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Studies of ignition behaviour of biomass particles in a down-fire reactor for improving co-firing performance

机译:研究下火反应堆中生物质颗粒的着火行为以改善共烧性能

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摘要

To realize large percentage biomass co-firing with coal in existing coal-fired boilers, the combustion behaviour of biomass is expected to be similar or comparable to that of coal. When co-firing with coal, biomass is not necessarily to be ground as fine as the dedicated coal particles due to its higher reactivity. With aim of achieving promising performance of co-firing with dedicated coal particles, the determination of suitable particle size of biomass becomes important. The paper investigates experimentally the ignition behaviour of three biomass materials in a down-fire reactor associated with thermogravimetric analyser (TGA). TGA results showed that the devolatilization process is accelerated by the presence of oxygen, but failed to identify the impacts of particle size on the ignition behaviour of biomass. However, the ignition testing results based in the down-fire reactor clearly showed that ignition delay time of a large biomass particle is longer than that of smaller one. In addition, being injected into the furnace, the softwood particles take a longer residence time to be ignited than the straw particles at same sizes, which agrees well with their reactivity analysis in TGA. Moreover, the ignition test results suggested that the ignition mechanism of biomass could be alternated from homogeneous to the heterogeneous ignition when the furnace temperature is increasing; at high enough furnace temperatures, the ignition predictably occurs at the particle surface without requiring the start of devolatilization. The results quantitatively demonstrate the effects of particle size on the ignition delay time of biomass , which, together with the transport phenomena and surrounding atmosphere, can contribute to control the biomass combustion profile and co-firing performance.
机译:为了在现有的燃煤锅炉中实现与煤一起大量燃烧的生物质,预计生物质的燃烧行为与煤炭相似或相当。当与煤共烧时,由于其较高的反应活性,生物质不一定要像专用煤颗粒一样细。为了实现与专用煤颗粒共烧的有希望的性能,确定合适的生物质颗粒大小变得重要。本文通过实验研究了三种生物质材料在与热重分析仪(TGA)相关联的下火反应堆中的着火行为。 TGA结果表明,脱氧过程因氧气的存在而加速,但未能确定粒径对生物质着火行为的影响。然而,基于降火反应堆的点火测试结果清楚地表明,大生物质颗粒的点火延迟时间长于小生物质颗粒的点火延迟时间。另外,与相同尺寸的稻草颗粒相比,被注入炉中的软木颗粒要点燃的停留时间要更长,这与它们在TGA中的反应性分析非常吻合。此外,点火试验结果表明,随着炉温的升高,生物质的点火机理可以从均质点火转换为非均质点火。在足够高的炉温下,可预期发生在颗粒表面的着火,而无需开始脱挥发分。结果定量地证明了粒径对生物质点火延迟时间的影响,再加上运输现象和周围大气,可以有助于控制生物质燃烧曲线和共烧性能。

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