珍珠鸡蛋壳生物纳米复合材料热分解过程的物理几何方法研究

O. Bordunova, Y. Samokhina, R. Dolbanosova, Lyudmila S. Patreva, N. Cherniy, Oleksandr O. Chekh, V. Loboda, S. Danilchenko, V. Chivanov
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引用次数: 2

摘要

利用热程序解吸质谱法(TPD-MS)中的物理几何方法,间接估计了珍珠鸡蛋壳“碳酸钙(方解石)-蛋白质”型多层非均相复合物的三维结构的可能性。该方法基于碳酸钙热分解速率的差异,这取决于每层的三维微、纳米结构的特性。随着孔隙度的增加和壳局部区域晶填料密度的降低,热破坏过程中二氧化碳释放依赖性复杂曲线(热图)的最大峰向低温方向移动。在传统的显微镜方法不能给出可靠结果的情况下,TPD-MS可以确定蛋壳的质量水平和机械性能。因此,这项研究表明,珍珠鸡(Numida meleagris)蛋壳的纳米复合层的不同区域存在可靠的结构差异,其特征是强度增加。这些实验和理论结果可以为开发一种新的食品蛋壳质量评估方法提供方法学基础,这是防止损失和防止沙门氏菌污染所需要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physico-Geometric Approach to the Processes of Thermal Decomposition of the Guinea Fowl (Numida meleagris) Eggshell’s Bionanocomposites
Using the physico-geometric approach in the thermal programmed desorption mass spectrometry (TPD-MS method), the possibility of indirect estimation of the three-dimensional structure of a multilayer heterogeneous composite of “calcium carbonate (calcite) – protein” type of eggshells of a guinea fowl (Numida meleagris) eggs. The method is based on the difference in rates of thermal decomposition rates of calcium carbonate depending on the peculiarities 3-D micro-, nanostructure of each layer. Increased porosity and reduction in the density of crystallite packing in local areas of the shell is accompanied by a shift of maximum peaks in the complex curves of the dependence of carbon dioxide release during process of thermal destruction (thermograms) in the direction of low temperatures. The TPD-MS makes it possible to determine of quality level and mechanical properties of the eggshells in cases where traditional methods of microscopy don’t give reliable results. Thus, this study shows the presence of reliable structural differences in different areas of the nanocomposite layers of the eggshell of guinea fowl (Numida meleagris), distinguished by increased strength. These experimental and theoretical results can be the methodological basis for the development of a new method for assessing the quality of food eggshells, which is needed to prevent losses and prevent contamination with Salmonella.
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