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Treatment of fir wood with chitosan and polyethylene glycol 被引量:1

Treatment of fir wood with chitosan and polyethylene glycol
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摘要 Chitosan is a natural biopolymer, derived from chitin, which is used for wood modification. Polyethylene glycol(PEG) was reacted with wood to provide possible fixation of the chitosan to wood. Wood blocks were treated with chitosan and PEG, as well as pre-treatment with the PEG at different temperatures and further reaction with the chitosan. The samples were soaked in water to study leaching of the chemicals, water absorption, swelling, as well as anti-swelling efficiency. Any prior reaction of the wood with PEG provided better reaction to the chitosan.Bulking was increased after the treatment of the wood with PEG. Swelling was reduced in the PEG-treated wood blocks as well as the pre-treated samples. Chitosan was not able to protect wood against water penetration: the treated samples showed more water absorption and swelling.However, pre-treatment of the samples decreased swelling in the wood, and the density was not noticeably affected by the treatments. Heating during the treatment caused more reduction in swelling for PEG–chitosan treated samples. Chitosan is a natural biopolymer, derived from chitin, which is used for wood modification. Polyethylene glycol(PEG) was reacted with wood to provide possible fixation of the chitosan to wood. Wood blocks were treated with chitosan and PEG, as well as pre-treatment with the PEG at different temperatures and further reaction with the chitosan. The samples were soaked in water to study leaching of the chemicals, water absorption, swelling, as well as anti-swelling efficiency. Any prior reaction of the wood with PEG provided better reaction to the chitosan.Bulking was increased after the treatment of the wood with PEG. Swelling was reduced in the PEG-treated wood blocks as well as the pre-treated samples. Chitosan was not able to protect wood against water penetration: the treated samples showed more water absorption and swelling.However, pre-treatment of the samples decreased swelling in the wood, and the density was not noticeably affected by the treatments. Heating during the treatment caused more reduction in swelling for PEG–chitosan treated samples.
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2016年第4期959-966,共8页 林业研究(英文版)
关键词 chitosan swelling glycol polyethylene chemicals leaching dried prior chitin fixation chitosan swelling glycol polyethylene chemicals leaching dried prior chitin fixation
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  • 1Allan C, Hadwiger L (1979) The fungicidal effect of chitosan on fungi of varying cell wall composition. J Exp Mycol 3(3):285-287.
  • 2Basttirk MA (2007) Improving oriented strandboard properties with chitosan treatment of strands. J Appl Sci Res 3(7):507-510.
  • 3Duan X, Lu JZ, Wu Q, Lan KL (2004) Mechanical properties and decay resistance of wood polymer composites modified with chitosan copper complexes. In: Proceedings of 7th pacific rim bio based composite symposium, October 31-November 2, Nanjing, China.
  • 4Enescu D (2008) Use of chitosan in surface modification of textile materials. J Ruman Soc Biol Sci 13(6):4037-4048.
  • 5Ibach RE, Eliss WD (2005) Lumen Modification. In: Rowel RM (ed) Handbook of wood chemistry and wood composites. CRC Press, London, pp 421-446.
  • 6Jeremic D, Cooper P, Brodersen P (2007) Penetration of poly(- ethylene glycol) into wood cell walls of red pine. Holzforschung 61(3):272-278.
  • 7Kumar ~I'NVR (2000) A review of chitin and chitosan applications. J React Funct Polym 46(1):1-27.
  • 8Larn~y E, Dantz S, Eikenes M, Militz H (2005) Screening of properties of modified chitosan-treated wood. J Wood Mater Sci En~ 1:59-68.
  • 9Linden J, Stoner R, Gardner-Hughes C (2000) Organic disease control elicitors. J Agro Food Ind 20:12-15.
  • 10Mima S, Miya M, Iwamoto R, Yoshikawa S (1983) Highly deacetylated chitosan and its properties. J Appl Polym Sci 28:1909-1917.

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