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The Effects of Sodium Ions, Phosphorus, and Silicon on the Eco-Friendly Process of Vanadium Precipitation by Hydrothermal Hydrogen Reduction

机译:钠离子,磷和硅对水热还原氢气沉淀钒的生态友好过程的影响

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The effects of sodium ions, phosphorus, and silicon on the eco-friendly process of vanadium precipitation by hydrothermal hydrogen reduction were investigated to establish the suitable concentrated solution system for this eco-friendly process. The results showed that sodium ions had no negative effects on the vanadium precipitation process. Phosphorus can reduce vanadate ion activity, and results in the decrease of vanadium precipitation percentage from 99.5% to 61.3%, as the phosphorus concentration in the feed solution increased from 0.05 g/L to 3 g/L. As a result, the aimed products of V 2 O 3 were hard to be obtained, and the purity of the precipitates was lowered. Silicon can absorb in the form of H 3 Si 3 O 7 on the surface of the precipitates, thus it was difficult for H (activity hydrogen atom) to react with the intermediate vanadium-bearing precipitates. As a result, the vanadium precipitation percentage decreased from 99.5% to 86.2% as the silicon concentration in the feed solution increased from 0.1 g/L to 3 g/L. The aimed products of V 2 O 3 were not easy to be obtained, and only the intermediate vanadium-bearing precipitates containing sodium ions were obtained. The upper limits of the concentrations of phosphorus and silicon in the feed V (V) solution were ascertained as 0.5 g/L and 0.1 g/L, respectively. As the concentrations of phosphorus and silicon in the purified alkaline-concentrated V (V) solution extracted from vanadium-bearing shale are usually below the upper limits of the concentrations, the eco-friendly process of vanadium precipitation by hydrothermal hydrogen reduction has a great application prospect in the field of vanadium extraction from vanadium-bearing shale.
机译:研究了钠离子,磷和硅对水热氢还原法钒沉淀的生态友好过程的影响,从而建立了适合该生态友好过程的浓缩溶液系统。结果表明,钠离子对钒的沉淀过程没有负面影响。磷可以降低钒酸盐离子的活性,并且随着进料溶液中磷的浓度从0.05 g / L增加到3 g / L,钒的沉淀百分比从99.5%降低到61.3%。结果,难以获得目标产物V 2 O 3,并且沉淀物的纯度降低。硅能够以H 3 Si 3 O 7的形式吸收在沉淀物的表面上,因此H(活性氢原子)难以与中间含钒沉淀物反应。结果,随着进料溶液中硅浓度从0.1g / L增加到3g / L,钒的沉淀百分比从99.5%降低到86.2%。 V 2 O 3的目标产物不易获得,仅获得含有钠离子的中间含钒沉淀物。确定进料V(V)溶液中磷和硅的浓度上限分别为0.5 g / L和0.1 g / L。由于从含钒页岩中提取的纯碱浓缩V(V)溶液中的磷和硅的浓度通常低于该浓度的上限,因此通过水热氢还原法进行钒沉淀的生态友好过程具有很大的应用前景从含钒页岩中提取钒的前景

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