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Enhancement of Rutile Formation by ZrO2 Addition in Ti-bearing Blast Furnace Slags

机译:含钛高炉渣中ZrO 2 添加对金红石形成的促进作用

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Enhancement of rutile crystallization in Ti-bearing Blast Furnace (Ti-BF) Slag caused by various ZrO_(2) additions was clarified by Single Hot Thermocouple Technique (SHTT). Time-temperature-transformation (TTT) curves were obtained to analyze the variation trend of crystallization behavior. The results showed that the incubation time of primary crystal, i.e. , rutile, at high temperature was first prolonged with increasing ZrO_(2) addition from 0 to 3 wt.%, and then visibly shortened with further addition of ZrO_(2) up to 5 wt.%. However, final amount of crystal precipitated was monotonously enhanced by the increasing ZrO_(2) addition. Meanwhile, Fourier Transform Infrared spectroscopy (FTIR) test was applied to investigate structure of the slag and it was found that degree of polymerization (DOP) for the slag was enhanced and the structural group related to Zr–O–Zr group became more pronounced with increasing ZrO_(2) concentration, which agreed well with the variation trend of the crystallization behaviors of slags. These results have highlighted that addition of ZrO_(2) could enhance rutile crystallization, which is of great importance for potentially extracting Ti element from the slag.
机译:通过单热热电偶技术(SHTT)阐明了各种添加ZrO_(2)引起的含钛高炉渣(Ti-BF)中金红石结晶的增强。获得了时间-温度-转变(TTT)曲线,以分析结晶行为的变化趋势。结果表明,初级晶体的保温时间为。首先,通过增加ZrO_(2)的添加量从0到3 wt。%延长高温下的金红石型,然后通过进一步添加ZrO_(2)直到5 wt。%来明显缩短。然而,通过增加ZrO_(2)的添加,单晶增加了最终沉淀出的晶体数量。同时,通过傅里叶变换红外光谱(FTIR)试验研究了炉渣的结构,发现炉渣的聚合度(DOP)增强,并且与Zr–O–Zr基团有关的结构基团更加明显。 ZrO_(2)浓度的增加,与矿渣结晶行为的变化趋势相吻合。这些结果表明,添加ZrO_(2)可以增强金红石的结晶,这对于潜在地从炉渣中提取Ti元素具有重要意义。

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