Preparation of TiCl4 from Ilmenite Concentrates via Carbothermal Reduction and Boiling Chlorination for Different Carbon Proportions

IF 3.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2024-11-11 DOI:10.1021/acsomega.4c0761310.1021/acsomega.4c07613
Fuxing Zhu*, Peicong Zhang*, Weixing Peng, Airan Zhou, Jianxin Wang, Junfeng Li and Kehui Qiu, 
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Abstract

Low-temperature boiling chlorination is the most common approach used to achieve a clean preparation of TiCl4 from ilmenite concentrates with high contents of calcium and magnesium impurities. However, this process did not systematically investigate the impact of the Ti/C ratio of the raw materials on the chlorination efficiency of Ti, Ca, and Mg elements. Thus, the influence of the carbon allocation proportion on the carbothermal reduction and boiling chlorination process of ilmenite concentrates with high contents of calcium and magnesium impurities was investigated in this study. The results show that the reduction products of ilmenite concentrates are mainly Mg-rich Ti2O3 impurities at a low carbon proportion. However, with increasing carbon proportion, Ti2O3 is gradually reduced to TiCxO1–x, and Mg2TiO4 appears. The Ti2O3 content in the acid-insoluble matter of the reduced products decreases after acid washing, while the TiCxO1–x content increases with increasing carbon allocation proportion. With increasing carbon proportion, the chlorination rate of the acid-insoluble matter increases, and the corresponding chlorination rates of titanium, magnesium, and calcium also increase. The residual carbon produced by acid-insoluble chlorination at high carbon proportions exacerbates the chlorination of Mg and Ca impurities.

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通过不同碳比例的碳热还原和沸腾氯化从钛铁矿精矿制备 TiCl4
低温沸腾氯化法是从钙镁杂质含量较高的钛铁矿精矿中清洁制备 TiCl4 的最常用方法。然而,该工艺并未系统研究原料的 Ti/C 比例对 Ti、Ca 和 Mg 元素氯化效率的影响。因此,本研究考察了碳分配比例对钙镁杂质含量较高的钛铁矿精矿的碳热还原和沸腾氯化过程的影响。结果表明,在碳比例较低时,钛铁矿精矿的还原产物主要是富含镁的 Ti2O3 杂质。然而,随着碳比例的增加,Ti2O3 逐渐还原成 TiCxO1-x,并出现 Mg2TiO4。酸洗后,还原产物的酸不溶物中 Ti2O3 含量减少,而 TiCxO1-x 含量则随着碳分配比例的增加而增加。随着配碳比例的增加,酸不溶物的氯化率增加,相应的钛、镁和钙的氯化率也增加。高碳配比下酸不溶物氯化产生的残碳加剧了镁和钙杂质的氯化。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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Issue Publication Information Issue Editorial Masthead Issue Editorial Masthead Issue Publication Information Preparation of TiCl4 from Ilmenite Concentrates via Carbothermal Reduction and Boiling Chlorination for Different Carbon Proportions
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