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Comparison of ion exchange and solvent extraction in recovering vanadium from sulfuric acid leach solutions of stone coal

机译:从石煤硫酸浸出液中回收钒的离子交换和溶剂萃取的比较

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摘要

Leaching of roasted stone coal with sulfuric acid results in a mixed vanadium solution containing Fe(III), Fe(II), Al(III) and Mg(II). Separation of V from synthetic sulfate solution containing these impurities has been investigated by ion exchange and solvent extraction. In ion exchange experiments, anion exchange resin ZGA414 was tested as its optimum adsorption capacity compared with D202, D453, D301FC and ZGA351 resins, and D2EHPA and TBP diluted with kerosene were employed in solvent extraction. Ion exchange tests indicated that only V(V) was loaded from the synthetic solution at pH > 1.5, while it was difficult to separate V(V) from Fe(III), which also made resin toxic. Solvent extraction experiments revealed that V(IV) had a better extraction ratio than that of V(V), while Fe(III) had a serious effect on the extraction of V(IV). The co-extraction ratio of Al(III) and Mg(II) can be decreased by controlling their concentrations lower than 10 g/L Counter-current experiments with D2EHPA presented that 99% of V(IV) was extracted from the real leach solution after reduction process, leaving most of Fe(II), Al(III) and Mg(II) in the rafflnate.
机译:焙烧石煤与硫酸的浸出导致混合钒溶液中含有Fe(III),Fe(II),Al(III)和Mg(II)。已经通过离子交换和溶剂萃取研究了从含有这些杂质的合成硫酸盐溶液中分离V的方法。在离子交换实验中,测试了阴离子交换树脂ZGA414与D202,D453,D301FC和ZGA351树脂相比的最佳吸附能力,并用煤油稀释了D2EHPA和TBP用于溶剂萃取。离子交换测试表明,在pH> 1.5的条件下,合成溶液中仅加载了V(V),而很难从Fe(III)中分离出V(V),这也使树脂具有毒性。溶剂萃取实验表明,V(IV)的萃取率高于V(V),而Fe(III)对V(IV)的萃取有严重影响。通过控制其浓度低于10 g / L,可以降低Al(III)和Mg(II)的共萃取率。用D2EHPA进行的逆流实验表明,99%的V(IV)是从实际浸出溶液中提取的还原过程后,残液中残留了大部分的Fe(II),Al(III)和Mg(II)。

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