Thailand uses 3D-printed shelters to help young seagrass survive
Biodegradable seagrass pod design. Credit: Walailak University Shielding shoots on the seabed Bioplastic engineered to break down The bioplastic is produced through bacterial fermentation using
Biodegradable seagrass pod design. Credit: Walailak University Shielding shoots on the seabed Bioplastic engineered to break down The bioplastic is produced through bacterial fermentation using locally sourced microbial strains Cross-border institutional backing Testing before field deployment Leading seagrass expert, Jennifer Verduin, will provide expert guidance and mentorship throughout the project. Regional conservation efforts Marine scientists in Thailand are placing young seagrass shoots inside 3D-printed bioplastic shelters because strong waves and hungry sea creatures keep destroying new transplants before they can grow roots.The trial is taking place in the waters surrounding Koh Lidi, two small islands inside Mu Ko Phetra Park in Satun Province. Seagrass meadows in the area are vanishing under heavy environmental pressure. That loss has hit local fishing communities that rely on the meadows as a nursery for shrimp, crabs and fish. It has also devastated Thailand's declining dugong population, which depends on seagrass as its main food source. Unprecedented numbers of dugongs have washed up dead along the Andaman Coast in recent years.Past attempts to plant new seagrass have struggled. Young shoots are easily swept away by ocean currents, buried in moving seabed sediment, or eaten by marine life before their roots anchor into the seafloor.To solve this problem, researchers from Walailak University in Thailand and Murdoch University in Australia have designed a protective 3D-printed pod.Shaped like a small dome with an anchor, the unit is pushed directly into the seabed with a seagrass shoot tucked safely inside.The dome features open slots along its sides, allowing roots to spread outward into the sand while keeping crabs, fish and turtles away from the tender shoot.The pods are made from polyhydroxyalkanoate (PHA), a fully biodegradable plastic produced through bacterial fermentation using local microbial strains in Western Australia."The bioplastic is produced through bacterial fermentation using locally sourced microbial strains in Western Australia," said Dr Alexandra Gulizia from Murdoch University's Bioplastics Innovation Hub.
"By tailoring the material’s properties, we can create a pod that's durable enough to withstand marine conditions while remaining fully biodegradable."Once the seagrass establishes a strong root system, the PHA dome naturally breaks down without leaving plastic waste behind.The material can be produced at Murdoch University's Bioplastics Innovation Hub and at the Joint Laboratory of Waste and the Circular Economy at Naresuan University in Thailand.The collaborative project is led by Walailak University PhD candidates Patsakorn Jeenchuay and Leoniel Jude Giray. They are supervised by Professor Mullica Jaroensutasinee and Professor Krisanadej Jaroensutasinee, directors of the university's Centre of Excellence for Ecoinformatics.The Thai team is working alongside Dr Gulizia, Professor Andrew Macrae and Dr Samantha Vijjoen from Murdoch University's Bioplastics Innovation Hub. Financial support for the research comes jointly from the Research Council of Thailand and Murdoch's Bioplastics Innovation Hub, supported by the Commonwealth Scientific and Industrial Research Organisation (CSIRO).Professor Macrae, deputy director of the Bioplastics Innovation Hub, spent more than twenty years working on mangrove restoration in Brazil before joining this project."One of the biggest challenges in seagrass restoration is helping young plants survive long enough to establish roots," Professor Macrae said. "These biodegradable pods are designed to protect transplants from waves, sediment movement, and grazing animals during those critical early stages."Researchers from Murdoch University recently visited Koh Lidi to survey the underwater site and meet the local research team.The 3D-printed pods remain in the prototype phase.