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Hydrodynamics of activated char in a novel multistage circulating fluidized bed for dry desulfurization

机译:一种新型多级循环流化床活性炭的流体动力学,干燥脱硫

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摘要

A novel multistage fluidized bed was proposed to improve the desulfurization efficiency of activated char in a circulating fluidized bed-flue gas desulfurization process. The hydrodynamics of gas-solid flow in the multistage fluidized bed was experimentally studied. Results showed that the overall pressure drop of the bed had a good linear relationship with the ratio of the superficial gas velocity and the solid circulation rate. Compared with the conventional fluidized bed for desulfurization, a relatively uniform upward flow over a cross section was observed in the middle conveying section of the multistage fluidized bed. Intensive gas-solid interaction in the expanding section of the multistage fluidized bed was confirmed. In addition, a uniform suspension upward flow with minimal solid backmixing at the upper portion of the expanding section was observed under limited operating conditions. Finally, the gas-solid flow structure in the expanding section of the multistage fluidized bed was depicted.
机译:提出了一种新型多级流化床,以提高循环流化床烟道气脱硫过程中活性炭的脱硫效率。实验研究了多级流化床中气固流动流体动力学的流体动力学。结果表明,床的总压降与浅表气体速度和固体循环速率的比率具有良好的线性关系。与用于脱硫的常规流化床相比,在多级流化床的中间输送部分中观察到横截面上的相对均匀的向上流动。确认了多级流化床的膨胀部分中的强化气固相互作用。另外,在有限的操作条件下观察到在膨胀部分的上部的均匀悬架向上流动,其在膨胀部分的上部处观察到。最后,描绘了多级流化床的膨胀部分中的气体固体流动结构。

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