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Compound leaching of rare earth from the ion-adsorption type rare earth ore with magnesium sulfate and ascorbic acid

机译:用硫酸镁和抗坏血酸的离子吸附型稀土矿石复合浸出稀土

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摘要

To reduce the consumption of MgSO4 and to leach the colloidal sediment phase rare earth, a MgSO4-ascorbic acid compound leaching agent was introduced to deal with the ion-adsorption type rare earth ore. The ascorbic acid was used as an assistant to enhance the leaching of the ion-exchangeable phase rare earth and to reductively leach the colloidal sediment phase rare earth, making use of its ability to coordinate with rare earth ions and its reductive properties. It was determined that the total rare earth leaching efficiency was 86.2% and the Ce partition was 5.62% at a flow rate of 0.60 mL/min, an initial pH of 2.50, a liquid to ore ratio of 1.30 mL/g, and 0.15 mol/L magnesium sulfate and 1.0 g/L ascorbic acid in the leaching agent. The concentrations of Al and Fe in the leaching liquor were 21.36 mg/L and 30.22 mg/L, respectively. Moreover, the contents of the ion-exchangeable phase and the colloidal sediment phase rare earth in the leaching tailings were 0.03 parts per thousand and 0.06 parts per thousand, respectively. The leaching efficiency of the colloidal sediment phase rare earth was approximately 57.1%. Hence, an alternative process would be provided for the leaching of rare earth from ion-adsorption type rare earth ore. The process could reduce the consumption of MgSO4 and would have great significance for environmentally-friendly extraction of ion-adsorption type rare earth ore and the improvement of resource utilization.
机译:为了减少MgSO4的消耗并浸出胶体沉积相稀土,引入了一种MgSO 4-抗坏血酸复合浸出剂以应对离子吸附型稀土矿石。抗坏血酸用作助剂以增强离子可交换相稀土的浸出,并减少胶体沉积相稀土,利用其与稀土离子的能力和其还原性能。确定总稀土浸出效率为86.2%,Ce分区以0.60ml / min的流速为5.62%,初始pH为2.50,液体比为1.30ml / g,0.15摩尔/ L中硫酸镁和1.0g / L抗坏血酸在浸出剂中。浸出液中的Al和Fe的浓度分别为21.36mg / L和30.22mg / L.此外,浸出尾矿中的离子可交换相和胶体沉积相稀土的含量分别为0.03份/份每千份0.06份。胶体沉积物相稀土的浸出效率约为57.1%。因此,将提供一种替代方法,用于从离子吸附型稀土矿石中浸出稀土。该方法可降低MgSO4的消耗,对离子吸附型稀土矿石的环保提取以及资源利用的提高具有重要意义。

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