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首页> 外文期刊>CERAMICS INTERNATIONAL >Influence of iron content on the color of the C_3A-Fe_2O_3 system synthesized under different conditions of temperature, atmosphere and cooling
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Influence of iron content on the color of the C_3A-Fe_2O_3 system synthesized under different conditions of temperature, atmosphere and cooling

机译:铁含量对温度,气氛和冷却条件下合成的C_3A-Fe_2O_3体系颜色的影响

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The 3CaO-Al_2O_3-Fe_2O_3 (C_3A-Fe_2O_3) system is important for the production of white clinker. In the present study this system was examined from the perspective of improving the sustainability of the production process. Microstructural evaluation was employed to explain the changes in color caused by variation of: iron content;;temperature;;type of atmosphere;;and cooling conditions. It was found that color was more significantly affected by the iron content, temperature and type of atmosphere than by the type of cooling used. It was also observed that the utility of iron-rich raw materials could be maximized by understanding and enhancing the solubility of Fe_2O_3 in C_3A. It was found that a 2 wt.% Fe_2O_3 solid solution was stable only under kiln open to atmospheric conditions and remained clear at temperatures up to 1370 °C. However, the same 2 wt.% Fe_2O_3 solid solution suffered a significant change in color when the temperature rose to 1400 °C. Moessbauer spectroscopy showed that the oxidation state of Fe was Fe~(3+), which did not change between 1370 and 1400 °C;;however, a structural change in the C_3A-Fe_2O_3 solid solution was detected as a result of the alteration of the thermal treatment. The distinction between the structures at these two temperatures was that at 1370 °C, all of the Fe~(3+) had a tetrahedral coordination, while at 1400 °C, 19 wt.% of the Fe~(3+) appeared in octahedral sites, a result that was corroborated by Rietveld analysis.
机译:3CaO-Al_2O_3-Fe_2O_3(C_3A-Fe_2O_3)系统对于生产白色熟料很重要。在本研究中,从改善生产过程的可持续性的角度检查了该系统。用微结构评价来解释由铁含量,温度,气氛类型和冷却条件的变化引起的颜色变化。已经发现,颜色受铁含量,温度和气氛类型的影响远大于所使用的冷却类型的影响。还观察到,通过了解和增强Fe_2O_3在C_3A中的溶解度,可以最大程度地提高富铁原料的利用率。发现2wt。%的Fe_2O_3固溶体仅在开放到大气条件的窑中是稳定的,并且在高达1370℃的温度下保持澄清。但是,当温度升至1400°C时,相同的2 wt。%Fe_2O_3固溶体的颜色发生了显着变化。 Moessbauer光谱表明Fe的氧化态为Fe〜(3+),在1370〜1400°C范围内没有变化;但是,由于C_3A-Fe_2O_3固溶体的变化,检测到C_3A-Fe_2O_3固溶体的结构变化。热处理。在这两个温度下,结构的区别是:在1370°C时,所有的Fe〜(3+)都具有四面体配位,而在1400°C时,有19 wt。%的Fe〜(3+)出现在金属中。八面体位点,Rietveld分析证实了这一结果。

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