Separation of titanium from vanadium and iron in leach solutions of vanadium slag by solvent extraction with trioctyl tertiary amine (N235)

被引:46
作者
Qin, Zhifeng [1 ]
Zhang, Guoquan [1 ]
Luo, Dongmei [1 ]
Li, Chun [1 ]
Yue, Hairong [1 ]
Liang, Bin [1 ]
机构
[1] Sichuan Univ, Sch Chem Engn, Chengdu 610065, Sichuan, Peoples R China
基金
中国国家自然科学基金;
关键词
Titanium separation; Solvent extraction; Vanadium slag; N235; LIQUID-LIQUID-EXTRACTION; COUNTERCURRENT EXTRACTION; ACETIC-ACIDS; RECOVERY; SYSTEM; HYDROLYSIS; MOLYBDENUM; SIMULATION; MANGANESE; CHROMIUM;
D O I
10.1016/j.hydromet.2019.07.004
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The separation of titanium (Ti) (IV) in acidic leach solutions of vanadium slag by solvent extraction with trioctyl tertiary amine (N235) is proposed. Because the leach solutions contain a lot of vanadium (V) and iron (Fe) impurities, the effects of various conditions on the separation of Ti, V, and Fe were investigated. Then, the extraction mechanism and thermodynamics of the process were discussed. Upon using 35% (v/v) N235 and 65% (v/v) sulfonated kerosene as the extractant, over 82% Ti was extracted at a 2:1 organic to aqueous phase ratio (4 min at 298.15 K in a single-stage contract) with only 5% V and 10% Fe co-extracted. After the three-stage extraction, over 97% Ti, 7% V, and 18% Fe were extracted. By washing with 1.25 mol/L ammonium sulfate, most of the V and Fe impurities were removed with an insignificant amount of Ti wasted. Upon stripping with 1.0 mol/L ammonia at a 1:1 organic to aqueous phase ratio, approximately 90% Ti was recovered from the purified organic liquor. Other impurity elements such as Mn, Al, Mg, Ca and Si have little effect on the Ti separation. The possible composition of Ti-containing extract may be (R3NH)(2).TiO3, and Fourier transform infrared spectroscopy (FT-IR) analysis confirmed that the characteristic peaks representing N-Ti-O and Ti-O were in the extracted compound. The mechanism of the extraction included the association of R3NH+ from N235 with TiO32- from the acidic leach solutions. Furthermore, thermodynamic calculations showed that Ti separation from the leach solutions of vanadium slag using N235 is an exothermic, irreversible, and possible reaction at 298.15-338.15 K.
引用
收藏
页码:216 / 221
页数:6
相关论文
共 50 条
[11]   Mechanism on the Separation of Vanadium and Titanium from Vanadium Slag by Roasting with Ammonium Sulfate [J].
Zhang, Guoquan ;
Wang, Kun ;
Luo, Mingzhi .
SEPARATIONS, 2022, 9 (08)
[12]   A novel method for the separation of niobium and titanium from sulfuric acid-oxalate solutions using N235 and MIBK [J].
Sun, Linquan ;
Yu, Hongdong ;
Meng, Fancheng ;
Qi, Tao ;
Zheng, Shili ;
Peng, Yihe ;
Wang, Lina .
HYDROMETALLURGY, 2021, 205
[13]   A review on the separation of molybdenum, tungsten, and vanadium from leach liquors of diverse resources by solvent extraction [J].
Thi Hong Nguyen ;
Lee, Man Seung .
GEOSYSTEM ENGINEERING, 2016, 19 (05) :247-259
[14]   Extraction and separation of vanadium from high-acidity stone coal leaching solution using N235 coupling with hydrogen peroxide [J].
Shen, Keyu ;
Li, Fei ;
Ma, Wenyuan ;
Luo, Ruixin ;
Chen, Yimeng ;
Zhao, Hui ;
Hua, Jun ;
Yang, Zhaoxia ;
Zhuo, Ou ;
Gao, Feng .
RESULTS IN ENGINEERING, 2025, 26
[15]   Extraction kinetics of separating molybdenum(VI) over iron(III) from high acid leach solutions with mixtures of P507 and N235 [J].
Peng, Miaomiao ;
Shen, Keyu ;
Tan, Yangjing ;
Hu, Zhiyi ;
Liu, Chun ;
Liu, Zhixiong ;
Yan, Wenbin ;
Hua, Jun ;
Li, Fei .
MINERALS ENGINEERING, 2023, 201
[16]   Efficient separation of vanadium, titanium, and iron from vanadium-bearing titanomagnetite by pressurized pyrolysis of ammonium chloride-acid leaching-solvent extraction process [J].
Bian, Zhenzhong ;
Feng, Yali ;
Li, Haoran ;
Wu, Hao .
SEPARATION AND PURIFICATION TECHNOLOGY, 2021, 255
[17]   Extraction kinetics of niobium by tertiary amine N235 using Lewis cell [J].
Yang, Xiuli ;
Zhang, Junwei ;
Fang, Xihui .
HYDROMETALLURGY, 2015, 151 :56-61
[18]   Cleaner and effective extraction and separation of iron from vanadium slag by carbothermic reduction-chlorination-molten salt electrolysis [J].
Liu, Shiyuan ;
He, Xiaobo ;
Wang, Yadun ;
Wang, Lijun .
JOURNAL OF CLEANER PRODUCTION, 2021, 284
[19]   Effective separation of V(IV) and Fe(III) from sulfuric acid solution by solvent extraction with P507 and N235 [J].
Zhu, Xiaobo ;
Liu, Yue ;
Ma, Chen ;
Li, Wang .
HYDROMETALLURGY, 2024, 224
[20]   Efficient Separation and Recovery of Vanadium, Titanium, Iron, Magnesium, and Synthesizing Anhydrite from Steel Slag [J].
Ju, Jinrong ;
Feng, Yali ;
Li, Haoran ;
Xu, Chenglong ;
Yang, Yi .
MINING METALLURGY & EXPLORATION, 2022, 39 (02) :733-748