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Prediction of flow behavior of the riser in a novel high solids flux circulating fluidized bed for steam gasification of coal or biomass

机译:煤或生物质蒸汽气化的新型高固含量通量循环流化床中冒口的流动行为预测

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摘要

A triple-bed combined circulating fluidized bed (TBCFB) system, which is composed of a downer, a bubbling fluidized bed (BFB), and a riser, is proposed for the pyrolysis and gasification of coal and biomass. In order to effectively utilize the heat energy produced by the combustion of the char in the riser for the pyrolysis of coal/biomass in the downer and/or gasification of char in the BFB, a high solids mass flux and a large solids holdup are necessary. An analysis of the overall pressure balance around the TBCFB was presented for predicting the maximum achievable solid mass flux under given experimental conditions. The effects of solids inventory, particle physical properties, and gas seal structures on the solids mass flux and the solids holdup were discussed. A correlation for the prediction of solids mass flux in the range of 200-400 kg/m2 s in the riser under operating conditions was developed based on experimental data from the literature and our laboratory.
机译:提出了由下降器,鼓泡流化床(BFB)和立管组成的三床联合循环流化床(TBCFB)系统,用于煤和生物质的热解和气化。为了有效地利用提升管中焦炭燃烧产生的热能来降低下降炉中煤/生物质和/或BFB中的焦炭气化,需要高固体质量通量和大量固形物。提出了对TBCFB周围总压力平衡的分析,以预测在给定实验条件下可达到的最大固体质量通量。讨论了固体存量,颗粒物理性质和气体密封结构对固体质量通量和固体含量的影响。基于文献和我们实验室的实验数据,开发了在运行条件下冒口中固体物质通量在200-400 kg / m2 s范围内的预测相关性。

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