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Co-combustion of pulverized coal and solid recovered fuel in an entrained flow reactor - General combustion and ash behaviour

机译:气流床反应器中煤粉和固体回收燃料的共燃烧一般燃烧和灰分行为

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摘要

Co-combustion of a bituminous coal and a solid recovered fuel (SRF) was carried out in an entrained flow reactor, and the influence of additives such as NaCl, PVC, ammonium sulphate, and kaolinite on co-combustion was investigated. The co-combustion experiments were carried out with SRF shares of 7.9 wt.%, 14.8 wt.% and 25 wt.%, respectively. The effect of additives was evaluated by maintaining the share of secondary fuel (mixture of SRF and additive) at 14.8 wt.%. The experimental results showed that the fuel burnout, NO and SO_2 emission in co-combustion of coal and SRF were decreased with increasing share of SRF. The majority of the additives inhibited the burnout, except for NaCl which seemed to have a promoting effect. The impact of additives on NO emission was mostly insignificant, except for ammonium sulphate which greatly reduced the NO emission. For SO_2 emission, it was found that all of the additives increased the S-retention in ash. Analysis of the bulk composition of fly ash from different experiments indicated that the majority of S and Cl in the fuels were released to gas phase during combustion, whereas the K and Na in the fuels were mainly retained in ash. When co-firing coal and SRF, approximately 99 wt.% of the K and Na in fly ash was present in water insoluble form such as aluminosilicates or silicates. The addition of NaCl, PVC, and ammonium sulphate generally promoted the vaporization of Na and K, resulting in an increased formation of water soluble alkalis such as alkali chlorides or sulphates. The vaporization degree of Na and K was found to be correlated during the experiments, suggesting an interaction between the vaporization of Na and 1< during pulverized fuel combustion. By collecting deposits on an air-cooled probe during the experiments, it was found that the ash deposition propensity in co-combustion was decreased with increasing share of SRF. The addition of NaCl and PVC significantly increased the ash deposition propensity, whereas the addition of ammonium sulphate or kaolinite showed a slight reducing effect. The chlorine content in the deposits generally implied a low corrosion potential during co-combustion of coal and SRF, except for the experiments with NaCl or PVC addition.
机译:在气流床反应器中进行了烟煤和固体回收燃料(SRF)的共燃烧,并研究了添加剂(如NaCl,PVC,硫酸铵和高岭石)对共燃烧的影响。以分别为7.9重量%,14.8重量%和25重量%的SRF份额进行共燃烧实验。通过将二次燃料(SRF和添加剂的混合物)的份额保持在14.8 wt。%来评估添加剂的效果。实验结果表明,随着SRF比例的增加,煤与SRF混合燃烧的燃料燃尽,NO和SO_2排放均降低。除似乎具有促进作用的NaCl外,大多数添加剂均抑制燃尽。添加剂对NO排放的影响几乎没有意义,除了硫酸铵可大大减少NO排放。对于SO 2排放,发现所有添加剂均提高了灰分中的S保留率。对来自不同实验的粉煤灰体积组成的分析表明,燃料中的大部分S和Cl在燃烧过程中释放为气相,而燃料中的K和Na主要保留在灰烬中。当将煤和SRF共烧时,粉煤灰中大约99%(重量)的K和Na以水不溶性形式存在,例如铝硅酸盐或硅酸盐。 NaCl,PVC和硫酸铵的添加通常会促进Na和K的蒸发,从而导致水溶性碱(例如碱金属氯化物或硫酸盐)的形成增加。实验发现,Na和K的汽化程度是相关的,这表明在粉状燃料燃烧过程中,Na和1 <的汽化之间存在相互作用。通过在实验过程中在风冷探头上收集沉积物,发现随着SRF份额的增加,混合燃烧中的灰分沉积倾向降低。添加氯化钠和聚氯乙烯显着增加了灰分沉积倾向,而添加硫酸铵或高岭石则显示出轻微的降低作用。除了添加NaCl或PVC的实验外,沉积物中的氯含量通常意味着在煤和SRF共同燃烧过程中腐蚀电位低。

著录项

  • 来源
    《Fuel》 |2011年第5期|p.1980-1991|共12页
  • 作者单位

    Department of Chemical and Biochemical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark;

    DONC Energy Power A/S, Kraftvxksvej 53, 7000 Fredericia, Denmark;

  • 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

    pulverized coal combustion; co-combustion; solid recovered fuel; ash deposition; waste;

    机译:煤粉燃烧;混燃;固体回收燃料;灰分沉积;废物;

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