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Effects of Phosphoric Acid on Liquefaction of Wood in Phenol and Optimum Liquefaction Processing Parameters

Zhang Qiuhui Zhao Zhao Guangjie Jie Shujun

中国林学(英文版)2004,Vol.6Issue(3):50-54,5.
中国林学(英文版)2004,Vol.6Issue(3):50-54,5.

Effects of Phosphoric Acid on Liquefaction of Wood in Phenol and Optimum Liquefaction Processing Parameters

Effects of Phosphoric Acid on Liquefaction of Wood in Phenol and Optimum Liquefaction Processing Parameters

Zhang Qiuhui Zhao 1Zhao Guangjie 1Jie Shujun1

作者信息

  • 1. College of Material Sciences and Technology, Beijing Forestry University, Beijing 100083, P. R. China
  • 折叠

摘要

Abstract

To clarify the influencing factors of liquefaction of wood in phenol using phosphoric acid as a catalyst and get its liquefaction technology, a study on the liquefaction technology of Chinese fir (Cunninghamia lanceolata) and poplar (triploid Populus tomentosa Carr) under different conditions was conducted. The results indicate that the residue rate decreases with the increase of liquefaction temperature, liquefaction time, catalyst content or liquid ratio. It is also found that the optimum condition of liquefaction for poplar is estimated as: the reaction temperature of 180 °C, the reaction time of 2.5 h, liquid ratio (phenol/wood ratio) of 4.5 and catalyst content of 8%, and 4.2% residue rate could be obtained. Under the processing parameters of temperature 180 °C, the reaction time of 2.5 h, liquid ratio (phenol/wood ratio) of 4 and catalyst content of 10%, the residue rate of Chinese fir can reach 5.6%.

关键词

wood liquefaction/phenol/residue rate/liquefaction processing parameters

Key words

wood liquefaction/phenol/residue rate/liquefaction processing parameters

引用本文复制引用

Zhang Qiuhui Zhao,Zhao Guangjie,Jie Shujun..Effects of Phosphoric Acid on Liquefaction of Wood in Phenol and Optimum Liquefaction Processing Parameters[J].中国林学(英文版),2004,6(3):50-54,5.

基金项目

[Supported by the Key Research Program Foundation of Ministry of Education of China (Grant No.02021) and the Development Plan Foundation of Beijing Forestry University] (Grant No.02021)

中国林学(英文版)

2095-6355

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