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Gasification of N-rich fibreboard in an air-blown fluidized bed reactor: A study on the fate of tars, NH_3 and HCN during oxidative mild Hot Gas Filtration

机译:在空气吹塑的流化床反应器中富含N-富合纤维板的气化:在氧化温和的热气体过滤期间对焦油,NH_3和HCN的命运进行研究

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摘要

Wood wastes, such as Medium Density Fibreboard (MDF), are interesting low-cost fuels for gasifiers. The present study examines the effect of oxidative Hot Gas Filtration (HGF) on gasification indicators and pollutants (tars, NH3 and HCN) of producer gas. Pellets of N-rich MDF were gasified in an air-blow bubbling bed reactor at 800 degrees C coupled with a downstream HGF unit equipped with multilayer metallic filters and operated at mild temperature (400-600 degrees C). The fate of pollutants was assessed by complementary analytical techniques (HPLC, UV-fluorescence, GC/MS-FID and wet chemical methods for N-compounds). The deposit of the filter was also sampled after gasification trials and characterised by SEM-EDX.For the reference tests, conducted without the HGF unit, tar concentration was 6.5 g/Nm(3) (dry gas, benzenefree) while, 43% of Fuel Bounded Nitrogen (FBN) was converted to NH3 and 4% to HCN. Oxidative HGF tests showed that secondary reactions inside the HGF unit undergo in homogeneous (gas-gas) and heterogeneous (gas-solid) phase. At a relatively high secondary air flow rate brought in the HGF unit, the severe oxidation of the dust cake particles led to irreversible melting, aggregation and sintering phenomena of ash deposits on the surface of the filter, as well as, to a drop of 49% in the tar yield. Overall, this work demonstrates that the addition of secondary air inside the HGF unit should be carefully tailored in order to minimise the exothermic oxidation of dust cake particles and, to promote long-term operation of the filter.
机译:木质废物,如中密度纤维板(MDF),是煤气的低成本燃料。本研究研究了氧化热气体过滤(HGF)对生产者气体的气化指标和污染物(TARS,NH3和HCN)的影响。富含N的MDF颗粒在800摄氏度的吹气鼓型床反应器中气化,其下游HGF单元配备有多层金属过滤器,并在温和的温度(400-600℃)下操作。通过互补的分析技术(HPLC,UV-荧光,GC / MS-FID和N-化合物的GC / MS-FID和湿化学方法评估污染物的命运。在气化试验后,过滤器的沉积物也被取样,并通过SEM-EDX表征。在没有HGF单元的情况下进行的参考测试,焦油浓度为6.5g / nm(3)(干燥气体,苯单身),而43%将燃料有界氮(FBN)转化为NH 3和4%至HCN。氧化HGF试验表明,HGF单元内的二次反应在均匀(气体气体)和异质(气体固体)相中进行。在带有HGF单元的相对高的二级空气流速下,粉尘饼颗粒的严重氧化导致过滤器表面上的灰沉积物的不可逆熔化,聚集和烧结现象,以及49滴焦油产量%。总体而言,这项工作表明,应仔细定制HGF单元内的二次空气,以最大限度地减少粉尘饼颗粒的放热氧化,促进过滤器的长期运行。

著录项

  • 来源
    《Fuel》 |2021年第1期|121317.1-121317.15|共15页
  • 作者单位

    Univ Lorraine ENSIC CNRS LRGP 1 Rue Grandville Nancy France;

    Univ Lorraine ENSIC CNRS LRGP 1 Rue Grandville Nancy France|Univ Lorraine LERMaB ENSTIB 27 Rue Philippe Seguin POB 1041 F-88051 Epinal France;

    Univ Lorraine ENSIC CNRS LRGP 1 Rue Grandville Nancy France;

    Univ Lorraine ENSIC CNRS LRGP 1 Rue Grandville Nancy France;

  • 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

    Waste; Gasification; Hot gas filtration; Partial oxidation; Tar removal; Gas upgrading;

    机译:垃圾;气化;热气体过滤;部分氧化;焦油去除;煤气升级;
  • 入库时间 2022-08-19 03:03:43

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