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Effects of torrefaction process parameters on biomass feedstock upgrading

机译:焙干工艺参数对生物质原料提质的影响

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摘要

Biomass is a primary source of renewable carbon that can be utilized as a feedstock for biofuels or bio chemicals production in order to achieve energy independence. The low bulk density, high moisture con tent, degradation during storage and low energy density of raw lignocellulosic biomass are all significant challenges in supplying agricultural residues as a cellulosic feedstock. Torrefaction is a thermochemical process conducted in the temperature range between 200 and 300 °C under an inert atmosphere which is currently being considered as a biomass pretreatment. Competitiveness and quality of biofuels and bio chemicals may be significantly increased by incorporating torrefaction early in the production chain while further optimization of the process might enable its autothermal operation. In this study, torrefac tion process parameters were investigated in order to improve biomass energy density and reduce its moisture content. The biomass of choice (corn stover) was torrefied at three moisture content levels (30%, 45% and 50%), three different temperatures (200, 250 and 300 °C), and three unique reaction times (10,20 and 30 min). Solid, gaseous, and liquid products were analyzed, and the mass and energy balance of the reaction was quantified. An overall increase in energy density (2-19%) and decrease in mass and energy yield (3-45% and 1-35% respectively) was observed with the increase in process temperature. Mass and energy losses also increased with an increase in the initial biomass moisture content.
机译:生物质是可再生碳的主要来源,可将其用作生物燃料或生物化学品生产的原料,以实现能源独立性。低木质素纤维素生物质的低堆积密度,高水分含量,储存过程中的降解以及低能量密度都是供应农业残余物作为纤维素原料的重大挑战。烘焙是在惰性气氛下于200至300°C的温度范围内进行的热化学过程,目前被认为是生物质预处理。通过在生产链中尽早加入焙炒,可以显着提高生物燃料和生物化学品的竞争力和质量,同时进一步优化工艺可以使其自热运行。在这项研究中,研究了焙烧工艺参数,以提高生物质能密度并降低其水分含量。选择的生物量(玉米秸秆)在三种水分含量(30%,45%和50%),三种不同温度(200、250和300°C)和三种独特的反应时间(10、20和30)下被烘干分钟)。分析了固体,气体和液体产物,并对反应的质量和能量平衡进行了定量。随着过程温度的升高,能量密度总体增加(2-19%),质量和能量产率降低(分别为3-45%和1-35%)。质量和能量损失也随着初始生物质水分含量的增加而增加。

著录项

  • 来源
    《Fuel》 |2012年第1期|p.147-154|共8页
  • 作者单位

    Department of Agricultural and Biosystems Engineering, Iowa State University, 100 Davidson Hall, Ames, IA 5001 J, USA;

    Department of Agricultural and Biosystems Engineering, Iowa State University, 100 Davidson Hall, Ames, IA 5001 J, USA;

    Department of Agricultural and Biosystems Engineering, Iowa State University, 100 Davidson Hall, Ames, IA 5001 J, USA;

    Department of Agricultural and Biosystems Engineering, Iowa State University, 100 Davidson Hall, Ames, IA 5001 J, USA;

    Department of Agricultural and Biosystems Engineering, Iowa State University, 100 Davidson Hall, Ames, IA 5001 J, USA;

  • 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; corn stover; torrefaction; pretreatment;

    机译:生物质;玉米秸秆;烘焙;预处理;

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