This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: A world-first trial of floating wetland pods in wastewater lagoons shows they cut greenhouse gas emissions by more than a quarter, highlighting their potential as a nature-based solution for decarbonizing the water sector. Wastewater treatment causes around 1.6% of human-induced greenhouse gas emissions globally, but scalable mitigation options remain scarce.
A major two-year trial by RMIT University, Westernport Water and Australia's national science agency, CSIRO, measured the impact of floating platforms of native plants on greenhouse gas emissions from a wastewater lagoon on Phillip Island in southeastern Australia. The results, published in the Journal of Environmental Management, reveal dramatic reductions, with CO₂ emissions dropping by up to 36%, methane by up to 66% and nitrogen by 18% in the lagoon with a floating wetland installed, compared with the control lagoon with no wetland platform. The study's first author, RMIT University Dr.
Lukas Schuster, said floating wetlands are already used to reduce nutrient loads in some wastewater systems, but their potential to reduce greenhouse gas emissions at full operational scale was unknown until now. "This is the first time we've had evidence on this scale that supporting microbial communities in the root systems of wetland plants can reduce wastewater emissions without relying on high-tech solutions," Schuster said. "It's a strong demonstration of how nature-based approaches can transform wastewater treatment into part of the climate solution." Wastewater treatment plants contribute millions of tonnes of greenhouse gas emissions annually due to the high nutrient concentrations in wastewater, which create ideal conditions for the microbes that produce these gases.
This poses a challenge to the water sector's efforts to achieve emissions reductions. In the floating wetland trial, a platform the size of one-and-a-half tennis courts (330 m2, or 3,600 square feet) was filled with native reeds and sedges whose roots dangled in the water. Maintenance, including weed control and bird deterrents, helped the plants establish and thrive.
"These plant roots in the water create ideal habitats for microbes that consume nutrients and pollutants and potentially also greenhouse gases, with emission reductions becoming apparent only four months into the trial," Schuster said. Emissions from the wastewater ponds with and without the floating wetland were continuously monitored over two years using "Pondi", a solar-powered sensor developed by RMIT and partners including Leading Edge Engineering Solutions, Deakin University and The University of Queensland. Westernport Water Managing Director Dona Tantirimudalige said the findings are encouraging for water corporations because floating wetlands can be retrofitted into existing lagoons, offering emissions reductions without major changes to existing infrastructure.
"The outcomes provide a strong foundation for further work to test performance across additional lagoon types and operating conditions," Tantirimudalige said. "Building this evidence base is important for utilities as we continue to develop credible and cost-effective emissions abatement pathways." This technology is currently being developed and applied by CSIRO through its nature-based solutions program. CSIRO Research Scientist Dr.
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