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Turkey Tail, Yun Zhi · 2024 · Research Support, Non U.S. Gov'T

High relevance

Improved productivity and dye removal performance of Trametes versicolor pellets using rice husk as a co-substrate.

Trametes versicolor

OncologyImmune supportEnergy & fatigue
SpeciesTurkey Tail, Yun Zhi
JournalJournal of microbiological methods
Year2024

Key points

  • Pellet production represents a critical step for several processes requiring fungal biomass, nevertheless, its optimization is seldom reported
  • The use of finely ground rice husk as a microcarrier and co-substrate permitted a marked increase (≈ 2.7×) in the productivity of fungal pellet production using Trametes versicolor compared to traditional production methods
  • The pellets show similar structure and smaller size compared to typical sole-mycelium pellets, as well as comparable laccase activity
  • The efficiency of the pellets for biodegradation was confirmed by the removal of the crystal violet dye, achieving significantly faster decolorization rates compared to the traditionally produced pellets
  • The use of these pellets during the continuous treatment of the dye in a stirred tank bioreactor resulted in 97% decolorization operating at a hydraulic residence time of 4.5 d

Metadata-grounded summary

Citation abstract

Pellet production represents a critical step for several processes requiring fungal biomass, nevertheless, its optimization is seldom reported. The use of finely ground rice husk as a microcarrier and co-substrate permitted a marked increase (≈ 2.7×) in the productivity of fungal pellet production using Trametes versicolor compared to traditional production methods. The pellets show similar structure and smaller size compared to typical sole-mycelium pellets, as well as comparable laccase activity. The efficiency of the pellets for biodegradation was confirmed by the removal of the crystal violet dye, achieving significantly faster decolorization rates compared to the traditionally produced pellets. The use of these pellets during the continuous treatment of the dye in a stirred tank bioreactor resulted in 97% decolorization operating at a hydraulic residence time of 4.5 d.

Citation

Gutiérrez-Quirós JA, Coronado-Marchena A, Villegas-Solano D, Rodríguez-Saravia S, Castro-Gutiérrez V, Rodríguez-Rodríguez CE (2024). Improved productivity and dye removal performance of Trametes versicolor pellets using rice husk as a co-substrate. Journal of microbiological methods https://doi.org/10.1016/j.mimet.2024.106976 PMID: 38925440

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