Related Experiment Video
Updated: Apr 28, 2026

Isolation of Native Soil Microorganisms with Potential for Breaking Down Biodegradable Plastic Mulch Films Used in Agriculture
Published on: May 10, 2013
In situ microplastics immobilization by bacterial cellulose-producing strain, Novacetimonas hansenii PA9
Yi-Sheng Tseng1, Marvi Verma2, Thanh-Binh Nguyen2
1Institute of Aquatic Science and Technology, National Kaohsiung University of Science and Technology, Kaohsiung City, 81157, Taiwan; Department of Aquaculture, National Kaohsiung University of Science and Technology, Kaohsiung City, 81157, Taiwan.
Abstract:
This study developed a bio-immobilized method for removing microplastics using biodegradable nano-cellulose through in situ bacterial cultivation. A nano-scale bacterial cellulose (BC) producing strain, Novacetimonas hansenii PA9, was screened for immobilizing microplastics after optimizing incubation conditions for BC production. An optimal 8.87 g/L BC yield was achieved by incubating N. hansenii PA9 in HS medium supplemented with 2% glucose at 30 °C for 7 days. The BC yield was improved by 170.02% through static scale-up cultivation in a 250 mL flask compared to a 20 mL glass tube. Adding 2 g/L to 10 g/L polyethylene (PE, average particle size 125 μm) resulted in 100% immobilization by BC after 48 h of microbial cultivation. Above 90% immobilized PE in the BC matrix was recovered through enzymatic hydrolysis using cellulase. N. hansenii PA was a potential strain to provide high purity, crystallinity, and tensile strength BC as an excellent biodegradable and eco-friendly material for microplastics removal.
Related Concept Videos
Microbial Bioremediation of Hydrocarbons
Bioplastics
Microbial Bioremediation of Plastics

