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Determination of the optimum conditions for the precipitation of REEs by oxalic acid from chloride solution

机译:从氯化物溶液中含草酸沉淀REES沉淀的最佳条件

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Today, the production of rare earth elements is on the rise due to a variety of strategic applications. The most important applications of rare-earth metals are in the fields of catalysts (60 %), electronics and magnetism (10 %), ceramics and glass (10 %), metalworking (10 %) and others (10 %). Esfordi phosphate ore is composed of rare earth elements including cerium (Ce), neodymium (Nd), lantha-nide (La), samarium (Sm), yttrium (Y) and praseodymium (Pr). In this paper, we tried to optimize the precipitation of REEs in the presence of chloride environment using oxalic acid. The chloride solution was obtained by alkali digestion process, leaching with hydrochloric acid and neutralization of iron. The optimization experiments were performed using four parameters of oxalic acid concentration, stirring speed, temperature and time in four levels by classical method. The maximum precipitation of rare earth elements was found for oxalic acid concentration: four times stoichiometric, stirrer speed: 700 rpm, temperature: 60 ° C and time: 60 minutes. In optimum conditions, the precipitation efficiency of Ce, Nd, La, Sm, Y and Pr was 99.62 %, 99.52 %, 97.79 %, 96.77 %, 98.41 % and 90.74 %, respectively. The highest grade of rare earth elements in the produced oxalate concentrate was 36.45 %. The grade of Ce, Nd, La, Sm, Y and Pr in the oxalate concentrate was 18.8 %, 7.48 %, 4.87 %, 1.11 %, 2.26 % and 1.93 %, respectively.
机译:如今,稀土的生产要素之一是在上升,由于各种各样的战略应用。稀土金属的最重要的应用是在催化剂(60%),电子和磁性(10%),陶瓷和玻璃(10%),金属加工(10%),其他(10%)的领域。 Esfordi磷酸盐矿是由稀土元素包括铈(Ce),钕(Nd),lantha-德纳(LA),钐(Sm),钇(Y)和镨(Pr)的。在本文中,我们试图优化稀土元素的沉淀,使用草酸氯的环境的存在。用碱消化方法获得的氯溶液,用盐酸和铁的中和浸出。优化实验使用草酸浓度的四个参数,搅拌速度,温度和时间在四个级别通过经典方法进行。稀土类元素的最大沉淀被发现的草酸浓度:四次化学计量的,搅拌器速度:700转,温度:60℃,时间:60分钟。在最佳条件下,铈,钕,镧,钐,Y和Pr中的析出效率分别为99.62%,99.52%,97.79%,96.77%,98.41%和90.74%。在所产生的浓缩的草酸稀土元素的最高等级为36.45%。铈,钕,镧,钐,Y和Pr中的草酸盐浓缩物中的等级为18.8%,7.48%,4.87%,1.11%,2.26%和1.93%之间。

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