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Recovery of rare earth from the ion-adsorption type rare earths ore: II. Compound leaching

机译:从离子吸附型稀土矿石中回收稀土:II。复合浸出

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In order to coordinate the content and ratio of ion-exchangeable calcium and ion-exchangeable magnesium in the soil and reduce ammonia nitrogen pollution, recovery of rare earth from the ion-adsorption type rare earths ore with magnesium-ammonium, magnesium-calcium and magnesium-ammonium-calcium compound leaching agent was studied in this paper. Results showed that the leaching ability was in the order of (NH4) 2SO4 > NH4Cl > MgSO4 > MgCl2 approximate to CaCl2 under the same total cationic charge. The content of ion-exchangeable magnesium and ion-exchangeable calcium in water washing tailings could be adjusted to be suitable for the plant growth by changing the composition of leaching agent. In the magnesium-ammonium-calcium compound leaching system, when the mole ratio of magnesium-ammonium-calcium was 15:25:60, 628.57 mg.kg(-1) ion exchangeable magnesium and 77.77 mg.kg(-1) ion-exchangeable calcium in water washing tailings were achieved, while the ratio of ion-exchangeable calcium and magnesium was 8.08. Moreover, the aluminum leaching efficiency was only 492% and the rare earth leaching efficiency could be above 94%. Furthermore, the soybeans could grow normally with water washing tailings in magnesium-ammonium-calcium compound leaching system with an average plant height of 25.5 cm. The application of magnesium-ammonium-calcium compound leaching agent could significantly reduce the ammonia nitrogen pollution, maintain the soil nutrient so as to reduce the dosage of calcium-magnesium fertilizer, and may realize the ecological friendly leaching of the ion-adsorption type rare earths ore. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了协调土壤中离子交换性钙和离子交换性镁的含量和比例并减少氨氮污染,请使用镁铵,镁钙和镁从离子吸附型稀土矿石中回收稀土研究了铵-钙复合浸出剂。结果表明,在相同的总阳离子电荷下,浸出能力的顺序为(NH4)2SO4> NH4Cl> MgSO4> MgCl2近似于CaCl2。通过改变浸出剂的组成,可以调节水洗尾矿中离子交换性镁和离子交换性钙的含量,使其适合植物的生长。在镁-铵-钙复合浸出系统中,当镁-铵-钙的摩尔比为15:25:60时,可离子交换的镁为628.57 mg.kg(-1),而离子交换的为77.77 mg.kg(-1)-在水洗尾矿中实现了可交换的钙,而离子交换钙和镁的比例为8.08。而且,铝的浸出效率仅为492%,稀土的浸出效率可以达到94%以上。此外,在镁-铵-钙复合浸出系统中,大豆可以与水洗尾矿一起正常生长,平均株高为25.5厘米。镁-铵-钙复合浸出剂的应用可以显着减少氨氮污染,保持土壤养分,减少钙镁肥的用量,可以实现离子吸附型稀土的生态友好浸出。矿石。 (C)2016 Elsevier B.V.保留所有权利。

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