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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Confocal Raman microscopy reveals changes in chemical composition of wood surfaces exposed to artificial weathering
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Confocal Raman microscopy reveals changes in chemical composition of wood surfaces exposed to artificial weathering

机译:共焦拉曼显微镜显示出暴露于人造风化的木材表面的化学成分变化

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摘要

Weathering leads to rapid depolymerization and modification of wood chemical components. The present study aims to assess the structural and distributional changes in the main wood polymers, such as lignin and poly-saccharides, located in the surface layers during weathering exposure. A confocal Raman microscopic technique, which is useful for evaluating the structure of molecules with a high spatial resolution, was utilized to examine the effects of weathering on the chemical composition of wood surfaces at the cellular level. Raman spectra showed that lignin degradation during weathering proceeds with the formation of o- and p-quinones, carbonyl groups, and certain types of C=C double bonds such as stilbene derivatives. Comparing the weathering conditions between light only and light plus water exposure, it was found that weathering in the presence of water significantly enhances the degradation of lignin. The Raman images exhibited that the degree of lignin degradation by light only exposure is according to the depth. However, in the case of light plus water exposure, lignin degradation in the outermost cell walls proceeded from both the exposed surface side and the lumen side of the cell walls. This study is expected to potentially promote development of more effective and efficient methods to protect wood surfaces against weathering.
机译:风化导致木材化学成分的快速解聚和改性。本研究旨在评估主木聚合物的结构和分布变化,例如木质素和聚糖,位于耐候暴露期间的表面层。用于评估具有高空间分辨率的分子结构的共焦拉曼微观技术,用于检查风化对细胞水平的木材化学成分的影响。拉曼光谱表明,在风化期间的木质素降解与形成O-和P Quinones,羰基和某些类型的C = C双键,例如芪衍生物。比较灯光与灯加上水曝光之间的风化条件,发现在水的情况下风化显着增强了木质素的降解。拉曼图像表现出轻度仅曝光的木质素劣化程度是根据深度。然而,在轻加水暴露的情况下,最外层的细胞壁中的木质素劣化从细胞壁的暴露表面侧和内腔侧进行。预计这项研究将潜在地促进更有效和有效的方法,以保护木材表面免受风化。

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