聚乙二醇
材料科学
木质素
PEG比率
复合材料
化学工程
结晶
半纤维素
吸水率
傅里叶变换红外光谱
化学
有机化学
财务
工程类
经济
作者
Yuhan Liu,Jiangtao Shi,Weiqi Leng,Qiongtao Huang
出处
期刊:Forests
[Multidisciplinary Digital Publishing Institute]
日期:2022-07-31
卷期号:13 (8): 1204-1204
被引量:9
摘要
Wood permeability and compressibility are affected by cell wall structure and chemical composition. These properties can be improved by appropriate wood pretreatments. Low-density poplar wood was converted to a more dense structure by the following steps: First, lignin and hemicellulose were removed using a mixture of NaOH and Na2SO3. Second they were impregnated with polyethylene glycol (PEG, mean molecular weight of 1200), nano-SiO2, and a silane coupling agent at atmospheric temperature and pressure. Finally, impregnated wood was compressed at 150 °C. Results showed that the tracheid lumens on the transverse section of the compressed wood almost vanished. Specifically, the lumens in the wood cells, especially those that were compressed, were almost completely filled with PEG. In FTIR, the asymmetric absorption peaks of Si–O–Si at 1078–1076 cm−1 were clearly observed, which confirms the existence of bonding between nano-SiO2 and wood. The highest melting enthalpy and crystallization enthalpy showed a heat storage capacity of modified wood, which were 20.7 and 9.8 J/g, respectively. Such phase change capabilities may have potential applications in regulating the rate of change of room temperature. In summary, the modified wood could be utilized as material for construction to conserve energy.
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