environmental Protection Agency, the team, which includes the University of 91社区, is installing a bio-infiltration system at Aaran鈥檚 Pond in Tampa鈥檚 University Area Community, where more than one in three residents live below the federal poverty level.

  • Aaran's Pond

  • Mattresses, chairs and many other illegally dumped objects are currently scattered across the property at Aaran's Pond. 

  • The nearby stormwater drains are filled with litter, such as cans, shoes and plastic.

According to principal investigator Professor Sarina Ergas in the USF Department of Civil and Environmental Engineering, when it rains, the water washes pollutants, such as fertilizer, oil, animal waste and rotting vegetation into gutters, which then feed into an existing stormwater pond. For that reason, urban runoff is a challenging problem to address in underserved communities, especially as stormwater ponds are often full of trash and difficult to clean due to restrictive fencing and steep slopes.

鈥淲e鈥檙e calling them inert zombies due to their lack of life,鈥 Ergas said. 鈥淚f you look at the difference between a stormwater pond in a wealthy neighborhood and one in a low-income neighborhood 鈥 it鈥檚 day and night in terms of how they benefit the community.鈥

If those pollutants are not removed from the ponds, they eventually cascade into the Hillsborough River and Tampa Bay, which feeds into the Gulf of Mexico. Nutrients, such as nitrogen, create harmful algal blooms, kill sea grass and reduce oxygen in the water.  

The team is partnering with to install four new bio-infiltration systems around the pond to improve the nutrient removal. The systems will retain and treat the runoff water with biochar, a charcoal-like material that will help reduce the nutrient pollution and increase microbial activity and plant growth. 

with biochar have taken place in the lab, making this the first time it鈥檚 used in a pond to improve water quality. 

The USF team is collaborating with , a University of 91社区 expert in stormwater ponds and their functions, to redesign the pond with the Hillsborough County Engineering and Operations Department. The plan is to plant bio-infiltration systems with shrubs and bushes along the steep slopes to provide additional filtration and make the pond more visually appealing.  

鈥淲e strongly believe the efforts undertaken by this project, along with our collaboration in its implementation, will result in positive, long-term benefits for our community,鈥 said Sarah Combs, chief executive officer of the , which focuses on the redevelopment and sustainability of at-risk areas surrounding the USF Tampa campus. 鈥淎s partners, we share in the goal of leveraging resources to improve human and environmental health and the social well-being of residents who live in the community.鈥

Christian Wells, professor in the Department of Anthropology, described the project as 鈥渁n opportunity to reimagine what stormwater ponds can do for communities.鈥

With help from graduate students, Wells will survey nearby residents to develop strategies that respond to the needs of the community. The information will be used to enhance recreational opportunities and improve the residents鈥 access to green space with new features, such as picnic tables, walking trails and a park. 

Graduate student Serena Echols looks forward to the community outreach. 鈥淭his aligns with my passion for placekeeping native populations of people and plants so their stories are not forgotten nor unconsidered when redevelopment occurs.鈥

鈥淟ooking toward the future, five years from now, I don鈥檛 see a polluted stormwater pond. Instead, I see a beautiful lake surrounded by trees and a bustling park filled with children and their families learning about the importance of university-community partnerships that create positive change.鈥 

鈥淟ooking toward the future, five years from now, I don鈥檛 see a polluted stormwater pond,鈥 Wells said. 鈥淚nstead, I see a beautiful lake surrounded by trees and a bustling park filled with children and their families learning about the importance of university-community partnerships that create positive change.鈥 

In the process, Wells said USF students and faculty are building capacity for environmental justice and equitable development that can create healthy, sustainable and economically vibrant communities. The team hopes this project will serve as a model for stormwater ponds in the future after the three-year project concludes.

This project is led by USF researchers Sarina Ergas, Mauricio Arias, Mahmood Nachabe, Qiong Zhang, James Mihelcic and Christian Wells, Mary Lusk from the University of 91社区, the University Area Community Development Corp., the Hillsborough County Engineering and Operations Department, Oldcastle Infrastructure and Sunshine Organics and Compost. 

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