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Analysis of bed agglomeration during gasification of wheat straw in a bubbling fluidised bed gasifier using mullite as bed material

机译:以莫来石为床料的鼓泡流化床气化炉中麦秸气化过程中的床团聚分析

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摘要

The quantity and composition of the ash content of straw poses technical challenges to its thermal conversion and have been widely reported to cause severe ash sintering and bed agglomeration during fluidised bed gasification. Literature indicates that a combination of reactor design and bed material measures is required to avoid defluidisation at temperatures above 800 °C. Using scanning electron microscopy and energy dispersive X-ray spectroscopy this study investigated the initial agglomeration of a mullite bed during the gasification of wheat straw in a small scale, air blown bubbling fluidised bed. The results show that the temperatures along the height of the bed converge prior to any marked drop in pressure or heating of the lower freeboard. This convergence was seen to occur at temperatures close to 750 °C in repeated gasification experiments. Energy dispersive X-ray spectroscopy indicates coating-induced agglomeration caused by the reaction of alkali metals with silica. Scanning electron microscopy under high magnification revealed a layered structure to the agglomerates, where ash particles are subsumed into a fused material. This suggests the formation of agglomerates by the three step agglomeration process postulated by other authors. Analysis of indices used to predict agglomeration on the basis of a fuel's ash content and composition indicates that the Alkali Index is the most accurate, successfully predicting agglomeration for 7 of the 9 fuels where agglomeration was observed.
机译:秸秆灰分的数量和组成对其秸秆的热转化提出了技术挑战,据广泛报道,秸秆流化床气化过程中会引起严重的灰分烧结和床层结块。文献表明,需要将反应器设计和床层材料措施结合起来,以避免在高于800°C的温度下发生脱液。本研究使用扫描电子显微镜和能量色散X射线光谱,研究了在小麦秸秆气化小规模鼓风鼓泡流化床过程中莫来石床的初始团聚。结果表明,在压力降低或下部干舷加热明显下降之前,沿床高的温度就开始收敛。在反复的气化实验中,发现这种收敛发生在接近750°C的温度下。能量色散X射线光谱表明由碱金属与二氧化硅反应引起的涂层诱导的团聚。在高放大倍数下的扫描电子显微镜显示了附聚物的层状结构,其中灰分颗粒被归纳为熔融材料。这表明由其他作者推测的三步附聚过程会形成附聚物。基于燃料的灰分和成分预测聚结指标的分析表明,碱指数是最准确的,成功预测了观察到结块的9种燃料中有7种的聚结。

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