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Synthesis and characterisation of lignin-like oligomers as a bio-inspired consolidant for waterlogged archaeological wood

机译:木质素样低聚物的合成和表征,该生物素为浸水考古木材的生物启发性固结剂

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摘要

The development of new materials for the consolidation of waterlogged archaeological wood from sustainable sources is an important area of research, as the most widely used consolidant today is petroleum based. Ideally a new consolidant will interact with the existing wood structure, ensuring maximum compatibility. Lignin is often the major component remaining in archaeological wood, as it is less susceptible to degradation than holocellulose. Therefore, in order to maximise the potential for interaction with the wood cells, lignin-like oligomers have been synthesized from isoeugenol using a water soluble copper salen catalyst at pH 10, giving a weight average M-w of 1.6 kDa. Analysis by NMR spectroscopy has shown that the oligomers have a lignin-like structure with beta-O-4', beta-beta' and beta-5' connections. A 10 w/w % solution of the oligomers in ethyl acetate was found to thoroughly penetrate 1 cm(3) samples of waterlogged archaeological wood (density of 0.146 g/mL, maximum water content of 620 %) after 14 days impregnation, as determined by FTIR spectroscopy. No impregnation material could be seen by SEM, suggesting that it coats the cell walls upon drying. This indicates that dehydrogenated polymers penetrate waterlogged archaeological wood well and have the potential to be developed into consolidants.
机译:从可持续来源开发用于巩固浸水考古木材的新材料是一个重要的研究领域,因为当今使用最广泛的巩固剂是石油基的。理想情况下,新的固结剂将与现有的木结构相互作用,以确保最大的兼容性。木质素通常是考古木材中剩余的主要成分,因为它比全纤维素不易降解。因此,为了使与木材细胞相互作用的潜力最大化,已使用pH 10的水溶性铜塞伦催化剂由异丁香酚合成了木质素样低聚物,重均分子量Mw为1.6 kDa。 NMR光谱分析表明,该低聚物具有木质素样结构,具有β-O-4',β-β'和β-5'连接。经测定,浸渍14天后,发现低聚物在乙酸乙酯中的10 w / w%溶液可完全渗透1 cm(3)浸水考古木材样品(密度为0.146 g / mL,最大水含量为620%)。通过FTIR光谱。 SEM看不到浸渍材料,这表明它在干燥时会覆盖细胞壁。这表明脱氢的聚合物很好地渗透了浸水的考古木材,并有可能发展为固结剂。

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