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Bubbling fluidization of biomass and sand binary mixtures: Minimum fluidization velocity and particle segregation

机译:生物质和沙子二元混合物的鼓泡流化:最小流化速度和颗粒偏析

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Understanding the minimum fluidization velocity of biomass and sand mixtures is fundamental to ensuring the optimal performance of fluidized beds in a thermo-conversional process, such as fast pyrolysis. The present work aimed to determine the minimum fluidization velocity of binary mixtures using the characteristic diagram of pressure drop in the bed and to develop an experimental correlation for the minimum fluidization velocity of biomass and sand mixtures. Three types of biomass (sweet sorghum bagasse, waste tobacco and soybean hulls) and four sands with different sizes were investigated. The results showed that the fluid dynamic behavior of binary mixtures is directly related to the biomass size and shape. For sweet sorghum bagasse (more irregular particles), higher biomass percentages led to lower minimum fluidization velocities, which differed from the behaviors observed for waste tobacco and soybean hulls. The diameter ratio inert/biomass effectively influenced the segregation, with a higher ratio causing more pronounced bed segregation. A good fluidization regime (with little segregation) for biomass and sand mixtures was obtained using the smallest sand (d_(50)=0.35). Considering the studied operating conditions, the proposed correlation can be used satisfactorily to predict the minimum fluidization velocities for mixtures of biomass and sand in fluidized beds.
机译:了解生物质和沙子混合物的最小流化速度是确保热转化过程(例如快速热解)中流化床最佳性能的基础。本工作旨在使用床内压降特性图确定二元混合物的最小流化速度,并开发生物质和沙混合物的最小流化速度的实验相关性。研究了三种类型的生物质(甜高粱蔗渣,废烟叶和大豆壳)和四种大小不同的沙。结果表明,二元混合物的流体动力学行为与生物质的大小和形状直接相关。对于甜高粱甘蔗渣(更多不规则颗粒),较高的生物质百分比导致较低的最小流化速度,这与废烟草和大豆皮观察到的行为不同。惰性气体/生物质的直径比有效影响了分离,更高的直径比导致更明显的床分离。使用最小的砂(d_(50)= 0.35)可获得生物质和砂混合物的良好流态化(很少偏析)。考虑到所研究的操作条件,所提出的相关性可以令人满意地用于预测流化床中生物质和沙子的混合物的最小流化速度。

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