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Modifying wood with bio-polyesters: analysis and performance

机译:用生物聚酯改性木材:分析和性能

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摘要

Oligomers of lactic and glycolic acid (OLA, OGA) and poly(butylene succinate/adipate) (OBS, OBA) were impregnated and heated into wood for dimensional stabilisation. These bio-polyesters variously provide bulking and lumen filling treatments. Solventextraction of treated wood showed that ca. 50% of the polymer remains in wood with in situ polymerisation evidenced by GPC. OGA readily penetrates the wood cell wall, which occurred only on heating OLA, whereas OBS/OBA was lumen filling with any cell wall penetration only evident after water soaking. Stability of OLA/OGA treated wood was improved, but did not withstand extended leaching, whereas OBS/OBA treated wood presented higher stability once leached. Bending resistance was influenced by OLA/OGA treatments, but original MOE values were recovered after leaching. Overall, the results show the bio-polyester treatment can confer specific properties of the modified wood to suit selected end use applications.
机译:将乳酸和乙醇酸(OLA,OGA)和聚丁二酸丁二酸丁二酯/己二酸酯(OBS,OBA)的低聚物浸渍并加热到木材中以保持尺寸稳定。这些生物聚酯可提供各种填充和内腔填充治疗。经处理的木材的溶剂萃取表明,约。 GPC证明有50%的聚合物残留在木材中。 OGA容易穿透木质细胞壁,只有在加热OLA时才会发生,而OBS / OBA则是管腔内充满任何细胞壁的内腔,只有在浸水后才可见。经OLA / OGA处理的木材的稳定性得到改善,但不能承受长时间的浸出,而经OBS / OBA处理的木材一旦浸出则表现出更高的稳定性。抗弯强度受OLA / OGA处理的影响,但浸出后恢复了原始的MOE值。总体而言,结果表明,生物聚酯处理可以赋予改性木材以特定的最终用途的特定性能。

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