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Turkey Tail, Yun Zhi · 2021 · Journal Article

Medium relevance

Improvement of wood decay resistance with cinnamaldehyde chitosan emulsion

Trametes versicolor

Gut & microbiome
SpeciesTurkey Tail, Yun Zhi
JournalIndustrial crops and products
Year2021

Key points

  • Environmental concerns over organic chemicals used for protecting wood and wood products from biological degradation have prompted the development of natural wood preservatives with lower health risks and prolonged efficacy
  • In this study, mixing chitosan and cinnamaldehyde to prepare an emulsion as natural wood preservative can effectively infuse cinnamaldehyde in the treated wood, enhancing the ability of the wood to resist decay fungi
  • Wood decay fungi were cultivated in emulsion with various molar ratios of cinnamaldehyde to chitosan emulsion
  • The results showed that the cinnamaldehyde chitosan emulsion severely impacted the normal growth of the decay fungi and changed the mycelium morphology of the decay fungi
  • The Schiff base was formed in treated wood, and the decay resistance of treated wood was improved
  • This study suggests the cinnamaldehyde chitosan emulsion can be effectively used as environmentally friendly wood preservative

From the paper

Abstract

Environmental concerns over organic chemicals used for protecting wood and wood products from biological degradation have prompted the development of natural wood preservatives with lower health risks and prolonged efficacy. In this study, mixing chitosan and cinnamaldehyde to prepare an emulsion as natural wood preservative can effectively infuse cinnamaldehyde in the treated wood, enhancing the ability of the wood to resist decay fungi. Wood decay fungi were cultivated in emulsion with various molar ratios of cinnamaldehyde to chitosan emulsion. The antifungal property of the emulsion was compared according to its growing colony diameter and the mycelial morphology. The preservative emulsion was also impregnated into poplar (Populusnigra L.) with vacuum-pressure cycle. The decay resistance was evaluated by wood decay resistance test and electron microscope observation. The results showed that the cinnamaldehyde chitosan emulsion severely impacted the normal growth of the decay fungi and changed the mycelium morphology of the decay fungi. The Schiff base was formed in treated wood, and the decay resistance of treated wood was improved. Its decay resistance against brown-rot fungi Gloeophyllum trabeum was better than that of white-rot fungi Trametes versicolor. This study suggests the cinnamaldehyde chitosan emulsion can be effectively used as environmentally friendly wood preservative.

Citation

Fang S, Feng X, Lei Y, Chen Z, Yan L (2021). Improvement of wood decay resistance with cinnamaldehyde chitosan emulsion. Industrial crops and products https://doi.org/10.1016/j.indcrop.2020.113118

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