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Vanadium recovery from oil fly ash by leaching, precipitation and solvent extraction processes

机译:通过浸出,沉淀和溶剂萃取工艺从油粉煤灰中回收钒

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摘要

In order to reduce the environmental impact due to land disposal of oil fly ash from power plants and to valorize this waste material, the removal of vanadium was investigated using leaching processes (acidic and alkaline treatments), followed by a second step of metal recovery from leachates involving either solvent extraction or selective precipitation. Despite a lower leaching efficiency (compared to sulfuric acid), sodium hydroxide was selected for vanadium leaching since it is more selective for vanadium (versus other transition metals). Precipitation was preferred to solvent extraction for the second step in the treatment since: (a) it is more selective; enabling complete recovery of vanadate from the leachate in the form of pure ammonium vanadate; and (b) stripping of the loaded organic phase (in the solvent extraction process) was not efficient. Precipitation was performed in a two-step procedure: (a) aluminum was first precipitated at pH 8; (b) then ammonium chloride was added at pH 5 to bring about vanadium precipitation.
机译:为了减少对发电厂的粉煤灰的土地处置造成的环境影响,并使这种废料物有所值,我们采用浸出工艺(酸性和碱性处理)对钒的去除进行了研究,然后进行了第二步的金属回收涉及溶剂萃取或选择性沉淀的浸出液。尽管浸出效率较低(与硫酸相比),但还是选择了氢氧化钠进行钒浸出,因为它对钒(相对于其他过渡金属)的选择性更高。在处理的第二步中,沉淀法优于溶剂萃取法,因为:(a)选择性更高;能够以纯钒酸铵的形式从渗滤液中完全回收钒酸盐; (b)汽提负载的有机相(在溶剂萃取过程中)效率不高。沉淀过程分两步进行:(a)首先在pH 8下沉淀铝; (b)然后在pH 5下加入氯化铵以引起钒沉淀。

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