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Thermal behaviour of magnesium-containing fluorapatite

机译:含镁氟磷灰石的热行为

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Pure fluorapatite (Fap) and magnesium-substituted fluorapatite with various Mg contents were synthesised by precipitation reactions. Scanning electron microscopy micrographs showed that the use of Mg led to a change of the grain morphology. Chemical analysis and X-ray diffraction (XRD) indicated that Mg introduced in the solutions was incorporated into fluorapatite. However, samples heated at different temperatures showed that some Mg amount was adsorbed to the surface of the particles in an amorphous state, which crystallised in Mg2F(PO4) at 650degreesC. This phase was detected up to a temperature of 1120degreesC. Above this value, it disappeared following its dissolution in the liquid phase formed from a eutectic between fluorapatite and fluorine. The specific surface area (SSA) decreased strongly with increasing temperature. At low temperatures, the surface reduction was due to the agglomeration of the grains. With the improvement of the crystallisation, when the temperature increased, surface diffusion took place. At higher temperatures, before the densification occurred, surface diffusion was in competition with gaseous diffusion which became dominant. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 30]
机译:通过沉淀反应合成了具有不同Mg含量的纯氟磷灰石(Fap)和镁取代的氟磷灰石。扫描电子显微镜显微照片显示,镁的使用导致晶粒形态的变化。化学分析和X射线衍射(XRD)表明,溶液中引入的Mg被掺入氟磷灰石中。但是,在不同温度下加热的样品显示一些Mg以无定形状态吸附到颗粒表面,并在650℃的Mg2F(PO4)中结晶。在高达1120摄氏度的温度下检测到该相。高于该值,它溶解在由氟磷灰石和氟之间的低共熔物形成的液相中后消失。比表面积(SSA)随着温度的升高而大大降低。在低温下,表面减少是由于晶粒的团聚。随着结晶度的提高,当温度升高时,发生了表面扩散。在更高的温度下,在致密化发生之前,表面扩散与占主导地位的气体扩散竞争。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:30]

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