The research comes as Kyle continues to grow rapidly. U.S. Census Bureau estimates show the city’s population jumped by 53% from 2020 to 2025, reaching 69,917 residents. Continued development can increase stormwater runoff, which can carry sediment, nutrients, bacteria, and other pollutants into local waterways.
Lake Kyle is a 12.5-acre recreational lake where residents can fish, walk trails, picnic, and spend time outdoors. Cleaner water can support recreation, aquatic habitat, and waterways beyond Kyle, as Plum Creek flows through Hays and Caldwell counties before joining the San Marcos River.
“This grant represents recognition and trust from the community that our research can contribute to addressing real-world environmental and water challenges,” Hwang said. “It provides an opportunity to translate our academic research into practical solutions that can directly benefit the community.”
Floating wetlands are buoyant platforms planted with wetland vegetation. Their roots dangle into the water, where they absorb nutrients such as nitrogen and phosphorus, and host microorganisms that break down pollutants and trap suspended particles.
Unlike traditional treatment methods that rely primarily on mechanical equipment or chemicals, floating wetlands harness plants, roots, and natural processes to clean the water. They can be anchored directly in lakes and ponds without requiring additional land or major infrastructure.
Hwang’s team is monitoring Lake Kyle to measure current water quality conditions and pinpoint potential pollution sources. The researchers have already tested a small-scale floating wetland in the lab and are now testing a larger version under conditions that better match Lake Kyle. The team expects to launch the floating wetlands in spring 2027, followed by continued monitoring to measure how well they work.