首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Alterations in energy properties of eucalyptus wood and bark subjected to torrefaction: The potential of mass loss as a synthetic indicator
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Alterations in energy properties of eucalyptus wood and bark subjected to torrefaction: The potential of mass loss as a synthetic indicator

机译:焙干后桉木和树皮能量特性的变化:质量损失作为合成指标的潜力

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摘要

Torrefaction is a mild pyrolysis process (usually up to 300 °C) that changes the chemical and physical properties of biomass. This process is a possible pre-treatment prior to further processes (transport, grinding, combustion, gasification, etc) to generate energy or biofuels. In this study, three eucalyptus wood species and bark were subjected to different torrefaction conditions to determine the alterations in their structural and energy properties. The most severe treatment (280 °C, 5. h) causes mass losses of more than 35%, with severe damage to anatomical structure, and an increase of about 27% in the specific energy content. Bark is more sensitive to heat than wood. Energy yields are always higher than mass yields, thereby demonstrating the benefits of torrefaction in concentrating biomass energy. The overall mass loss is proposed as a relevant parameter to synthesize the effect of torrefaction conditions (temperature and duration). Accordingly, all results are summarised by analytical expressions able to predict the energy properties as a function of the overall mass loss. These expressions are intended to be used in any optimization procedure, from production in the field to the final use.
机译:烘焙是一种温和的热解过程(通常高达300°C),可改变生物质的化学和物理性质。该过程是可能的预处理,可以进行进一步的过程(运输,研磨,燃烧,气化等)以产生能量或生物燃料。在这项研究中,对三种桉树木材和树皮进行了不同的烘焙条件,以确定其结构和能量特性的变化。最严格的治疗(280°C,5 h)会导致质量损失超过35%,严重破坏解剖结构,比能量含量增加约27%。树皮比木头对热更敏感。能量产量总是高于质量产量,从而证明了干法浓缩生物质能的好处。提议将整体质量损失作为合成烘焙条件(温度和持续时间)的影响的相关参数。因此,所有结果均由能够预测能量性质随总质量损失而变化的分析表达式进行了总结。这些表达式旨在在从现场生产到最终使用的任何优化过程中使用。

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