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Influence of pressure, temperature and steam on tar and gas in allothermal fluidized bed gasification

机译:压力,温度和蒸汽对异热流化床气化中焦油和气体的影响

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摘要

Gasification is considered to be a promising way to use biomass with high efficiency in combined heat and power production, for the production of second generation biofuels and in the chemical industry. Especially allothermal fluidized bed steam gasification produces a medium calorific, nitrogen free gas suitable for a variety of downstream processes. In general the raw product gas has to be cleaned from condensable hydrocarbons (tar) and conditioned (e.g. adjustment of the H_2/CO-ratio) before downstream use. The operating conditions of the gasification reactor have a large impact on the quality of the product gas. Hence first steps to a product gas low in tar content can be undertaken directly in the reactor. In this study the capability of influencing the tar content and gas composition by changing temperature (750-840℃), steam to biomass (S/B) ratio (0.8-1.2) and pressure (0.1-0.25 MPa) in an allothermal bubbling fluidized bed steam gasifier is investigated. It is found that rising temperature reduces the total tar content and affects especially heterocyclic and light aromatic compounds. At atmospheric pressure the naphthalene content increases slightly with increasing temperature in contrary to pressurized gasification where naphthalene decreases significantly with increasing temperature. An increase in the S/B ratio leads to a decreasing total tar content, this tar reduction according to a higher steam content is higher at higher temperatures. Increasing pressure leads to increasing total tar content mainly due to naphthalene, the effect is most distinct for low S/B ratios.
机译:气化被认为是在热电联产,第二代生物燃料生产和化学工业中高效利用生物质的一种有前途的方式。尤其是同质流化床蒸汽气化可产生适合各种下游工艺的中等热量的无氮气体。通常,在下游使用之前,必须从可冷凝的碳氢化合物(焦油)中清洁粗产物气体并进行调节(例如,调整H_2 / CO比)。气化反应器的操作条件对产物气体的质量有很大的影响。因此,可以在反应器中直接进行焦油含量低的产物气的第一步。本研究通过改变温度(750-840℃),蒸汽与生物质(S / B)比(0.8-1.2)和压力(0.1-0.25 MPa)来改变焦油沸腾流化床中焦油含量和气体组成的能力。研究了床蒸汽气化炉。发现升高的温度降低了总焦油含量并特别影响杂环和轻质芳族化合物。在大气压下,萘含量随温度升高而略有增加,这与加压气化相反,在加压气化中,萘随温度升高而显着降低。 S / B比的增加导致总焦油含量降低,由于较高的蒸汽含量导致的焦油减少在较高的温度下较高。压力的增加主要是由于萘导致总焦油含量的增加,对于低S / B比,效果最为明显。

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  • 来源
    《Fuel》 |2012年第2012期|p.204-209|共6页
  • 作者单位

    Institute of Energy Systems, Faculty of Mechanical Engineering, Technische Universitaet Muenchen, Boltzmannstrasse 15, 85748 Carching, Germany;

    Institute of Energy Systems, Faculty of Mechanical Engineering, Technische Universitaet Muenchen, Boltzmannstrasse 15, 85748 Carching, Germany;

    Faculty of Mechanical, Maritime and Materials Engineering, Process and Energy Department, Energy Technology Section, Delft University of Technology, Leeghwaterstraat 44,2628 CA, Delft, The Netherlands;

    Faculty of Mechanical, Maritime and Materials Engineering, Process and Energy Department, Energy Technology Section, Delft University of Technology, Leeghwaterstraat 44,2628 CA, Delft, The Netherlands;

    Institute of Energy Systems, Faculty of Mechanical Engineering, Technische Universitaet Muenchen, Boltzmannstrasse 15, 85748 Carching, Germany,The Bavarian Center for Applied Energy Research (ZAE Bayern), Division 1: Technology for Energy Systems and Renewable Energy, Walther-Meissner-Str. 6, 85748 Carching, Germany;

    Institute of Energy Systems, Faculty of Mechanical Engineering, Technische Universitaet Muenchen, Boltzmannstrasse 15, 85748 Carching, 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

    allothermal gasification; tar; pressure; biomass; product gas;

    机译:变热气化焦油压力生物质产物气;

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