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Hydrogen-Rich Gas Stream from Steam Gasification of Biomass: Eggshell as a CO_2 Sorbent

机译:来自生物量蒸汽气化的氢气流量:蛋壳作为CO_2吸附剂

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摘要

The present study investigates the steam gasification of biomass with an in-process CO2 capture. The work is aimed at achieving hydrogen enrichment while reducing the carbon dioxide (CO2) concentration in the gas stream. A perceived waste resource, eggshell, was utilized as the source of the CO2 sorbent, while sawdust was used as the feedstock. The eggshell was calcined at 900 degrees C to activate it for the carbonation process. The gasification tests were conducted in a bubbling fluidized bed reactor with the calcined eggshell (CES) as the bed material in addition to being a CO2 sorbent. Thermogravimetric analysis conducted on the eggshell showed that 900 degrees C is sufficient to fully convert the calcium carbonate (CaCO3) in the eggshell to calcium oxide (CaO). The complete conversion was also evident in X-ray diffraction peaks. The effects of key process parameters, steam to biomass ratio (SBR) and calcined eggshell to biomass ratio (CEBR), were examined. Increasing the CEBR provided more CaO to the process, promoted the CO2 uptake via the carbonation reaction, and accordingly enhanced hydrogen enrichment. An increase in SBR in the CES-based tests improved the hydrogen concentration in the gas stream. A minimum CO2 volumetric concentration of 3.3 +/- 0.4% and a maximum hydrogen concentration of 78 +/- 3.6% were obtained in this study at a temperature of 650 degrees C, an SBR of 1.2, and a CEBR of 1.0. Additionally, results of the CES-based experiments showed that the water gas shift reaction is more important for the enhancement of hydrogen production than the other gasification reactions.
机译:本研究研究了用进程中的二氧化碳捕获的生物质的蒸汽气化。该工作旨在实现氢富集,同时降低气流中的二氧化碳(CO 2)浓度。一种感知的废资源,蛋壳是用作二氧化碳吸附剂的来源,而锯末用作原料。蛋壳在900℃下煅烧以激活碳酸化过程。除了作为二氧化碳吸附剂外,还用煅烧的蛋壳(CES)在鼓泡流化床反应器中进行气化试验。在蛋壳上进行的热重分析显示900℃足以将蛋壳中的碳酸钙(CaCO 3)完全转化为氧化钙(CaO)。在X射线衍射峰值中也是明显的完整转化。研究了关键过程参数,蒸汽与生物质比(SBR)和煅烧蛋壳对生物质比(CBEB)的影响。增加CEBR提供更多CAO到该过程,通过碳酸化反应促进CO2吸收,并因此提高了氢富集。基于CES的试验中的SBR增加改善了气流中的氢浓度。在该研究中,在650℃,1.2的SBR的温度下,在该研究中获得了3.3 +/- 0.4%的最小CO 2体积浓度和最大氢浓度为78 +/- 3.6%,以及1.2的CBEB。另外,基于CES的实验结果表明,水煤气变换反应对于增强氢气产生比其他气化反应更为重要。

著录项

  • 来源
    《Energy & fuels》 |2020年第4期|4828-4836|共9页
  • 作者单位

    Univ Guelph Mech Engn Program Sch Engn Guelph ON N1G 2W1 Canada;

    Univ Prince Edward Isl Fac Sustainable Design Engn Charlottetown PE C1A 4P3 Canada;

    Univ Guelph Mech Engn Program Sch Engn Guelph ON N1G 2W1 Canada;

    Kuwait Inst Sci Res Environm & Life Sci Res Ctr Kuwait 13109 Kuwait;

    Univ Guelph Mech Engn Program Sch Engn Guelph ON N1G 2W1 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:24:54

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