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首页> 外文期刊>Energy & fuels >Applicability of Fuel Indexes for Small-Scale Biomass Combustion Technologies, Part 1: Slag Formation
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Applicability of Fuel Indexes for Small-Scale Biomass Combustion Technologies, Part 1: Slag Formation

机译:小型生物质燃烧技术燃料指标的适用性,第1部分:炉渣形成

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摘要

Several methods are available to predict the combustion behavior of fuels. Fuel indexes have been developed either for specific fuel types (e.g., coal, biomass) or their utilization in combustion technology (fluidized bed, grate systems). This study deals with the validation of fuel indexes for biomass fuels utilized in small-scale appliances for residential heating. Laboratory analysis data of 33 biomass-derived fuels were used for determining indexes for predicting slag formation tendencies. Indexes were selected that have been reported and previously applied in the literature. They vary in terms of their derivation: ratio or concentration of specific components that are relevant for ash chemistry, temperature-based indexes, and empirical correlations. Combustion tests with 9 different small-scale appliances were conducted to gain experimental data. The appliances had a nominal load between 6 kW(th) and 140 kW(th). After each experiment, the fraction of fuel ash that formed slag was quantified. Because of several boiler-fuel combinations in total, data from 90 combustion experiments were available for evaluation. The comparison of the quantified slag with the calculated slagging indexes showed that the applicability was strongly dependent on the (chemical) background of the respective index. Also, the fuel composition (e.g., fuels rich in calcium, silicon or phosphorus) plays an important role. Thus, available indexes are not applicable without restrictions and require a closer look on fuel properties and possible ash transformation mechanisms. Overall, the comparison of the fuel indexes with practical data (slag formation) also indicated an influence of the combustion technologies and operation conditions. The comparison of indexes that predict particulate matter and nitrogen oxide emissions with data measured during combustion experiments was evaluated as well. These results will be described in the second part of the present work
机译:有几种方法可用来预测燃料的燃烧行为。已经针对特定的燃料类型(例如煤,生物质)或其在燃烧技术中的利用(流化床,炉排系统)开发了燃料指数。这项研究涉及用于住宅供暖的小型设备中使用的生物质燃料的燃料指标的验证。 33种生物质衍生燃料的实验室分析数据用于确定预测炉渣形成趋势的指标。选择已被报道并先前应用于文献中的索引。它们的派生方式各不相同:与灰分化学,基于温度的指数和经验相关性相关的特定组分的比例或浓度。进行了9种不同小型设备的燃烧测试,以获取实验数据。这些设备的额定负载在6 kW(th)和140 kW(th)之间。在每个实验之后,对形成炉渣的燃料灰分进行定量。由于总共有几种锅炉燃料组合,因此可以评估90个燃烧实验的数据。定量炉渣与计算出的排渣指标的比较表明,适用性在很大程度上取决于各个指标的(化学)背景。另外,燃料组合物(例如富含钙,硅或磷的燃料)也起重要作用。因此,可用指标没有限制就不适用,并且需要仔细查看燃料特性和可能的​​灰分转化机理。总体而言,将燃料指数与实际数据进行比较(形成炉渣)也表明了燃烧技术和运行条件的影响。还评估了预测颗粒物和氮氧化物排放的指标与燃烧实验期间测得的数据的比较。这些结果将在本工作的第二部分中描述

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  • 来源
    《Energy & fuels》 |2019年第11期|10969-10977|共9页
  • 作者单位

    BIOENERGY2020 GmbH Gewerbepk Haag 3 A-3250 Wieselburg Austria|Univ Nat Resources & Life Sci Dept Mat Sci & Proc Engn Gregor Mendel Str 33 A-1190 Vienna Austria;

    BIOENERGY2020 GmbH Gewerbepk Haag 3 A-3250 Wieselburg Austria;

    Ctr Excellence Renewable Resources TFZ Dept Solid Biofuels Technol & Support Ctr D-94315 Straubing Germany;

    Univ Nat Resources & Life Sci Dept Mat Sci & Proc Engn Gregor Mendel Str 33 A-1190 Vienna Austria;

  • 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
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