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Dimensional stability and hygroscopic properties of waterlogged archaeological wood treated with alkoxysilanes

机译:用烷氧基硅烷处理涝渍考古木材的尺寸稳定性及吸湿性

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摘要

Archaeological waterlogged elm wood was treated with methyltrimethoxysilane (MTMS) and (3-mercaptopropyl)trimethoxysilane (MPTES), respectively, and anti-shrink efficiency and sorption properties of the impregnated wood samples were determined. The applied impregnants stabilized wood dimensions efficiently enough, i.e. the obtained anti-shrink efficiency was 81 and 98% for MTMS- and MPTES-treated wood, respectively. Both alkoxysilanes can be considered as potential new consolidants. Hygroscopic properties of untreated and impregnated wood were investigated with the DVS experiments. The application of MTMS and MPTES reduced wood equilibrium moisture content (EMC) and sorption hysteresis e.g. hysteresis relative change was -83.7 and -73.7% for MTMS- and MPTES-treated wood, respectively. The EMC reduction was observed in the whole hygroscopic range and it was primary due to the monolayer capacity decrease to 50 and 30% of the value for untreated wood and observed for adsorption and desorption modes, respectively. The DVS experiments revealed chemical instability of the MTMS-wood system which was neutralized after the cyclic sorption. The possible scenarios of the interaction of both alkoxysilanes with wood structure were discussed.
机译:考古学涝渍ELM木材用甲基三甲氧基硅烷(MTM)和(3-巯基丙基)三甲氧基硅烷(MPTES)处理,并测定浸渍木样品的抗收缩效率和吸附性。所施加的浸渍剂有效稳定木材尺寸,即获得的抗收缩效率分别为MTMS和MPTES处理的木材的抗收缩效率为81和98%。两种烷氧基硅烷都可以被认为是潜在的新氧化剂。用DVS实验研究了未处理和浸渍木材的吸湿性。 MTM和MPTES的应用降低了木材平衡水分含量(EMC)和吸附滞后。滞后相对变化分别为-83.7和-73.7%,分别用于MTMS-和MPTES处理的木材。在整个吸湿范围内观察到EMC还原,并且由于单层容量减少至未处理木材的值的50%和30%,分别观察到吸附和解吸模式。 DVS实验揭示了在循环吸附后中和的MTMS木系统的化学不稳定。讨论了两种烷氧基硅烷与木结构的相互作用的可能场景。

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