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Torrefied Biomass as an Alternative in Coal-Fueled Power Plants: A Case Study on Grindability of Agroforestry Waste Forms

机译:焚烧生物量作为煤燃料发电厂的替代品:一种案例研究制剂的磨削性磨损形式

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摘要

The use of biomass as a renewable energy source is currently a reality, mainly due to the role it can play in replacing fossil energy sources. Within this possibility, coal substitution in the production of electric energy presents itself as a strong alternative with high potential, mostly due to the possibility of contributing to the decarbonization of energy production while, at the same time, contributing to the circularization of energy generation processes. This can be achieved through the use of biomass waste forms, which have undergone a process of improving their properties, such as torrefaction. However, for this to be viable, it is necessary that the biomass has a set of characteristics similar to those of coal, such that its use may occur in previously installed systems. In particular, with respect to grindability, which is associated with one of the core equipment technologies of coal-fired power plants—the coal mill. The objective of the present study is to determine the potential of certain residues with agroforestry origins as a replacement for coal in power generation by using empirical methods. Selected materials—namely, almond shells, kiwifruit pruning, vine pruning, olive pomace, pine woodchips, and eucalyptus woodchips—are characterized in this regard. The materials were characterized in the laboratory and submitted to a torrefaction process at 300 °C. Then, the Statistical Grindability Index and the Hardgrove Grindability Index were determined, using empirical methods derived from coal analysis. The results obtained indicate the good potential of the studied biomasses for use in large-scale torrefaction processes and as replacements for coal in the generation of electrical energy. However, further tests are still needed, particularly relating to the definition of the ideal parameters of the torrefaction process, in order to optimize the grindability of the materials.
机译:使用生物质作为可再生能源是现实的,主要是由于它可以在更换化石能源时发挥作用。在这种可能性中,在电能的生产中的煤炭替代将自身作为具有高潜力的强大替代方案,主要是由于有助于能量产生的脱碳的可能性,同时有助于能量发电过程的循环化。 。这可以通过使用生物质废物形式来实现,这经历了改善其性质的过程,例如烘焙。然而,为了可行,生物质必须具有类似于煤的一组特性,使得其使用可能发生在先前安装的系统中。特别地,关于磨削性,这与燃煤发电厂的核心设备技术之一 - 煤磨机相关联。本研究的目的是通过使用经验方法确定具有农林料起源的某些残留物的潜力作为替代发电中的煤炭。选定的材料 - 即杏仁壳,猕猴桃修剪,藤蔓修剪,橄榄渣,松木芯片和桉树木芯片 - 在这方面的特点。该材料的特征在实验室中,并在300℃下提交到烘焙过程。然后,使用源自煤炭分析的经验方法确定统计研磨性指数和硬化磨削性指数。所获得的结果表明,研究的生物量用于大规模的烘焙过程和煤炭在电能中的替代品中的良好潜力。然而,仍然需要进一步的测试,特别是与烘焙过程的理想参数的定义有关,以优化材料的磨削性。

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  • 作者

    Leonel J. R. Nunes;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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