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Entrained flow gasification Part 1: Gasification of glycol in an atmospheric- pressure experimental rig

机译:气流床气化法第1部分:常压实验装置中乙二醇的气化

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摘要

Three coordinated papers are presented concerning entrained flow gasification of a liquid fuel under atmospheric conditions. The work is based on a detailed mapping of process parameters inside the entrained flow gasifier and at the gasifier outlet. In this paper the experimental setup and the experimental data are reported. Mono ethylene glycol (MEG) is used as a well-defined surrogate fuel for biogenic oils. The overall performance of the reactor is evaluated by measuring the gas-phase composition at the reactor outlet; radial profiles of gas-phase composition (CO2, CO, H-2, CH4, hydrocarbons) and temperature at 300 and 680 mm distances from the burner are measured to describe the mixing and reaction pattern in the gasifier. Global and local species balances are used to derive data that are not accessible by measurement. Characteristic parameters, i.e. stoichiometry, carbon conversion and water gas shift temperature, are derived to assess consistency of the measured data. Droplet size distribution and droplet velocity at the burner nozzle are reported based on atomization test rig experiments and direct measurements in the burner near field under gasification conditions. The experiments show a free jet with a strong outer recirculation zone as core gasification pattern. The measured species concentrations and temperatures provide an insight into both the mixing and the reactions in the burner near field. The water gas shift equilibrium is reached for a temperature of 1495 K upstream of the gasifier outlet. Hydrocarbons are not completely converted due to the low temperatures near the gasifier outlet.
机译:提出了三篇有关大气条件下液体燃料的夹带流气化的论文。该工作基于气流床气化炉内部和气化炉出口处工艺参数的详细映射。本文报道了实验装置和实验数据。单乙二醇(MEG)用作生物油的定义明确的替代燃料。通过测量反应器出口处的气相组成来评估反应器的整体性能;测量气相成分(CO2,CO,H-2,CH4,碳氢化合物)的径向分布以及距燃烧器300和680毫米的温度,以描述气化炉中的混合和反应模式。全球和地方物种平衡用于导出无法通过测量获得的数据。导出特征参数,即化学计量,碳转化率和水煤气变换温度,以评估测量数据的一致性。根据雾化试验台实验和气化条件下燃烧器近场的直接测量,报告了燃烧器喷嘴处的液滴尺寸分布和液滴速度。实验表明,自由射流具有强大的外部再循环区作为堆芯气化模式。所测量的物质浓度和温度提供了对燃烧器近场中混合和反应的了解。在气化器出口上游的温度为1495 K时达到水煤气变换平衡。由于气化器出口附近的低温,烃无法完全转化。

著录项

  • 来源
    《Fuel》 |2018年第1期|306-319|共14页
  • 作者单位

    KIT, Inst Tech Chem, Gasificat Technol Dept ITC, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany;

    KIT, Inst Tech Chem, Gasificat Technol Dept ITC, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany;

    KIT, Inst Tech Chem, Gasificat Technol Dept ITC, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany;

    KIT, Inst Tech Chem, Gasificat Technol Dept ITC, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany;

    German Aerosp Ctr DLR, Inst Combust Technol, Pfaffenwaldring 38-40, D-70569 Stuttgart, Germany;

    Tech Univ Clausthal, Inst Energy & Proc Engn & Fuel Technol IEVB, Agricolastr 4, D-38678 Clausthal Zellerfeld, Germany;

    Tech Univ Clausthal, Inst Energy & Proc Engn & Fuel Technol IEVB, Agricolastr 4, D-38678 Clausthal Zellerfeld, Germany;

    KIT, Inst Tech Chem, Gasificat Technol Dept ITC, Hermann von Helmholtz Pl 1, D-76344 Eggenstein Leopoldshafen, Germany;

  • 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

    Entrained flow gasification; Liquid fuel; Experimental data; Local profiles; Spray data; Data validation;

    机译:气流床气化;液体燃料;实验数据;局部剖面;喷雾数据;数据验证;

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