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Distribution of rare earth elements in the pilot-scale processing of fly ashes derived from eastern Kentucky coals: Comparisons of the feed and processed ashes

机译:稀土元素分布在肯塔基煤层源的飞灰飞行员级处理中:饲料和加工灰烬的比较

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摘要

Beneficiated fly ash from the combustion of Central Appalachian high volatile bituminous coals was extracted with HNO3 in a pilot-scale processing plant. Several major oxides (notably CaO and SO3, but also including Fe2O3, MgO, K2O, and P2O5) and minor elements (Mn, As, Sr, Ba, and Pb) are depleted in the post-HNO3extraction spent ash. The total lanthanides, Y, and Sc concentration is reduced by about 20% in the spent ash, with Gd showing the greatest decrease. Along with Gd, Nd and Dy are also well differentiated between the feed and spent ashes, with La and Sm showing minimal partitioning. The Gd decrease is correlated with the depletion of Fe2O3. The heavy rare earth elements (REE heavier than Eu) and Y are disproportionately concentrated in the HNO3-leachate compared to the light REE. For the ashes studied, Sc did not partition between the feed and spent ashes. Pozzolanicity tests show that the compressive strength and strength activity indices of the spent ash + ordinary Portland cement (OPC) mixes are comparable to 100% OPC, indicating that the spent ashes produced in the pilot-scale runs have the potential to be sold as a Class F fly ash. Ultimately, the beneficiated ash chemistry influences the chemistry of the post-HNO3-extraction spent ash and the HNO3-leachate. A 500-ppm-REE fly ash will presumably be a more economically favorable feedstock than an ash with a significantly lesser concentration.
机译:来自中枢性高挥发性烟煤燃烧的受益的粉煤灰用HNO3在先导式加工厂中提取。在后HNO 3萃取后,在后HNO 3萃取后,几种主要氧化物(特别是CaO和SO 3,还包括Fe 2 O 3,MgO,K 2 O和P 2 O 5)和次要元素(Mn,如Sr,Ba和Pb)。在花灰中,总镧系元素和SC浓度降低了约20%,GD显示出最大的降低。随着GD,Nd和Dy也很好地分化在饲料和灰烬之间,La和Sm显示出最小的隔断。 GD减少与Fe2O3的耗尽相关。与光圈相比,重质稀土元素(比欧盟的重量比欧盟)和y重量浓缩。对于所研究的灰烬,SC没有在饲料和灰烬之间分隔。 Pozzolanicity试验表明,废灰+普通植物水泥(OPC)混合物的抗压强度和强度活性索引与100%OPC相当,表明在试验规模运行中生产的灰烬的灰烬有可能被销售为a F类飞灰。最终,受益的灰化学物质影响后HNO3-萃取的化学物质用过灰分和HNO3渗滤液。 500 ppm-ree飞灰将可能是一个比具有显着较低浓度的灰度更具经济良好的原料。

著录项

  • 来源
    《Fuel》 |2021年第1期|120562.1-120562.10|共10页
  • 作者单位

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA|Univ Kentucky Dept Earth & Environm Sci Lexington KY 40506 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA|Univ Kentucky Dept Min Engn Lexington KY 40506 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Phys Sci Inc 20 New England Business Ctr Andover MA 01810 USA;

    Phys Sci Inc 20 New England Business Ctr Andover MA 01810 USA;

    Univ Kentucky Ctr Appl Energy Res 2540 Res Pk Dr Lexington KY 40511 USA;

    Winner Water Serv 200 Clark St Sharon PA 16146 USA;

    Winner Water Serv 200 Clark St Sharon PA 16146 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lanthanides; Coal; Fly ash; Beneficiation; Mineral processing;

    机译:镧系;煤;粉煤灰;受益;矿物加工;

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