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首页> 外文期刊>Energy & fuels >Microwave-Assisted Pretreatment of Coal Fly Ash for Enrichment and Enhanced Extraction of Rare-Earth Elements
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Microwave-Assisted Pretreatment of Coal Fly Ash for Enrichment and Enhanced Extraction of Rare-Earth Elements

机译:微波辅助粉煤灰的预处理以富集和增强萃取稀土元素

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摘要

A microwave-assisted pretreatment (beneficiation) technique was developed as an approach to improve the enrichment and extraction of rare-earth elements from coal fly ash solid waste. The mixtures of coal fly ash and carbon lampblack were pretreated under 2 kW microwave irradiation within argon for 2-10 min. Ultrahigh heating rates, high temperatures (820-1350 degrees C), and drastic temperature changes resulted in both compositional and microstructural changes. Silicon carbide, alumina, and iron silicides were formed due to carbothermal reduction of the mullite and quartz phases of the coal fly ash at high temperatures. Microstructure defects within the coal fly ash particles, which included large cracks and macropores, were produced during the short irradiation event. More drastic changes were observed with increasing irradiation time and carbon lampblack content, which later enhanced the penetration of acid leaching solution into the aluminosilicate fly ash particles. The leaching efficiency of the total rare-earth elements thereby increased from 21.7 to 54.9-83.4%. The leaching efficiency of the most critical and abundant rare-earth elements (Nd, Y, Dy, Eu, Tb, Ce, and La) reached nearly 93%. The developed technique is proven to be highly efficient and cost-effective for the recovery of critical rare-earth elements from such a difficult to process solid waste form.
机译:微波辅助预处理(选矿)技术被开发出来,作为一种改善粉煤灰固体废物中稀土元素的富集和提取的方法。粉煤灰和碳油烟灰的混合物在氩气中于2 kW微波辐射下预处理2-10分钟。超高的加热速率,高温(820-1350摄氏度)和剧烈的温度变化导致成分和微观结构的变化。碳化硅,氧化铝和硅化铁是由于煤粉煤灰在高温下的莫来石和石英相经过碳热还原而形成的。粉煤灰颗粒内的微观结构缺陷(包括大裂纹和大孔)在短时间照射过程中产生。随着辐照时间和碳黑烟含量的增加,观察到了更剧烈的变化,这随后增强了酸浸溶液对铝硅酸盐粉煤灰颗粒的渗透。因此,全部稀土元素的浸出效率从21.7%提高到54.9-83.4%。最关键和最丰富的稀土元素(Nd,Y,Dy,Eu,Tb,Ce和La)的浸出效率达到近93%。事实证明,从如此困难的固体废物中回收关键稀土元素,开发的技术是高效且具有成本效益的。

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  • 来源
    《Energy & fuels》 |2019年第11期|12083-12095|共13页
  • 作者单位

    West Virginia Univ Dept Mech & Aerosp Engn 1306 Evansdale Dr Morgantown WV 26506 USA;

    West Virginia Univ Dept Chem Engn 1306 Evansdale Dr Morgantown WV 26506 USA;

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd Morgantown WV 26507 USA;

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd Morgantown WV 26507 USA|Leidos 3610 Collins Ferry Rd Morgantown WV 26507 USA;

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