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首页> 外文期刊>Waste and biomass valorization >A Study on the Secondary Air Injection Method of the Combustor Considering Characteristics of Solid Refuse Fuels
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A Study on the Secondary Air Injection Method of the Combustor Considering Characteristics of Solid Refuse Fuels

机译:考虑实体垃圾燃料特征的燃烧器二次注射方法研究

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摘要

This study used a numerical simulation method to design a grate-type combustion boiler for solid refuse fuel (SRF). First, proximate analysis, ultimate analysis, calorific value measurement, and combustion characteristic tests such as thermogravi-metric analysis (TGA) and differential fhermogravimetric analysis (DTG) were carried out to investigate the combustion characteristics of SRFs and municipal solid waste. To design an optimal SRF combustion steam boiler, the flow field, temperature distribution, chemical species concentration with varying secondary air injection angles and air ratios of the combustor need to be predicted. The secondary air injection angle affects fly ash generation on the grate, and the Cl compound in fly ash promotes high temperature corrosion in the superheater and heat exchanger of the boiler. The low heating values of two types of domestic waste are 13,062 kJ/kg and 14,402 kJ/kg, respectively, and that of fluff and densified SRFs are 19,552 kJ/ kg and 29,014 kJ/kg, respectively. The concentration of Cl in densified SRF is 1.80 wt% and that of domestic waste and fluff SRF is 0.50 wt% or lower. The results of the TGA and DTG analyses reveal that the SRFs and domestic wastes complete their reactions at 500 °C or lower and at 540 °C, respectively. According to the numerical calculation results, it is optimal to inject the secondary air normally from the walls to suppress fly ash at the grate in the SRF combustor. Furthermore, an air ratio of 1.87 is recommended for stable combustion and prevention of high temperature corrosion on the walls of the heat exchanger tube.
机译:本研究采用了一种数值模拟方法来设计用于固体垃圾燃料(SRF)的炉型燃烧锅炉。首先,进行近分析,终极分析,热值测量和燃烧特性测试,例如热量标准分析(TGA)和差分较大的较差异的FHERMOGIMETRIC分析(DTG),以研究SRFS和市政固体废物的燃烧特性。为了设计最佳SRF燃烧蒸汽锅炉,需要预测流场,温度分布,具有不同二次空气喷射角和燃烧器的空气比的化学物质浓度。二次空气注射角度影响炉排上的粉煤灰,粉煤灰中的CL化合物在锅炉的过热器和热交换器中促进了高温腐蚀。两种类型的家用废物的低热量值分别为13,062 kJ / kg和14,402 kJ / kg,绒毛和致密的srfs分别为19,552 kJ / kg和29,014 kJ / kg。致密化SRF中CL的浓度为1.80wt%,国内废物和绒毛SRF的浓度为0.50wt%或更低。 TGA和DTG分析的结果表明,SRF和家用废物分别在500℃或更低和540°C下完成它们的反应。根据数值计算结果,最佳地从壁中注入二次空气以抑制SRF燃烧器中的炉排处的粉煤灰。此外,建议使用1.87的空气比,以稳定燃烧和预防热交换器管壁上的高温腐蚀。

著录项

  • 来源
    《Waste and biomass valorization》 |2020年第8期|4535-4550|共16页
  • 作者单位

    Department of Civil & Environmental Engineering Hanbat National University Daejeon 34158 South Korea;

    Department of Civil & Environmental Engineering Hanbat National University Daejeon 34158 South Korea;

    Department of Civil & Environmental Engineering Hanbat National University Daejeon 34158 South Korea;

    Department of Civil & Environmental Engineering Hanbat National University Daejeon 34158 South Korea;

    Department of Advanced Materials Engineering Hanbat National University Daejeon 34158 South Korea;

    Department of Civil & Environmental Engineering Hanbat National University Daejeon 34158 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Combustion steam boiler; Combustible waste; Numerical simulation; Solid refuse fuel (SRF); Secondary air;

    机译:燃烧蒸汽锅炉;可燃浪费;数值模拟;固体垃圾燃料(SRF);二次空气;

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