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Comparison of physical and thermal properties of various wood-inorganic composites (WICs) derived by the sol-gel process

机译:溶胶-凝胶法得到的各种木材-无机复合材料(WIC)的物理和热性能的比较

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摘要

The physical properties and thermal decomposition kinetics of wood-inorganic composites (WICs) were in focus, which were prepared from methyltriethoxysilane (MTEOS), tetraethoxysilane (TEOS) and titanium (IV) isopropoxide (TTIP) by the sol-gel process. The hydrophobicity and dimensional stability of the composites were better than those of unmodified wood (W (contr)), but the performance of SiO2-based WICs (WICSiO2) was the best. The SEM-EDX micrographs show that silica is only distributed within the cell wall of the WICSiO2. By contrast, titania was deposited principally in the cell lumens of the WICTiO2. The thermal decomposition kinetic experiments show that the average apparent activation energies with conversion rates between 10% and 70% were 156-168 (W-contr), 178-180 (WI (MTEOS)), 198-214 (WICTEOS) and 199-204 (WICTTIP) kJ mol(-1) at the impregnation level of 20% weight gain. The reaction order values calculated based on the Avrami theory were 0.51-0.57, 0.39-0.51, 0.36-0.47 and 0.28-0.51 in the same order of species indicated above. Accordingly, the dimensional and thermal stability of the wood could be enhanced effectively by the sol-gel process with silicon-and titanium-based alkoxides.
机译:木材-无机复合材料(WIC)的物理性质和热分解动力学受到关注,它们是通过溶胶-凝胶法由甲基三乙氧基硅烷(MTEOS),四乙氧基硅烷(TEOS)和异丙醇钛(IV)制备的。复合材料的疏水性和尺寸稳定性优于未改性木材(W(contr)),但SiO2基WIC(WICSiO2)的性能最好。 SEM-EDX显微照片显示二氧化硅仅分布在WICSiO2的细胞壁内。相反,二氧化钛主要沉积在WICTiO2的细胞腔中。热分解动力学实验表明,转化率在10%至70%之间的平均表观活化能为156-168(W-contr),178-180(WI(MTEOS)),198-214(WICTEOS)和199- 204(WICTTIP)kJ mol(-1)在20%增重的浸渍水平下。基于Avrami理论计算的反应顺序值是0.51-0.57、0.39-0.51、0.36-0.47和0.28-0.51,与上述物种的顺序相同。因此,通过使用硅和钛基醇盐的溶胶-凝胶法可以有效地提高木材的尺寸和热稳定性。

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