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The influence of partial oxidation mechanisms on tar destruction in TwoStage biomass gasification

机译:两段式生物质气化过程中部分氧化机理对焦油破坏的影响

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摘要

TwoStage gasification of biomass results in almost tar free producer gas suitable for multiple end-use purposes. In the present study, it is investigated to what extent the partial oxidation process of the pyro-lysis gas from the first stage is involved in direct and in-direct tar destruction and conversion. The study identifies the following major impact factors regarding tar content in the producer gas: oxidation temperature, excess air ratio and biomass moisture content. In a experimental setup, wood pellets were pyro-lyzed and the resulting pyrolysis gas was transferred in a heated partial oxidation reactor and oxidized between 800 and 1050 ℃ with excess air rations between 0 and 0.7 and fuel moisture content between 8% and 30%. The gas composition was analyzed before and after oxidation by means of gas chromatogra-phy and mass spectrometry. The tar compounds were sampled by solid phase adsorption and determined by stable isotope dilution analysis. The results have shown that partial oxidation reduces and converts primary tars into low molecular weight, polycyclic aromatic hydrocarbons (PAHs), primarily naphthalene. At temperatures above 950 ℃ practically all phenol is converted. The resulting PAH tar compounds are readily converted in the subsequent char-bed of the TwoStage gasification process and the partial oxidation process thus contributes directly as well as in-directly to the overall tar destruction. A high temperature and excess air ratios contribute positively to the direct tar destruction and a high moisture content of the biomass enhances the decomposition of phenol and inhibits the formation of naphthalene. This enhances tar conversion and gasification in the char-bed, and thus contributes in-directly to the tar destruction.
机译:生物质的两阶段气化可产生几乎无焦油的生产气,适用于多种最终用途。在本研究中,研究了第一阶段热解气的部分氧化过程在多大程度上参与了直接和间接的焦油破坏和转化。该研究确定了以下有关燃气中焦油含量的主要影响因素:氧化温度,过量空气比率和生物质水分含量。在实验设置中,将木屑颗粒热解,并将所得的热解气体转移至加热的部分氧化反应器中,并在800至1050℃之间氧化,过量空气比在0至0.7之间,燃料水分含量在8%至30%之间。通过气相色谱法和质谱法分析氧化前后的气体组成。通过固相吸附对焦油化合物进行采样,并通过稳定的同位素稀释分析进行测定。结果表明,部分氧化可将伯焦油还原并转化为低分子量多环芳烃(PAH),主要是萘。在950℃以上的温度下,几乎所有的苯酚都会被转化。生成的PAH焦油化合物易于在TwoStage气化工艺的后续炭化床中转化,因此部分氧化工艺直接或间接地导致了整个焦油的破坏。高温和过量空气比例对直接破坏焦油有积极作用,而生物质的高水分含量则可以促进苯酚的分解并抑制萘的形成。这增强了焦炭床中焦油的转化和气化,因此间接地导致了焦油的破坏。

著录项

  • 来源
    《Fuel》 |2013年第10期|662-680|共19页
  • 作者单位

    Department of Chemical and Biochemical Engineering, Technical University of Denmark-DTU, Frederiksborgvej 399, DK 4000 Roskilde, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark-DTU, Frederiksborgvej 399, DK 4000 Roskilde, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark-DTU, Frederiksborgvej 399, DK 4000 Roskilde, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark-DTU, Frederiksborgvej 399, DK 4000 Roskilde, Denmark;

    Department of Chemical and Biochemical Engineering, Technical University of Denmark-DTU, Frederiksborgvej 399, DK 4000 Roskilde, Denmark;

  • 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

    Biomass gasification; Partial oxidation; Tar destruction; Producer gas; Staged gasifier;

    机译:生物质气化;部分氧化;焦油破坏;煤气分级气化炉;

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