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首页> 外文期刊>Fuel >Preparation of fly ash adsorbents utilizing non-thermal plasma to add S active sites for Hg~0 removal from flue gas
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Preparation of fly ash adsorbents utilizing non-thermal plasma to add S active sites for Hg~0 removal from flue gas

机译:利用非热等离子体制备粉煤灰吸附剂以增加S活性位以去除烟气中的Hg〜0

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摘要

This paper proposed a method of preparing efficient, cost-effective and eco-friendly fly ash (FA) adsorbents utilizing non-thermal plasma technology in H2S atmosphere to remove elemental mercury (Hg-0) in the coal-fired flue gas. Characterization of fly ash samples showed plasma treatment had little effect on porous structure, surface morphology and crystal structure of fly ash samples. It was found that elemental sulfur (S) particles, which were active site for Hg-0 removal, was incorporated successfully on the adsorbents' surface. The loaded S particles showed superior Hg-0 oxidation ability and low remission possibility. The Hg-0 removal experiments were conducted in a bench-scale fixed-bed reactor. After plasma treatment, the initial Hg-0 removal efficiency of modified fly ash had increased significantly compared to raw fly ash (2.8-3.6 times). The effects of treatment time (0.5-5 min), adsorption temperature (60-180 degrees C) and flue gas components on Hg-0 removal efficiency were also analyzed in the present study. The Hg-0 removal efficiency had a positive correlation with adsorption temperature. HCl, O-2 and NO in the flue gas could promote the removal of Hg-0, whereas SO2 had an adverse effect. The Hg-0 adsorption performance was better with longer treatment time largely due to more S was loaded on the fly ash surface, which was confirmed by XPS and SEM results. Additionally, the temperature-programmed decomposition (TPD) experiments further proved existing species of mercury in used modified fly ash were black HgS and red HgS. Finally, the mechanism of fly ash adsorbents modified by non-thermal plasma technology to remove Hg-0 was proposed.
机译:本文提出了一种利用非热等离子体技术在H2S气氛中去除燃煤烟气中汞(Hg-0)的高效,低成本和环保型粉煤灰(FA)吸附剂的方法。粉煤灰样品的表征表明,等离子体处理对粉煤灰样品的孔结构,表面形态和晶体结构影响很小。已经发现,作为去除Hg-0的活性部位的元素硫(S)颗粒已成功地并入吸附剂表面。负载的S颗粒显示出优异的Hg-0氧化能力和较低的释放可能性。在台式规模的固定床反应器中进行了Hg-0去除实验。经过等离子处理后,与原始粉煤灰相比,改性粉煤灰的初始Hg-0去除效率显着提高(2.8-3.6倍)。本研究还分析了处理时间(0.5-5分钟),吸附温度(60-180摄氏度)和烟气成分对Hg-0去除效率的影响。 Hg-0的去除效率与吸附温度呈正相关。烟气中的HCl,O-2和NO可以促进Hg-0的去除,而SO2则具有不利的影响。 XPS和SEM结果证实,Hg-0吸附性能随着处理时间的延长而更好,这主要是由于粉煤灰表面载有更多的S。此外,程序升温分解(TPD)实验进一步证明了使用过的改性粉煤灰中存在的汞种类为黑色HgS和红色HgS。最后提出了非热等离子体技术改性粉煤灰吸附剂去除Hg-0的机理。

著录项

  • 来源
    《Fuel 》 |2020年第15期| 116936.1-116936.7| 共7页
  • 作者

  • 作者单位

    Huazhong Univ Sci & Technol Sch Energy & Power Engn State Key Lab Coal Combust Wuhan 430074 Hubei 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

    Mercury; Non-thermal plasma modification; H2S; Fly ash;

    机译:汞;非热等离子体改性;硫化氢;粉煤灰;

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