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Production of High Calorific Value Biochars by Low Temperature Pyrolysis of Lipid Wastes and Lignocellulosic Biomass

机译:通过脂类废物和木质纤维素生物质的低温热解生产高热值生物炭

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摘要

Low quality waste oils and fats, with elevated levels of acidity, water and other contaminants are not appropriate for biodiesel production or other material recycling processes. Nevertheless, they can be converted to energy-dense bio-oils by pyrolysis, in an oxygen deficient atmosphere. These bio-oils may be used in combustion or upgraded to yield liquid biofuels for internal combustion engines although their chemical stability still creates some limitations during storage. This work aimed at the evaluation of biochar production by pyrolysis of mixtures of lipid wastes and pine sawdust. For this purpose, thermal conversion was performed with initial vacuum, at temperatures between 573.15 and 673.15 K and a reaction time of 60 min. Biomass incorporation varied between 0 and 38% (w/w). Biochar formation was favored by biomass incorporation and by the increase in temperature. The biochar yield varied from 1-28% and its high calorific value ranged between 24.3 to 36.6 MJ/kg. For incorporations of pine sawdust higher than 23% the carbon content and the calorific value of the biochar decreased due to a higher oxygen content in the raw materials. Highly calorific bio-oils were also produced in these conditions with yields from 24 to 83% (w/w), and high calorific values from 37.8 to 43.4 MJ/kg. These bio-oils have a carbon content higher than 75% and contain high molecular weight components. As such, they could be used in direct combustion in boilers, or as pellet additives. This approach contributes to the implementation of the renewed hierarchy for wastes as defined in the Directive 2008/98/EC namely by identifying alternatives to the deposition of the used cooking oils in landfills.
机译:酸度,水和其他污染物含量较高的劣质废油脂不适合生物柴油生产或其他材料回收过程。然而,它们可以在缺氧的气氛中通过热解转化为能量密集的生物油。这些生物油可用于燃烧或进行提质,以生产用于内燃机的液体生物燃料,尽管它们的化学稳定性在存储过程中仍然会产生一些限制。这项工作旨在评估脂类废物和松木屑混合物的热解产生的生物炭。为此目的,在573.15和673.15 K之间的温度和60分钟的反应时间下,在初始真空下进行热转化。生物质掺入量在0至38%(w / w)之间变化。生物炭的形成受生物质的掺入和温度升高的影响。生物炭产量在1-28%之间,其高热值在24.3至36.6 MJ / kg之间。对于掺入高于23%的松木屑,由于原料中的氧含量较高,碳含量和生物炭的热值降低。在这些条件下还产生了高热量的生物油,产率为24%至83%(w / w),高热量值为37.8至43.4 MJ / kg。这些生物油的碳含量高于75%,并包含高分子量成分。因此,它们可用于锅炉的直接燃烧中,或用作颗粒添加剂。这种方法有助于实施指令2008/98 / EC中定义的新的废物层次结构,即通过确定在垃圾填埋场中沉积用过的食用油的替代方法。

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  • 来源
  • 会议地点 Guimaraes(PT)
  • 作者单位

    MEtRICs, Departamento de Ciencias E Tecnologia Da Biomassa, Faculdade de Ciencias E Tecnologia Da, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

    MEtRICs, Departamento de Ciencias E Tecnologia Da Biomassa, Faculdade de Ciencias E Tecnologia Da, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

    MEtRICs, Departamento de Ciencias E Tecnologia Da Biomassa, Faculdade de Ciencias E Tecnologia Da, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

    MEtRICs, Departamento de Ciencias E Tecnologia Da Biomassa, Faculdade de Ciencias E Tecnologia Da, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal,VALORIZA, Institute Politecnico de Portalegre, Portalegre, Portugal;

    VALORIZA, Institute Politecnico de Portalegre, Portalegre, Portugal;

    MEtRICs, Departamento de Ciencias E Tecnologia Da Biomassa, Faculdade de Ciencias E Tecnologia Da, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Used cooking oil; Pine sawdust; Biochar;

    机译:用过的食用油;松木屑;生物炭;
  • 入库时间 2022-08-26 14:31:41

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