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Structural and spectroscopic characterization of anorthite synthesized from secondary raw materials

机译:二次原料合成的钙长石的结构和光谱表征

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Recycling of secondary raw materials is a priority of waste handling in the countries of the European community. A virtual secondary raw material of great importance is the product of the thermal transformation of cement - asbestos. This work illustrates the study of calcination products obtained starting from the product of the thermal transformation of cement-asbestos at 1200 °C, added to primary raw materials (kaolin, aluminum hydroxide) and boric acid as mineralizing agent. The calcination has been conducted at 1200 °C for 1 hour. The crystallization kinetics has been monitored using in situ high temperature X-ray powder diffraction. The microscopic characterization of the final product of calcination has been conducted with SEM and TEM imaging supported by X-ray microanalysis. The structure refinement was conducted on the powder sample using the Rietveld method. The results are compared with the spectroscopic characterization including M?ssbauer and UV-Vis spectroscopies. The final product of the calcination is essentially anorthite (about 89 wt%) with minor spinel (11 wt%). All experimental data converge to support the hypothesis that the anorthite is stoichiometric, and the small amounts of iron detected (1.32 wt%) is Fe3+ hosted in the structure of spinel.
机译:二次原料的回收是欧洲共同体国家废物处理的优先事项。虚拟的次要原材料是水泥-石棉的热转化产物。这项工作说明了对煅烧产物的研究,该煅烧产物是从水泥-石棉在1200°C的热转化产物开始的,然后添加到主要原料(高岭土,氢氧化铝)和硼酸中作为矿化剂而获得的。煅烧已在1200℃下进行了1小时。已经使用原位高温X射线粉末衍射监测了结晶动力学。煅烧终产物的微观表征已通过X射线微分析支持的SEM和TEM成像进行。使用Rietveld方法对粉末样品进行结构细化。将结果与包括M?ssbauer和UV-Vis光谱学在内的光谱表征进行比较。煅烧的最终产物基本上是钙长石(约89wt%)和少量尖晶石(11wt%)。所有实验数据都得到了支持,以支持以下假设:钙长石为化学计量的,并且检测到的少量铁(1.32 wt%)是尖晶石结构中的Fe3 +。

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