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The droplet combustion and thermal characteristics of pinewood bio-oil from slow pyrolysis

机译:缓慢热解松木生物油的液滴燃烧和热学特性

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The present study investigated the production procedure and combustion characteristics of a bio-oil produced through the slow pyrolysis of pinewood. The combustion properties of droplets with different butanol/bio-oil proportions were thus determined and compared. The droplets containing bio-oil varied irregularly in size during combustion and left considerable residue that was also combusted. The duration of combustion was revealed to increase when the bio-oil concentration was increased. The TGA indicated a two-stage weight loss during combustion. The first stage occurred at 30-160 degrees C, corresponding to the endothermic evaporation of the light fraction of the compounds after heating. The second stage occurred at 450-650 degrees C, indicating pyrolytic exothermic residue combustion fed by the macromolecular residue of the interactions between bio-oil constituents. The activation energy was demonstrated to gradually decrease during the evaporation stage and also during the residue combustion stage. The aromatics in the bio-oil polymerized under the intense heat, leading to the formation of residue and soot. The burning rate of the droplet decreased when the bio-oil concentration was increased, whereas the residue burning rate increased with an increase in bio-oil concentration. The volatiles released during residue combustion enhanced the burning rate of residue. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究调查了通过松木缓慢热解生产的生物油的生产过程和燃烧特性。因此确定并比较了具有不同丁醇/生物油比例的液滴的燃烧特性。含有生物油的液滴在燃烧过程中大小不规则变化,并留下大量残留物,这些残留物也被燃烧。当生物油浓度增加时,燃烧持续时间增加。 TGA表明燃烧过程中有两阶段的重量损失。第一阶段在30-160摄氏度下发生,对应于加热后化合物轻馏分的吸热蒸发。第二阶段发生在450-650摄氏度,这表明生物油成分之间相互作用的大分子残渣提供了热解放热残渣燃烧。已证明活化能在蒸发阶段以及残渣燃烧阶段逐渐降低。生物油中的芳烃在高温下聚合,导致残留物和烟灰的形成。随着生物油浓度的增加,液滴的燃烧速率降低,而随着生物油浓度的增加,残渣燃烧速率增加。残渣燃烧过程中释放的挥发物提高了残渣的燃烧速率。 (C)2017 Elsevier Ltd.保留所有权利。

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