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Investigation of the Segregation of Binary Mixtures with Iron-Based Particles in a Bubbling Fluidized Bed

机译:用铁基颗粒在鼓泡流化床中对二元混合物分离的研究

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The characterization of the segregation phenomena in binary mixtures of solids with very different densities and/or particle sizes is highly relevant in many industrial processes. As a recent example, some advanced CO2 capture systems using fluidized beds include the separation by segregation of the functional materials. In this work, we have conducted mixing-segregation experiments with particles of iron ore (a typical oxygen carrier in chemical looping combustion systems) acting as jetsam, and glass beads (representing a lower density solid present in the bed) acting as flotsam, to measure solid concentration profiles at different fluidizing gas velocities and mixture compositions of different-sized particles. The experimental concentration profiles have been interpreted using a modified version of the model proposed by Gibilaro and Rowe. A relatively simple correlation is included in the model to calculate the segregation model parameters, which depend on the physical properties of the fluidized solids. The model fits reasonably well with all experimental data, especially for mixtures with a low fraction of oxygen carriers, which are the most relevant for the design of future continuous separation of solids by segregation.
机译:在许多工业过程中具有非常不同的密度和/或粒度的固体的二元混合物中的分离现象的表征在许多工业过程中具有高度相关性。作为最近的示例,一些使用流化床的高级CO2捕获系统包括通过功能材料的偏析分离。在这项工作中,我们已经进行了用铁矿石颗粒(化学循环燃烧系统中的典型氧载体)的混合隔离实验,其作用为Jetsam,以及作为Flotsam的玻璃珠(代表床中的低密度固体)。测量不同流化气体速度和不同尺寸颗粒的混合组合物的固体浓度曲线。使用Gibilaro和Rowe提出的模型的修改版本被解释了实验浓度分布。在模型中包括相对简单的相关性以计算拆卸模型参数,这取决于流化固体的物理性质。该模型与所有实验数据合理合理,特别是对于具有低氧载体的混合物,这是通过偏析进行未来连续分离的设计最相关的混合物。

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