首页> 外文期刊>The Korean journal of chemical engineering >Leaching kinetics of neodymium in sulfuric acid of rare earth elements (REE) slag concentrated by pyrometallurgy from magnetite ore
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Leaching kinetics of neodymium in sulfuric acid of rare earth elements (REE) slag concentrated by pyrometallurgy from magnetite ore

机译:磁铁矿中火法浓缩稀土元素渣中硫酸中钕的浸出动力学

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摘要

We studied the leaching kinetics of recovering neodymium in sulfuric acid from the rare earth elements (REE) slag concentrated by smelting reduction from a magnetite ore containing monazite. The leaching kinetics on neodymium was conducted at a reactant concentration of 1.5 g REE slag per L of 0.3 M H_2SO_4, agitation of 750 rpm and temperature ranging from 30 to 80 ℃. Neodymium oxide included in the REE slag was completely converted into neodymium sulfate phase (Nd_2(SO_4)_3) in H_2SO_4 after the leaching of 5 h, 80 ℃. As a result, the leaching mechanism was determined in a two-stage model based on the shrinking core model with spherical particles. The first step was determined by chemical reaction, and the second step was determined by ash layer diffusion because the leaching of REEs by the first chemical reaction increases the formation of the ash layer affecting as a resistance against the leaching. By using the Arrhenius expression, the apparent activation energy of the first chemical reaction step was found to be 9 kJmol~(-1). After the first chemical reaction, leaching reaction rate was determined by the ash layer diffusion. The apparent activation energy of ash layer diffusion was found to be 32 kJmol~(-1).
机译:我们研究了通过从含有独居石的磁铁矿中进行还原还原而浓缩的稀土元素(REE)炉渣中回收硫酸中钕的浸出动力学。每升0.3 M H_2SO_4的反应物浓度为1.5 g REE渣,搅拌速度为750 rpm和温度为30到80℃时,进行钕的浸出动力学。在80℃浸出5h后,稀土矿渣中的氧化钕在H_2SO_4中完全转化为硫酸钕相(Nd_2(SO_4)_3)。结果,基于具有球形颗粒的收缩核模型,在两阶段模型中确定了浸出机理。第一步是通过化学反应确定的,而第二步是通过灰分扩散的方法确定的,因为通过第一化学反应对稀土元素的浸出会增加灰分层的形成,从而影响其对浸出的抵抗力。利用Arrhenius表达式,发现第一化学反应步骤的表观活化能为9 kJmol〜(-1)。第一次化学反应后,通过灰层扩散确定浸出反应速率。灰分扩散的表观活化能为32 kJmol〜(-1)。

著录项

  • 来源
    《The Korean journal of chemical engineering》 |2014年第10期|1766-1772|共7页
  • 作者单位

    Korea Institute of Geoscience & Mineral Resources (KIGAM), 124, Gwahang-ro, Yuseong-gu, Daejeon 305-350, Korea;

    Korea Institute of Geoscience & Mineral Resources (KIGAM), 124, Gwahang-ro, Yuseong-gu, Daejeon 305-350, Korea;

    Korea Institute of Geoscience & Mineral Resources (KIGAM), 124, Gwahang-ro, Yuseong-gu, Daejeon 305-350, Korea;

    Korea Institute of Geoscience & Mineral Resources (KIGAM), 124, Gwahang-ro, Yuseong-gu, Daejeon 305-350, Korea;

    Korea Institute of Geoscience & Mineral Resources (KIGAM), 124, Gwahang-ro, Yuseong-gu, Daejeon 305-350, Korea;

    Department of Environmental and Chemical Engineering, Seonam University, 7-111, Pyeongchon-gil, Songak, Asan 336-922, Korea;

    Department of Environmental and Chemical Engineering, Seonam University, 7-111, Pyeongchon-gil, Songak, Asan 336-922, Korea;

    Department of Environmental and Chemical Engineering, Seonam University, 7-111, Pyeongchon-gil, Songak, Asan 336-922, Korea;

    Department of Environmental and Chemical Engineering, Seonam University, 7-111, Pyeongchon-gil, Songak, Asan 336-922, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Leaching Kinetics; Magnetite Ore; Combinational Metallurgy; REE Slag; Neodymium Oxide; Neodymium Sulfate; Sulfuric Acid; Shrinking Core Model; Chemical Reaction; Ash Layer Diffusion;

    机译:浸出动力学磁铁矿;组合冶金;稀土矿渣;氧化钕;硫酸钕;硫酸;收缩核心模型;化学反应;灰层扩散;

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