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Shadowgraphy investigation of the combustion of raw and pre-treated single biomass particles: Influence of particle size and volatile content

机译:皮影调查原始和预处理的单个生物质颗粒的燃烧:粒径和挥发物含量的影响

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摘要

An experimental study of single particle combustion is performed in a high temperature particle reactor. The particle degradation is simultaneously monitored by high magnification direct imaging and by shadowgraph imaging techniques giving access to the full behaviour of the particle even when enveloped by a flame. This allows tracing the time-resolved evolution of the particle shadow during its degradation as a function of its burnout. The method provides access to the whole process timeline, especially the onset of the heterogeneous oxidation even during the flame phase. It is observed to occur earlier for larger particles containing lower volatile matter. The latter occupies around 40% of the initial particle shadow, which decreases with devolatilisation progress following a power trend. The char burns at the surface until the reaction front penetrates the particle leaving an ash matrix behind. Effects of particle size and volatile matter on the different steps of particle combustion are discussed. Moreover, biomass behaviour is compared to that of coal. The whole results give new insights in the combustion of single biomass particle and are available for the development and validation of dedicated solid fuel combustion models.
机译:在高温粒子反应器中进行了单粒子燃烧的实验研究。通过高倍率直接成像和阴影图成像技术,可以同时监视颗粒的降解情况,即使在被火焰包围时,也可以通过阴影图成像技术获得颗粒的全部性能。这允许追踪在其降解过程中随其燃尽而变化的粒子阴影的时间分辨演化。该方法提供了进入整个过程时间线的途径,特别是即使在火焰阶段也可以进行异质氧化。对于包含较低挥发性物质的较大颗粒,观察到发生较早。后者占据初始粒子阴影的40%左右,随着功率趋势的升高,其随着脱挥发分的进展而减少。炭在表面燃烧,直到反应前沿穿透颗粒,然后留下灰分基质。讨论了粒径和挥发性物质对颗粒燃烧不同步骤的影响。此外,将生物质行为与煤进行了比较。整个结果为单一生物质颗粒的燃烧提供了新的见识,可用于开发和验证专用固体燃料燃烧模型。

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