4.7 Article

Surface photo-discoloration and degradation of dyed wood veneer exposed to different wavelengths of artificial light

Journal

APPLIED SURFACE SCIENCE
Volume 331, Issue -, Pages 353-361

Publisher

ELSEVIER
DOI: 10.1016/j.apsusc.2015.01.091

Keywords

ATR-FTIR; Dyed wood; Light wavelength; Lignin; Photo-discoloration; Photo degradationa

Funding

  1. Beijing Municipal Education Commission Joint Project for Scientific Research and Graduate Training
  2. Special Fund for Forestry Research in the Public Interest of China [201204702]
  3. Natural Science Foundation of China [30972302]
  4. China Scholarship Council [201306510015]
  5. Forest Products Development Center within the Schoolof Forestry and Wildlife Sciences
  6. Regions Bank

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The surface of dyed wood is prone to discoloration when exposed to light irradiation which significantly decreases its decorative effect and shortens its service life. The influence of light wavelength exposure to the surface of dyed wood was investigated to study the effect on discoloration and degradation. Acid Blue V and Acid Red GR dyed wood veneers were subjected to light exposure with different wavelengths from the UV to visible region (254420 nm). Results showed that the surface discoloration of dyed wood was linearly related to lignin concentration and dyes degradation and the consequent transformation of chromophoric groups such as aromatic (C=C) and carbonyl (C=O) through methoxy reaction. The dyes, lignin and some active constituents were degraded severely, even at short exposures. Acid Blue V dyed wood exhibited greater discoloration than the Acid Red GR treatment. The reflectance and K/S absorption curve showed a hypochromic effect on the dyed wood surface. The dyes and wood chemical structure played a complex and combined role on the selective absorption of different wavelengths of light. The color change rate was apparent with 254 nm exposure in the initial stages, but a greater discoloration rate occurred on the samples irradiated at 313 and 340 nm than at 254 and 420 nm with the time prolonged. The degradation rate and degree of discoloration correlated well with the light energy and wavelength. (C) 2015 Elsevier B.V. All rights reserved.

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