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Preparation of Chinese fir wood/MMT nanocomposites and the factors affecting it 被引量:2
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作者 Lü Wen-hua Zhao Guang-jie 《Forestry Studies in China》 CAS 2007年第1期45-50,共6页
The nano intercalation compounding of wood and MMT has important implications for the modification of wood and for the development of new materials. With water-soluble phenol formaldehyde resin as an intermediary, the... The nano intercalation compounding of wood and MMT has important implications for the modification of wood and for the development of new materials. With water-soluble phenol formaldehyde resin as an intermediary, the nanocomposites of Chinese fir (Cunningharnia lanceolata) wood and montmorillonite (MMT) were prepared via three impregnation methods, i.e. normal pressure, once and twice vacuum methods. Based on the weight percent gain (WPG) of impregnated wood, the effects of compounding wood and MMT in terms of concentration, impregnating temperature and time, wood moisture content and wood extraction treatments, on sapwood and heartwood are discussed. Results show that: 1) the optimum MMT concentration in the impregnation solution is 3% for sapwood and 5% for heartwood; 2) room temperature is suitable in practice; 3) treatment pressure should be set at a high enough value in order to ensure sufficient permeation; 4) the effects of different impregnation methods on sapwood and heartwood are different, the heartwood extractives affect WPG significantly; cell wall permeability of sapwood is better than that of heartwood; 5) the cold water, hot water and benzene-ethanol solution extractions can all greatly improve the permeability of heartwood, hot water can dissolve some hemicellulose of low aggregation and hot water extraction improves wood cell wall permeability; 6) with an increase in wood moisture content, the permeable space in wood is reduced, but with a certain amount of water, instantaneous spaces are created and the permeation dynamic increases. This effect is especially apparent for difficult impregnating situations in heartwood and impregnation under normal pressure. 展开更多
关键词 cunninghamia lanceolata wood montmorillonite (mmt nano intercalation compounding affecting factors
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杉木木材/蒙脱土纳米复合材料的结构和表征 被引量:30
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作者 吕文华 赵广杰 《北京林业大学学报》 EI CAS CSCD 北大核心 2007年第1期131-135,共5页
该文预先合成水溶性酚醛树脂作为中间介质,通过加压浸渍处理制备了杉木木材/蒙脱土纳米复合材料(WMNC),采用XRD、SEM、FTIR、TG--DTA等分析手段对WMNC的结构特性进行了表征.结果表明:①由于部分蒙脱土剥离片层进入了杉木木材细胞壁,WMN... 该文预先合成水溶性酚醛树脂作为中间介质,通过加压浸渍处理制备了杉木木材/蒙脱土纳米复合材料(WMNC),采用XRD、SEM、FTIR、TG--DTA等分析手段对WMNC的结构特性进行了表征.结果表明:①由于部分蒙脱土剥离片层进入了杉木木材细胞壁,WMNC中杉木木材的结晶度降低.②由于蒙脱土改性、树脂分子对蒙脱土的插层以及木材浸渍处理过程等的差异,蒙脱土在WMNC中的大小、形态和分布具多样性.蒙脱土填充的不均匀性,与杉木木材本身的渗透变异性相关.WMNC中的蒙脱土,部分填充于木材细胞腔等大孔隙,部分附着在木材细胞腔内壁,部分进入了细胞壁.③WMNC的缔合羟基增多,醚键大量增多,蒙脱土与杉木木材可能存在氢键或化学键结合.④WMNC的热分解历程改变,热性能提高,起始分解温度降低,高温区的热解失重显著减少,在一定程度上体现了无机复合组分蒙脱土纳米片层的纳米复合效应. 展开更多
关键词 杉木 蒙脱土 水溶性酚醛树脂 纳米插层复合 结构和表征
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