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Retention mechanisms of ash compositions on toxic elements (Sb, Se and Pb) during fluidized bed combustion

机译:流化床燃烧过程中灰分成分对有毒元素(Sb,Se和Pb)的保留机理

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摘要

HighlightsThe redistribution behavior of toxic element was influenced by ash composition.The retention efficiency was temperature, ash composition type and amount dependence.Fe and Al-based materials were the suitable additives for Sb, Se and Pb retention.AbstractBoth laboratory simulation experiments and thermodynamic equilibrium calculations were conducted to illustrate the retention mechanisms of ash components on three toxic elements (Sb, Se and Pb). The experiment was carried out in a fluidized bed reactor with the combustion temperature in the range of 500–1000 °C. The results shown that the redistribution behavior of these toxic elements was greatly proportional to the combustion temperature, ash components and amounts. The adding of Fe, Ca, Mg, Na and K favour the retention of Sb and Se, while the presence of Si was represented against Sb and Se capture. Si, Al, Fe, Na and K have an appreciable effect on the retention of Pb, while the Pb capture by Ca and Mg was limited. The partial retention of these elements in ashes may be attributed to both physisorption and chemisorption. Among them, the formation of non-volatilized compounds may be the primary contribution for the retention of Sb, Se and Pb (except for Al). The negative Sb and Se captured by Si may be ascribed to the interactions between Si and other components which promote the retention of Sb and Se. The highly Pb retention by Si and Al in ashes may be explained by the formation of PbO·SiO2, PbO·Al2O3and PbO·Al2O3·2SiO2. Fe- and Al-based materials may be supposed to the appreciate additives for the capture potential of all the selected elements.
机译: 突出显示 灰分组成影响有毒元素的再分配行为。 < ce:list-item id =“ o0010”> 保留效率是温度,灰分组成类型和含量依赖性。 Fe和Al基材料都是保留Sb,Se和Pb的合适添加剂。 摘要 两个实验室模拟进行了实验和热力学平衡计算,以说明灰分组分在三种有毒元素(Sb,Se和Pb)上的保留机理。该实验在流化床反应器中进行,燃烧温度为500–1000C。结果表明,这些有毒元素的再分布行为与燃烧温度,灰分成分和燃烧量成正比。 Fe,Ca,Mg,Na和K的添加有利于Sb和Se的保留,而Si的存在则代表了Sb和Se的捕获。 Si,Al,Fe,Na和K对Pb的保留有显着影响,而Ca和Mg对Pb的捕获受到限制。这些元素在灰烬中的部分保留可能归因于物理吸附和化学吸附。其中,未挥发化合物的形成可能是保留Sb,Se和Pb(Al除外)的主要原因。 Si捕获的负Sb和Se可能归因于Si与其他促进Sb和Se保留的组分之间的相互作用。 Si和Al在灰烬中的高Pb保留率可以通过形成PbO·SiO 2 ,PbO·Al 2 O 3 和PbO·Al 2 O 3 ·2SiO 2 。对于所有选定元素的捕获潜能,铁基和铝基材料应被视为最好的添加剂。

著录项

  • 来源
    《Fuel》 |2018年第1期|98-105|共8页
  • 作者单位

    CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China,State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, The Chinese Academy of Sciences;

    CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China,State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, The Chinese Academy of Sciences;

    CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China;

    CAS Key Laboratory of Crust-Mantle Materials and the Environments, School of Earth and Space Sciences, University of Science and Technology of China;

    State Key Laboratory in Marine Pollution and Department of Biology and Chemistry, City University of Hong Kong;

  • 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

    Toxic element; Ash composition; Redistribution; Retention mechanism; Coal combustion;

    机译:有毒元素;灰分;再分布;滞留机理;煤燃烧;

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