X-ray diffraction characterization of the untreated calcium phosphate from two Moroccan mining zones

K. El-hami, Ikram Labtaini
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Abstract

Calcium phosphate Ca3(PO4)2 has a wide range of applications in a number of fields, such as medical, chemistry and industrial. Calcium phosphates are used in many biomedical applications through good biocompatibility and bioactivity. In biochemistry, calcium phosphates participate in providing energy for metabolism and substances and contribute to important metabolic and enzymatic reactions in almost all organs and tissues.1 The main industrial application of calcium phosphate is in the production of agriculture fertilizers. Many studies have been carried out on the crystalline structure and the crystallographic parameters of natural phosphates; the most common way to determine such structures is X-ray diffraction. Therefore, a study at the crystallographic level can be useful to help us understand some properties related to different problem and applications. Indeed, many authors explored several analyses of untreated phosphates that show a variation of their characteristics and their field of application.2–4 The aim of this article is to compare the composition and the structure of calcium phosphate Ca3(PO4)2 from two different mining centers with X-ray diffraction. The particularity in this study is the characterization of the calcium phosphate samples as-received.
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摩洛哥两个矿区未处理磷酸钙的x射线衍射表征
磷酸钙Ca3(PO4)2在医学、化学和工业等领域有着广泛的应用。磷酸钙具有良好的生物相容性和生物活性,被广泛应用于生物医学领域。在生物化学中,磷酸钙参与为新陈代谢和物质提供能量,并在几乎所有器官和组织中参与重要的代谢和酶促反应磷酸钙的主要工业应用是生产农业肥料。对天然磷酸盐的晶体结构和晶体学参数进行了大量的研究;确定这种结构最常用的方法是x射线衍射。因此,在晶体学水平上的研究可以帮助我们了解与不同问题和应用相关的一些性质。事实上,许多作者对未经处理的磷酸盐进行了一些分析,这些分析显示了它们的特性和应用领域的变化。2 - 4本文的目的是用x射线衍射比较两个不同采矿中心的磷酸钙Ca3(PO4)2的组成和结构。本研究的特殊性在于对收到的磷酸钙样品进行了表征。
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