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Formation of Fine Particulate Matter in a Domestic Pellet-Fired Boiler

机译:家用颗粒燃烧锅炉中细颗粒物的形成

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摘要

This study concentrates on the formation of fine participate matter (PM) in a domestic pellet-fired boiler and includes a detailed characterization of the combustion process inside the combustion chamber of the boiler. Measurements of local mean gas temperatures, major gas species concentrations, and PM concentrations and size distributions are reported for a representative boiler operating condition. In addition, a number of selected PM samples were also morphologically and chemically characterized. The results revealed that (i) most particles present aerodynamic diameters below 1μm, regardless of the measurement location, and the mass size distributions peak in the size range of 50-130 run; (ii) early in the flame, the PM size distributions present a bimodal size distribution, but this attribute vanishes as the final stages of the combustion process are approached; (iii) soot particles are rapidly formed early in the combustion process, but these carbon-rich particles also oxidize rapidly in the near burner region; (iv) the aerodynamic diameter corresponding to the maximum amount of particles increases slightly from the fuel bed until ≈4/5 of the combustion chamber height; (v) for a given measurement location and particle sizes below 1 μm, the PM chemical composition varies marginally among size ranges, indicating that the existing chemical compounds tend to form different size aggregates of similar composition; (vi) the element mass concentration varies according to the measurement location; early in the combustion process, the PM is dominated by carbon, with smaller amounts of O and Si, while in the final stages of the combustion process, the PM composition is dominated by inorganic material; and (vii) large fractions of the alkali metals are present as chlorides in the fine PM, and small fractions of the alkalis are present as sulfates.
机译:这项研究集中于家用颗粒燃料锅炉中细颗粒物的形成,并详细描述了锅炉燃烧室内部的燃烧过程。报告了代表性锅炉运行条件下的局部平均气体温度,主要气体种类浓度以及PM浓度和尺寸分布的测量值。此外,还对一些选定的PM样品进行了形态和化学表征。结果表明:(i)不论测量位置如何,大多数颗粒的空气动力学直径均低于1μm,并且质量尺寸分布在50-130 run的尺寸范围内达到峰值; (ii)在火焰早期,PM尺寸分布呈现双峰尺寸分布,但是随着接近燃烧过程的最后阶段,该属性消失了; (iii)烟尘颗粒在燃烧过程的早期迅速形成,但这些富含碳的颗粒在燃烧器附近也迅速氧化; (iv)从燃料床直到燃烧室高度的约4/5为止,与最大颗粒量相对应的空气动力学直径略有增加; (v)对于给定的测量位置和小于1μm的粒径,PM的化学成分在尺寸范围之间略有变化,表明现有的化合物往往会形成具有相似成分的不同尺寸的聚集体; (vi)元素质量浓度根据测量位置而变化;在燃烧过程的早期,PM以碳为主,而O和Si的含量较少,而在燃烧过程的最后阶段,PM的组成为无机材料。 (vii)大部分的碱金属以氯化物的形式存在于细颗粒粉末中,而小部分的碱金属以硫酸盐的形式存在。

著录项

  • 来源
    《Energy & fuels》 |2013年第janaafeba期|1081-1092|共12页
  • 作者

    U. Fernandes; M. Costa;

  • 作者单位

    Mechanical Engineering Department, Instituto Superior Tecnico, Technical University of Lisbon, Avenida Rovisco Pais,1049-001 Lisbon, Portugal;

    Mechanical Engineering Department, Instituto Superior Tecnico, Technical University of Lisbon, Avenida Rovisco Pais,1049-001 Lisbon, Portugal;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:40:49

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