首页> 外文期刊>Energy & fuels >Bioslurry as a Fuel. 3. Fuel and Rheological Properties of Bioslurry Prepared from the Bio-oil and Biochar of Mallee Biomass Fast Pyrolysis
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Bioslurry as a Fuel. 3. Fuel and Rheological Properties of Bioslurry Prepared from the Bio-oil and Biochar of Mallee Biomass Fast Pyrolysis

机译:生物浆作为燃料。 3.由Mallee生物质快速热解的生物油和生物炭制备的生物浆的燃料和流变特性

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摘要

This study investigates fuel and rheological properties of bio-oil/char slurry (i.e., bioslurry) fuels, which were prepared by mixing bio-oil with different concentrations of biochar. The bio-oil and biochar were produced from mallee fast pyrolysis at 500 ℃. The excellent grindability of biochar enables desirable particle size reduction of biochar into fine particles, which can be suspended into bio-oil for the preparation of bioslurry fuels. The bioslurry fuels have desired fuel and rheological characteristics, which meet the requirements for combustion and gasification applications. Dependent upon biochar loading, the volumetric energy density of bioslurry is up to 23.2 GJ/m~3, achieving a significant energy densification (by a factor > 4) in comparison to green wood chips. Bioslurry fuels with high biochar concentrations (11 -20 wt %) show non-Newtonian characteristics with pseudo-plastic behavior. The flow behavior index, n, decreases with an increasing biochar concentration. Bioslurry with higher biochar concentrations also demonstrate thixotropic behavior. The bioslurry fuels also have low viscosity ( < 453 mPa s) and are pumpable at both room and elevated temperatures. The concentrations of Ca, K, N, and S in bioslurry are below the limits of slurry fuel guidelines. Overall, the results in this study suggest that bioslurry fuels achieve substantial volumetric energy densification and are suitable fuels for combustion and gasification applications.
机译:这项研究调查了通过混合生物油和不同浓度的生物炭制备的生物油/炭渣浆(即生物浆)燃料的燃料和流变特性。生物油和生物炭是由木槌在500℃下快速热解产生的。生物炭的极好的可磨性使得生物炭可以理想地减小为细颗粒,可以将其悬浮在生物油中以制备生物浆燃料。生物浆燃料具有所需的燃料和流变特性,可以满足燃烧和气化应用的要求。取决于生物炭的负载量,生物浆的体积能量密度高达23.2 GJ / m〜3,与绿色木屑相比,实现了显着的能量致密化(系数> 4)。具有高生物炭浓度(11 -20 wt%)的生物浆燃料显示出非牛顿特性,具有假塑性行为。流动行为指数n随着生物炭浓度的增加而降低。具有较高生物炭浓度的生物浆液也表现出触变性。该生物浆燃料还具有低粘度(<453 mPa s),可在室温和高温下泵送。生物浆液中的Ca,K,N和S的浓度低于浆液燃料指南的限值。总体而言,这项研究的结果表明,生物浆燃料实现了体积能的充分致密化,是燃烧和气化应用的合适燃料。

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  • 来源
    《Energy & fuels》 |2010年第sepaaocta期|p.5669-5676|共8页
  • 作者单位

    Curtin Centre for Advanced Energy Science and Engineering, Department of Chemical Engineering, Curtin University of Technology, GPO Box U1987, Perth, Western Australia 6845, Australia;

    rnCurtin Centre for Advanced Energy Science and Engineering, Department of Chemical Engineering, Curtin University of Technology, GPO Box U1987, Perth, Western Australia 6845, Australia;

    rnCurtin Centre for Advanced Energy Science and Engineering, Department of Chemical Engineering, Curtin University of Technology, GPO Box U1987, Perth, Western Australia 6845, Australia;

    rnCurtin Centre for Advanced Energy Science and Engineering, Department of Chemical Engineering, Curtin University of Technology, GPO Box U1987, Perth, Western Australia 6845, Australia;

  • 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
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