首页> 美国卫生研究院文献>Molecules >Even Visually Intact Cell Walls in Waterlogged Archaeological Wood Are Chemically Deteriorated and Mechanically Fragile: A Case of a 170 Year-Old Shipwreck
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Even Visually Intact Cell Walls in Waterlogged Archaeological Wood Are Chemically Deteriorated and Mechanically Fragile: A Case of a 170 Year-Old Shipwreck

机译:甚至淹水的考古木材中的视觉完好无损的细胞壁也会化学降解并且机械易碎:一个有170年历史的沉船事件

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摘要

Structural and chemical deterioration and its impact on cell wall mechanics were investigated for visually intact cell walls (VICWs) in waterlogged archaeological wood (WAW). Cell wall mechanical properties were examined by nanoindentation without prior embedding. WAW showed more than 25% decrease of both hardness and elastic modulus. Changes of cell wall composition, cellulose crystallite structure and porosity were investigated by ATR-FTIR imaging, Raman imaging, wet chemistry, C-solid state NMR, pyrolysis-GC/MS, wide angle X-ray scattering, and N nitrogen adsorption. VICWs in WAW possessed a cleavage of carboxyl in side chains of xylan, a serious loss of polysaccharides, and a partial breakage of β-O-4 interlinks in lignin. This was accompanied by a higher amount of mesopores in cell walls. Even VICWs in WAW were severely deteriorated at the nanoscale with impact on mechanics, which has strong implications for the conservation of archaeological shipwrecks.
机译:研究了浸水考古木(WAW)中视觉完好无损的细胞壁(VICW)的结构和化学恶化及其对细胞壁力学的影响。通过纳米压痕检查细胞壁的机械性能,无需事先嵌入。 WAW的硬度和弹性模量均降低了25%以上。通过ATR-FTIR成像,拉曼成像,湿化学,C固态NMR,热解GC / MS,广角X射线散射和N氮吸附研究了细胞壁组成,纤维素微晶结构和孔隙率的变化。 WAW中的VICW在木聚糖的侧链中具有羧基的裂解,多糖的严重损失以及木质素中β-O-4互连的部分断裂。这伴随着细胞壁中更高数量的中孔。甚至WAW中的VICW在纳米尺度上也受到严重破坏,对力学产生了影响,这对保护考古沉船具有重要意义。

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