Surface hardness and flammability of Na2SiO3and nano-TiO2reinforced wood composites

布氏硬度计 材料科学 苏格兰松 复合材料 硅酸钠 硬度 无定形固体 极限氧指数 傅里叶变换红外光谱 核化学 化学工程 化学 热解 松属 工程类 有机化学 生物 植物 烧焦 合金
作者
Edita Garskaite,Olov Karlsson,Živilė Stankevičiūtė,Aivaras Kareiva,Dennis Jones,Dick Sandberg
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:9 (48): 27973-27986 被引量:38
标识
DOI:10.1039/c9ra05200c
摘要

The objective of this study was to explore an effect of the combined inorganic materials on the wood hardness and flame-retardancy properties in a concept of sustainable material management. Herein, the reinforcement of Scots pine (Pinus sylvestris L.) sapwood with sodium silicate and TiO2 nanoparticles via vacuum-pressure technique is reported. Pyrolysis of modified wood was studied by TG-FTIR analysis; the results showed that maximum weight loss for the modified wood was obtained at 40-50 °C lower temperatures compared to the reference untreated wood. The Gram-Schmidt profiles and spectra extracted at maxima absorption from Gram-Schmidt plots indicated chemical changes in wood-inorganic composites. SEM/EDS analysis revealed the presence of Na-O-Si solid gel within the wood-cell lumen and showed that TiO2 was homogeneously distributed within the amorphous Na-O-Si glass-forming phase to form a thin surface coating. EDS mapping further revealed the higher diffusivity of sodium into the cell wall compared to the silicon compound. The presence of amorphous sodium silicate and nano-TiO2 was additionally confirmed by XRD analysis. FTIR spectra confirmed the chemical changes in Scots pine sapwood induced by alkalization. Brinell hardness test showed that the hardness of the modified wood increased with the highest value (44% increase in hardness) obtained for 10% Na2SiO3-nTiO2 modified wood. The results showed good correlation between TG and flammability test; limiting oxygen index (LOI) values for the wood-inorganic composites increased by 9-14% compared to the untreated wood.

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