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Desulfurization of high sulfur fine coal using a novel combined beneficiation process

机译:采用新型联合选矿工艺对高硫细煤进行脱硫

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摘要

The throughput of high-ash and high-sulfur fine-grain coal (0-6 mm) increases year by year. The serious problem of direct combustion is the formation of acid rain and smog. Therefore, the pre-combustion desulfurization and ash reduction can reduce environmental pollution. A combined process of dry separation and microwave desulfurization for the cleaning of the 0-6mm fine coal was applied. The effects of gas velocity, vibration amplitude and frequency on the removal of inorganic sulfur were analyzed systematically. At the same time, the effects of additives, microwave power, irradiation time and temperature on the removal of organic sulfur in the microwave desulfurization reactor were investigated. The results show that the compound dry separator can sorts the 0-6mm fine coal under the optimal operating parameters (A=3 mm, f=22.5 Hz, v=0.68 m(3)/s). After the separation, the yield, ash and sulfur contents of the pre-separated clean coal is 63.6%, 12.4% and 4.12%, respectively. The compound dry separator can effectively remove mineral impurities such as inorganic sulfur. The ash is reduced apparently. However, the organic sulphide cannot be removed by the separator. As the pre-separated clean coal has high sulfur content that is mainly organic sulfide, the microwave desulfurization reactor is used to remove this part of organic sulfur. The results show that the NaOH solution additive is more beneficial to improve the microwave desulfurization. The desulfurization rate increase with the increasing of temperature and radiation time and the irradiation time has a more obvious effect. After the microwave desulfurization the yield, sulfur and ash contents of the clean coal are 60.8%, 0.98% and 9.74%, respectively. As a result, the microwave desulfurization process can effectively remove the organic sulfur compounds.
机译:高灰高硫细煤(0-6 mm)的吞吐量逐年增加。直接燃烧的严重问题是酸雨和烟雾的形成。因此,燃烧前的脱硫和减少灰分可以减少环境污染。采用干法分离和微波脱硫相结合的方法,对0-6mm的细煤进行了净化。系统分析了气体速度,振动幅度和频率对去除无机硫的影响。同时,研究了添加剂,微波功率,辐照时间和温度对微波脱硫反应器中有机硫去除的影响。结果表明,在最佳运行参数(A = 3 mm,f = 22.5 Hz,v = 0.68 m(3)/ s)下,复合干式分离器可以分选0-6mm细煤。分离后,预分离的清洁煤的产率,灰分和硫含量分别为63.6%,12.4%和4.12%。复合干式分离器可有效去除无机硫等矿物杂质。灰分明显减少。但是,有机硫化物不能通过分离器除去。由于预分离的清洁煤的硫含量高,主要是有机硫化物,因此可以使用微波脱硫反应器除去这部分有机硫。结果表明,NaOH溶液添加剂对改善微波脱硫效果更好。脱硫率随温度和辐射时间的增加而增加,辐照时间的影响更为明显。微波脱硫后,精煤的收率,硫和灰分分别为60.8%,0.98%和9.74%。结果,微波脱硫过程可以有效地去除有机硫化合物。

著录项

  • 来源
    《Fuel》 |2019年第15期|115603.1-115603.10|共10页
  • 作者单位

    North China Univ Sci & Technol, Coll Min Engn, Tangshan 063210, Peoples R China;

    China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou 221008, Jiangsu, Peoples R China;

    North China Univ Sci & Technol, Coll Min Engn, Tangshan 063210, Peoples R China;

  • 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

    Compound dry separation; Microwave desulfurization; Combined process; Organic sulfide; Fine coal;

    机译:复合干燥分离;微波脱硫;组合过程;有机硫化物;细煤;

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