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Mercury Speciation in Coal Combustion and Gasification Flue Gases

机译:燃煤和气化烟气中的汞形态

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摘要

Coal combustion and gasification are an anthropogenic source of mercury emission to the atmosphere. Effectively minimizing the emission and understanding the atmospheric fate and transport of mercury require knowledge of its speciation in flue gases. Hg~0(g) is the thermodynamically stable form in the highest temperature regions of combustors and gasifiers. Hg~0(g) remains as the dominant form in the relatively reducing conditions of a gasification flue gas, but with decreasing temperature in a combustion flue gas Hg~0(g) will react to form Hg~(2+) compounds. Current mercury speciation analysis results suggest that generally > 50% of the Hg~0(g) reacts with oxidants in coal combustion flue gases; results for gasification conditions are lacking. Oxidation is beneficial because Hg~(2+) compounds are generally water-soluble and are therefore more effectively captured by wet scrubber pollution control systems and are more apt to deposit locally or regionally. Conversely, Hg~0(g) is difficult to control and is likely to enter the global atmospheric cycle because of its high vapor pressure and low water solubility. The physical and chemical processes governing the interactions of mercury species with flue gas components are poorly known.
机译:煤炭燃烧和气化是人为的汞向大气排放的来源。有效地最大程度地减少排放并了解大气的命运和汞的运输需要了解其在烟气中的形态。 Hg〜0(g)是燃烧器和气化炉最高温度区域的热力学稳定形式。在气化烟道气的相对还原条件下,Hg〜0(g)仍为主要形式,但随着燃烧烟道气温度的降低,Hg〜0(g)将反应生成Hg〜(2+)化合物。当前的汞形态分析结果表明,通常> 50%的Hg〜0(g)与煤燃烧烟道气中的氧化剂发生反应。缺乏气化条件的结果。氧化是有益的,因为Hg〜(2+)化合物通常是水溶性的,因此可以被湿式洗涤塔污染控制系统更有效地捕获,并且更易于在本地或区域沉积。相反,Hg〜0(g)由于其高蒸气压和低水溶性而难以控制并且可能进入全球大气循环。控制汞物种与烟气成分相互作用的物理和化学过程知之甚少。

著录项

  • 来源
    《Environmental Science & Technology》 |1996年第8期|p.2421-2426|共6页
  • 作者单位

    Energy & Environmental Research Center, University of North Dakota, P.O. Box 9018, Grand Forks, North Dakota 58202-9018;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:09:08

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