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首页> 外文期刊>Materials science & engineering. C, Biomimetic and supramolecular systems >Microstructure and thermal change of texture of calcite crystals in ostrich eggshell Struthio camelus
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Microstructure and thermal change of texture of calcite crystals in ostrich eggshell Struthio camelus

机译:鸵鸟蛋壳Struthio camelus中方解石晶体组织和结构的热变化

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摘要

Eggshell from ostrich Struthio camelus, pristine and thermally treated in the range from room temperature to 550℃, was investigated with low vacuum scanning electron microscopy (LVSEM), Fourier transform infrared spectroscopy (FT-IR), transmission electron microscopy (TEM) and X-ray powder diffractometry (XRD). Different zones of the eggshell were analysed, including the protein-related, non-crystalline, inner organic membrane. After the high-temperature treatment ( > 500℃), only crystallised calcite phase was found showing two main textures depending on the shell zone and the treatment temperature. In the crystal layer of the untreated samples, nanosized calcite crystals are organized with their c crystallographic axes highly aligned normal to eggshell surface (a very sharp gaussian angular distribution, σ=0.14, was obtained by using the Rietveld method to model the preferred orientation function in the X-ray powder diffraction pattern). Elemental analysis revealed more Mg~(2+) in the crystal layer than in cone layer of the eggshell. A high nitrogen content in the organic membrane is associated to a proteinaceous phase. The cone and palisade layers are composed of needle-shaped calcite crystals, which are more crystallized than in the crystal layer and in average with their e crystallographic axes oriented in all directions except for the one perpendicular to the eggshell surface. Due to the complex structure and the amorphous/crystal phase interactions, the heating at about 500℃ texturizes the crystals orienting them mainly along the c-axes normal to the inner eggshell surface.
机译:用低真空扫描电子显微镜(LVSEM),傅立叶变换红外光谱(FT-IR),透射电子显微镜(TEM)和X射线研究了鸵鸟鸵鸟骆驼的蛋壳,原始蛋白并在室温至550℃范围内进行了热处理。射线粉末衍射法(XRD)。分析了蛋壳的不同区域,包括与蛋白质相关的非晶体内部有机膜。高温处理(> 500℃)后,仅发现结晶的方解石相显示出两个主要的织构,具体取决于壳层区域和处理温度。在未经处理的样品的晶体层中,方解石晶体的纳米晶排列成其c晶轴垂直于蛋壳表面高度对齐(通过使用Rietveld方法对首选的取向函数建模,获得了非常尖锐的高斯角分布,σ= 0.14在X射线粉末衍射图中)。元素分析表明,蛋壳中的结晶层中的Mg〜(2+)含量高于蛋壳中的锥形层。有机膜中的高氮含量与蛋白质相有关。锥体层和栅栏层由针状方解石晶体组成,它们比晶体层中的结晶度更高,并且平均而言,其电子晶体轴指向除垂直于蛋壳表面的一个方向以外的所有方向。由于复杂的结构和非晶/晶相的相互作用,在约500℃的温度下加热可使晶体定向,主要沿垂直于蛋壳内表面的c轴定向。

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