Solvent extraction of titanium(IV) from orthophosphoric acid media using Aliquat-336/kerosene and stripping with nitric acid

IF 4.8 2区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Hydrometallurgy Pub Date : 2024-09-14 DOI:10.1016/j.hydromet.2024.106403
Ahmed A. Galhoum, Basma T. Mohamed, Shaimaa S. Abdulmoteleb, Said I. Mohamady, Nagwa I. Falila
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Abstract

Titanium extraction from acidic solutions was investigated using Aliquat-336, considering factors like acid type and concentration for leaching, diluent type for solvent extraction, equilibration time, extractant concentration, phase ratio, and temperature. Kerosene exhibited superior performance as an aliphatic diluent for Aliquat-336 compared to other utilized diluents. The extraction efficiency was inversely proportional to the dielectric constant of the diluents. The quantitative Ti(IV) extraction efficiency from phosphoric acid (6 M H3PO4) leach liquor of ilmenite and rutile achived 98 % at room temperature (298 K) in 10 min after mixing with 0.1 M Aliquat-336 dissolved in kerosene at a phase volume ratio of 1:1 (Aq:Org). The exothermic extraction process occurred spontaneously. The proposed extraction mechanism using Aliquat-336/kerosene involves ion-pair association of the extractant with a Ti(IV) complex, confirmed by FTIR spectroscopy. The Ti(IV) ions were effectively stripped using HNO3 (3 M) with an aqueous:organic phase volume ratio of 1:1 at 25 °C after a contact time of 10 min in each step. The Aliquat-336/kerosene efficiently tested for Ti(IV) recovery from acidic Abu-Ghalaga ilmenite and rutile leachate. The findings indicate that, the phosphate medium is highly efficient in extracting Ti(IV), even with low concentration of Aliquat-336 in kerosene, especially in comparison to the impurities such as Fe, Cr, and Al. The EDX, XRD, and wet chemical analyses of the final product after the hydrolysis of stripped Ti(IV) from samples originating from the Abu-Ghalaga area and rutile samples, confirmed the formation of high-purity TiO2 (predominantly anatase phase). The SEM results showed particles with a regularly spherical structure and uniform size.

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用 Aliquat-336/kerosene 溶剂萃取正磷酸介质中的钛(IV)并用硝酸汽提
使用 Aliquat-336 对酸性溶液中的钛萃取进行了研究,同时考虑了各种因素,如用于浸出的酸类型和浓度、用于溶剂萃取的稀释剂类型、平衡时间、萃取剂浓度、相比和温度。与其他稀释剂相比,煤油作为脂肪族稀释剂在 Aliquat-336 中表现出更优越的性能。萃取效率与稀释剂的介电常数成反比。在室温(298 K)下,以 1:1 的相体积比(Aq:Org)与溶解在煤油中的 0.1 M Aliquat-336 混合 10 分钟后,从钛铁矿和金红石的磷酸(6 M H3PO4)浸出液中定量萃取钛(IV)的效率达到 98%。放热萃取过程是自发进行的。使用 Aliquat-336/ 煤油的拟议萃取机制涉及萃取剂与 Ti(IV) 复合物的离子对结合,这一点已通过傅立叶变换红外光谱得到证实。在 25 °C、水相与有机相体积比为 1:1 的条件下,使用 HNO3(3 M)萃取钛(IV)离子,每步接触时间为 10 分钟。对 Aliquat-336/kerosene 从酸性 Abu-Ghalaga 钛铁矿和金红石浸出液中回收钛(IV)进行了有效测试。研究结果表明,即使煤油中的 Aliquat-336 浓度较低,磷酸盐介质提取钛(IV)的效率也很高,尤其是与铁、铬和铝等杂质相比。对来自 Abu-Ghalaga 地区的样品和金红石样品中的剥离 Ti(IV)水解后的最终产品进行的 EDX、XRD 和湿化学分析证实,形成了高纯度的 TiO2(主要是锐钛矿相)。扫描电镜结果显示,颗粒具有规则的球形结构和均匀的尺寸。
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来源期刊
Hydrometallurgy
Hydrometallurgy 工程技术-冶金工程
CiteScore
9.50
自引率
6.40%
发文量
144
审稿时长
3.4 months
期刊介绍: Hydrometallurgy aims to compile studies on novel processes, process design, chemistry, modelling, control, economics and interfaces between unit operations, and to provide a forum for discussions on case histories and operational difficulties. Topics covered include: leaching of metal values by chemical reagents or bacterial action at ambient or elevated pressures and temperatures; separation of solids from leach liquors; removal of impurities and recovery of metal values by precipitation, ion exchange, solvent extraction, gaseous reduction, cementation, electro-winning and electro-refining; pre-treatment of ores by roasting or chemical treatments such as halogenation or reduction; recycling of reagents and treatment of effluents.
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