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Investigation of Ash-Related Issues During Combustion of Maize Straw and Wood Biomass Blends in Lab-Scale Bubbling Fluidized Bed Reactor

机译:实验室规模鼓泡流化床反应器中玉米秸秆和木材生物质混合物燃烧过程中灰分相关问题的研究

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摘要

During the combustion of solid fuels, the undesired effects of ash transformation include bed agglomeration, slagging, and fouling processes. In particular, a problematic consequence of bed agglomeration is the defluidization process, resulting from the disappearance of gaseous bubbles that are created behind air distributors. Different solutions can be applied against the agglomeration process. One possible method is to apply some additives that influence the ash behavior, thus inhibiting the agglomeration process. This paper presents the results of investigations into ash-related issues in a laboratory-scale bubbling fluidized bed (BFB) reactor. In particular, the impact of additives (kaolin, halloysite, fly ash, and the residuals from wet desulfurization system (IMOS)) on bed agglomeration was investigated. It was found that the addition of these compounds increased the defluidization time from ~109 min (without additive) to ~285 min in the BFB (with the addition of 0.1 g/min of kaolin). The morphology of additive (kaolin and halloysite) transformation after their addition into the combustion chamber was discussed. Another interesting phenomenon is that residuals from the IMOS exhibited the ability to be an additive against the agglomeration process. The defluidization time can be also significantly increased by the simultaneous application of the additive and the control of fluidization air velocity. The procedure of periodical bed moving by impulse primary air feeding against defluidization (PADM) is suggested and discussed. The PADM procedure resulted in a 36% reduction of additive, thus reducing the cost of measures against ash-related issues.
机译:在固体燃料燃烧期间,灰分转化的不良影响包括床的结块,结渣和结垢过程。特别地,床附聚的问题后果是脱液过程,这是由于在空气分配器后面产生的气泡消失而导致的。可以针对团聚过程应用不同的解决方案。一种可能的方法是施加一些影响灰分性能的添加剂,从而抑制团聚过程。本文介绍了在实验室规模的鼓泡流化床(BFB)反应器中与灰分有关的问题的调查结果。特别是,研究了添加剂(高岭土,埃洛石,粉煤灰和湿法脱硫系统(IMOS)的残留物)对床层结块的影响。结果发现,在BFB中(添加0.1 g / min的高岭土),添加这些化合物将脱液时间从109分钟(无添加剂)增加到285分钟。讨论了添加剂(高岭土和埃洛石)转化后添加到燃烧室中的形态。另一个有趣的现象是,来自IMOS的残留物表现出了抵抗附聚过程的添加剂的能力。通过同时施用添加剂和控制流化空气速度,还可以显着增加脱液时间。提出并讨论了通过脉冲一次空气进料防止脱液(PADM)进行周期性床移动的程序。 PADM程序使添加剂减少了36%,从而减少了针对灰分相关问题的措施的成本。

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