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Chemical-looping combustion of raw syngas from biomass steam gasification - Coupled operation of two dual fluidized bed pilot plants

机译:来自生物质蒸汽气化的粗合成气的化学循环燃烧-两个双流化床中试装置的联合运行

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摘要

Product gas from a 100 kW fuel power dual fluidized bed (DFB) steam gasifier for solid biomass was used as fuel for chemical looping combustion in a continuously operated dual circulating fluidized bed (DCFB) 120 kW chemical looping combustion (CLC) pilot plant. The two pilot units were coupled through a hot product gas fan. Olivine was used as bed material in the gasifier and a synthetic oxygen carrier containing 9 wt% CuO was used as oxygen carrier in the CLC unit. Standard wood pellets with a water content of 6 wt% were used as primary fuel. In the gasifier, conditions were kept constant at 850 ℃ and a steam/fuel ratio of 1.6 kg/kg dry biomass. Two operating conditions were employed at 850 ℃ and 900 ℃ in the fuel reactor of the CLC unit. The composition was monitored with respect to CO, CO_2, H_2, and CH_4 for product gas, fuel reactor exhaust gas and air reactor exhaust gas. Also, H_2S and SO_2 were measured in the product gas and CLC off gas streams. A product gas with 41.9 vol% (db) H_2,31.2 vol% (db) CO, 17 vol% (db) CO_2, and 7.8 vol% (db) CH_4 was obtained from the gasifier. While CH_4 conversion in CLC was between 53% and 64%, almost full conversion of the CO and H_2 contained in the product gas were achieved. The effect of temperature was significant only with respect to CH_4 conversion. Analysis of particulate matter in product gas and CLC off gas streams indicate that fines contained in the product gas tend to pass through the CLC unit. No performance drop was evident during the experiment, which lasted for 10 h. It can be concluded that it is possible to couple two DFB systems in a robust way when using a high temperature fan and that biomass gasifier product gas can be effectively converted to CO_2 and H_2O in CLC using copper-based oxygen carriers.
机译:来自100 kW燃料动力双流化床(DFB)蒸汽气化炉的固体生物质产品气在连续运行的120 kW双循环流化床(DCFB)120 kW化学循环燃烧(CLC)中试工厂中用作化学循环燃烧的燃料。两个先导单元通过热产品燃气风扇连接。橄榄石被用作气化炉中的床材料,而含有9 wt%CuO的合成氧气载体被用作CLC单元中的氧气载体。含水量为6 wt%的标准木屑颗粒用作主要燃料。在气化炉中,条件保持在850℃恒定,蒸汽/燃料比为1.6 kg / kg干生物质。 CLC单元的燃料反应堆在850℃和900℃两种工作条件下使用。针对产物气,燃料反应器排气和空气反应器排气,针对CO,CO_2,H_2和CH_4监测组成。另外,在产物气和CLC废气流中测量了H_2S和SO_2。从气化炉中获得了具有41.9vol%(db)H_2、31.2vol%(db)CO,17vol%(db)CO_2和7.8vol%(db)CH_4的产物气。虽然CLC中的CH_4转化率介于53%和64%之间,但产品气中所含的CO和H_2几乎完全转化。温度的影响仅在CH_4转化方面很明显。对产物气和CLC废气流中的颗粒物的分析表明,产物气中包含的细粉倾向于通过CLC单元。在持续10小时的实验过程中,性能没有明显下降。可以得出结论,当使用高温风机时,可以以稳健的方式耦合两个DFB系统,并且使用铜基氧气载体,生物质气化炉产物气可以在CLC中有效转化为CO_2和H_2O。

著录项

  • 来源
    《Fuel》 |2014年第1期|178-185|共8页
  • 作者单位

    Vienna University of Technology, Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    Vienna University of Technology, Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    Vienna University of Technology, Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    Vienna University of Technology, Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    University of Natural Resources and Life Sciences, Institute for Chemical and Energy Engineering, Peter-Jordan-Strasse 82, 1190 Vienna, Austria;

    University of Natural Resources and Life Sciences, Institute for Chemical and Energy Engineering, Peter-Jordan-Strasse 82, 1190 Vienna, Austria;

    Vienna University of Technology, Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

  • 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

    Fluidized bed systems; Gasification; Chemical looping combustion; Biomass; Bio CCS;

    机译:流化床系统;气化;化学循环燃烧;生物质生物CCS;
  • 入库时间 2022-08-18 00:17:17

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