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Mechanism of nanostructured fluorapatite formation from CaO, CaF2 and P2O5 precursors by mechanochemical synthesis

机译:作者:张莹莹,王莹,王莹,王莹,王莹,王莹,王莹,CAO

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摘要

We determined the mechanism of mechanochemical synthesis of fluorapatite from CaO, CaF2 and P2O5 by characterisation of the intermediate compounds. We used atomic absorption spectroscopy, X-ray diffraction, field emission scanning electron microscopy, FTIR spectroscopy and transmission electron microscopy to find the transitional compounds. Investigation of the binary and ternary powder mixtures revealed the appearance of H3PO4, Ca(OH)(2), Ca2P2O7 and CaCO3 as the intermediate compounds. At early stages of the milling, conversions of P2O5 to H3PO4 and CaO to Ca(OH)(2) occurred in the wet atmosphere. Later, a combination of Ca(OH)(2) and H3PO4 formed Ca2P2O7 while the unreacted CaO was converted to CaCO3 by CO2 of the ambient atmosphere. Spherical crystalline Ca-10(PO4)(6)F-2 particles formed after 48 hours of milling due to the reaction between Ca2P2O7, CaCO3 and CaF2.
机译:我们确定通过中间体化合物的表征从CaO,CaF2和P2O5中获得CaO,CaF2和P2O5的机械化学合成的机制。 我们使用原子吸收光谱,X射线衍射,场发射扫描电子显微镜,FTIR光谱和透射电子显微镜检查过渡化合物。 对二元和三元粉末混合物的研究显示H3PO4,Ca(OH)(2),Ca2P2O7和CaCO 3作为中间体化合物的出现。 在铣削的早期阶段,在湿气氛中发生P2O5至H3PO4和Ca(OH)(2)的转化。 后来,Ca(OH)(2)和H3PO4的组合形成Ca2P2O7,同时通过环境大气的CO 2转化为未反应的CaO转化为CaCO 3。 球形结晶Ca-10(PO4)(6)F-2颗粒在48小时后形成,由于Ca2P2O7,CaCO 3和CaF2之间的反应。

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