Turkey Tail, Yun Zhi · 2024 · Journal Article
High relevanceEnzymatic degradation of tetracycline by Trametes versicolor laccase in a fluidized bed reactor.
Trametes versicolor
Key points
- Laccase from Trametes Versicolor was successfully immobilized on gelatin beads by a crosslinking reaction with glutaraldehyde
- Immobilized laccases showed better stability towards pH and temperature than free laccases
- Moreover, the immobilized laccases retained a good relative activity of 85 % after 20 days of storage at 4 °C. The degradation of tetracycline (TC) was studied with immobilized enzymes in both batch and fluidized bed reactors (FBR)
- The average degradation rate (1.59 mg h -1 U enzymes -1 ) estimated over 24 h in the FBR was almost 5 times higher than in the stirred tank reactor
- Study of the stability of the active beads under reaction conditions, shows that 45 % of the TC was degraded after 5 cycles of 24 h each
- The toxicity of the TC solution before and after treatment was also investigated with microtox assays
Metadata-grounded summary
Citation abstract
Laccase from Trametes Versicolor was successfully immobilized on gelatin beads by a crosslinking reaction with glutaraldehyde. Immobilized laccases showed better stability towards pH and temperature than free laccases. Moreover, the immobilized laccases retained a good relative activity of 85 % after 20 days of storage at 4 °C. The degradation of tetracycline (TC) was studied with immobilized enzymes in both batch and fluidized bed reactors (FBR). The average degradation rate (1.59 mg h -1 U enzymes -1 ) estimated over 24 h in the FBR was almost 5 times higher than in the stirred tank reactor. Maximum degradation rate achieved was 72 ± 1 % with a circulation flow rate of 80 mL min -1 and addition of air at a flowrate of 15 mL min -1. Study of the stability of the active beads under reaction conditions, shows that 45 % of the TC was degraded after 5 cycles of 24 h each. The toxicity of the TC solution before and after treatment was also investigated with microtox assays.
Citation
Harguindeguy M, Pochat-Bohatier C, Sanchez-Marcano J, Belleville MP (2024). Enzymatic degradation of tetracycline by Trametes versicolor laccase in a fluidized bed reactor. The Science of the total environment https://doi.org/10.1016/j.scitotenv.2023.168152 PMID: 37898205
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