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INVESTIGATION OF IRON REMOVAL FROM REDUCED UPGRADED TITANIA SLAG USING MILD ACIDS

机译:使用温和酸性降低升级二氧化钛渣的铁去除

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Leaching characteristics of impurity removal from the Upgraded Titania Slag (UGS) using hydrochloric and boric acids has been investigated. Specifically, this study has focused on removal of iron oxides from the UGS that has been reduced by hydrogen gas and magnesium at 750°C for 5 hours. Reduced UGS is mainly composed of titanium hydride and impurities like iron oxides, silicon oxide, aluminum oxide, and magnesium oxide. The concentration of hydrochloric and boric acids and the leaching temperature have been chosen as the prime variables to identify the optimum conditions and leaching characteristics for removal of iron oxides. It was observed that under the constraint that 1 wt % of titanium hydride loss is the maximum amount tolerable, 0.1 M HCl with 1M boric acid and 90°C are the most effective parameters for iron removal from the reduced UGS. Also, the overall rate of reaction seems to follow interfacial reaction controlled kinetics. The calculated activation energy of the reaction is 73.90kJ/mol.
机译:研究了使用盐酸和硼酸从升级的二氧化钛渣(UGS)中除去杂质的浸出特征。具体地,该研究专注于从750℃下通过氢气和镁在750℃下减少5小时的UG的氧化铁。减少的UGS主要由氢化钛和氧化铁,氧化硅,氧化铝和氧化镁等氮脂肪组成。已选择盐酸和硼酸的浓度和浸出温度作为主要变量,以鉴定去除氧化铁的最佳条件和浸出特性。观察到,在1wt%的氢化钛损失的约束下,耐受的最大量,0.1M HCl,其中1M硼酸和90℃是最有效的用于从减少的UG中移除的最有效参数。而且,整体反应率似乎遵循界面反应控制的动力学。反应的计算活化能是73.90kJ / mol。

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