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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Analysis of Composite Structure and Primordial Wood Remains in Petrified Wood
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Analysis of Composite Structure and Primordial Wood Remains in Petrified Wood

机译:硅化木中复合结构和原始木材残留的分析

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Among all the fossils, petrified wood belongs to the most impressive andmost common of materials. Still, its study has not exceeded the purely phenomenological level. The recognition of the conserved structure of petrified wood seems to be of meaning for understanding the geological past, the complete carbon cycle inside the Earth, and the structure of potential new materials. The first ever published spatial distributions of the remains of the primordial organic material (lignin, cellulose, pectins) in the cells of permineralized wood, from Dunarobba (Central Italy), are presented here. They were collected using mu-Raman spectrometry. The composite nature of the petrified material (calcite located in the lumena of cells and goethite located in the cell walls) was confirmed by electron, proton, and X-ray microprobes. The structure of the cell walls was well preserved. The mineralization process was induced by the tracheidal water flow and was stopped after formation of pipe-like goethite shielding of the cell walls on the cellulose scaffolds. The chemical (Eh and pH ranges) and probable microbial conditions for such a pattern of mineralization were determined. We estimate that substantial amounts of the primordial organic matter were preserved in bodies of petrified wood on a global scale. The wood petrifaction process, if well understood, can be a basis for the production of "everlasting" organic-inorganic composite compounds.
机译:在所有化石中,木化石是最令人印象深刻和最常见的材料。尽管如此,它的研究还没有超出纯粹的现象学水平。认识到木化石的保守结构似乎对理解地质历史,地球内部完整的碳循环以及潜在的新材料的结构具有重要意义。本文介绍了来自Dunarobba(意大利中部)的矿化木材细胞中原始有机物质(木质素,纤维素,果胶)的残留量首次公开发表的空间分布。使用mu-拉曼光谱法收集它们。通过电子,质子和X射线微探针证实了石化材料的复合性质(方解石位于细胞腔中,针铁矿位于细胞壁中)。细胞壁的结构保存完好。气管水流诱导了矿化过程,并在纤维素支架上的细胞壁形成管状针铁矿屏蔽层后停止了矿化过程。确定了这种矿化模式的化学成分(Eh和pH范围)和可能的微生物条件。我们估计,在全球范围内,大量的原始有机物保留在石化木体内。如果充分理解,木材石化过程可以作为生产“持久”有机-无机复合化合物的基础。

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