4.7 Article

Leachability and Anti-Mold Efficiency of Nanosilver on Poplar Wood Surface

期刊

POLYMERS
卷 14, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/polym14050884

关键词

silver nanoparticle; wood surface; mold; protective efficiency; leachability

资金

  1. Project of Shandong Provincial Natural Science Foundation [ZR2021MC095]
  2. Project of Shandong Provincial Agricultural Science and Technology Foundation (Forestry Science and Technology) [2019LY008]
  3. Key Laboratory of Bio-based Material Science & Technology (Northeast Forestry University), Ministry of Education [SWZ-MS201912]
  4. Support Program of Shandong Province Higher Educational Science and Technology for Youth Innovation [2020KJF012]

向作者/读者索取更多资源

Water-based antimicrobial agents are widely used in environmentally friendly wood protection. In this study, nano-silver dispersed in water was used to treat poplar wood, and its leaching resistance and anti-mold effect on the wood surface were evaluated. The results showed that higher retention of nano-silver led to stronger protection against molds, and the leachability of nano-silver increased slowly with higher retention. At a silver retention of 0.324 g.m(-2), the anti-mold efficiency against different molds reached 80%, 75%, and 80%, respectively.
Water-based antimicrobial agents, used in environmentally friendly applications, are widely used in wood protection industries. Furthermore, nanomaterials as antimicrobial agents, because of their biocidal component, huge specific surface area, and unique nanoscale effect, have attracted attention in the field of biodurability. We employed aqueous dispersed nano-silver with a diameter of 10 nm-20 nm to treat poplar wood and evaluated its leaching resistance and anti-mold effect on the wood surface. The results revealed that the higher the retention of the nano-silver, the stronger the protection efficiency of the wood surface against three molds (Aspergillus niger V. Tiegh, Penicillium citrinum Thom, and Trichoderma viride Pers. ex Fr); and the leachability of the nano-silver presented a slowly growing trend with the increase in the retention. When the wood surface attained a silver retention of 0.324 g.m(-2) , its anti-mold efficiency against Aspergillus niger V. Tiegh, Penicillium citrinum Thom, and Trichoderma viride Pers. ex Fr reached 80, 75, and 80%, respectively, which achieved or even exceeded the required standard value of effective mold inhibition (75%). Notably, the nano-silver leaching rate at this retention attained merely 4.75 %. The nanoparticle, well distributed on a wood surface, may promote sufficient contact with fungi as well as strong interaction with wood cell wall components, which probably contributed to the effective anti-mold efficiency and the leaching resistance. This study provided positive evidence for the anti-mold effect of nano-silver on wood surface.

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