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Cold flow model investigations of the countercurrent flow of a dual circulating fluidized bed gasifier

机译:双循环流化床气化炉逆流的冷流模型研究

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摘要

A novel fluidized bed gasification concept with enhanced gas–particle interaction combining two circulating fluidized bed reactors is proposed. Cold flow model results show the feasibility of the concept with regard to fluid dynamics. The aim of the design is to generate a nitrogen (N_2) free product gas with low tars and fines contents. Therefore, the system is divided into an air/combustion and a fuel/gasification reactor. Two gas streams are obtained separately. The two reactors are interconnected via loop seals to assure the global circulation of bed material and to avoid gas leakages from one reactor to the other. The global circulation rate is driven by the gas velocity in the air/ combustion reactor. Furthermore, the fuel/gasification reactor itself is a circulating fluidized bed with the special characteristic of almost countercurrent flow conditions for the gas phase and bed material particles. By simple geometrical modifications, it is possible to achieve well-mixed flow conditions in the fuel/gasification reactor along the full height. The gas velocity and the geometrical properties in the fuel/gasification reactor are chosen in such a way that the entrainment of coarse particles is low at the top. Due to the dispersed downward movement of the bed material particles and the feedstock input at defined locations of the fuel/gasification reactor, no volatiles are produced in the upper regions and the problems of insufficient gas phase conversion and high tar contents are avoided
机译:提出了一种新颖的流化床气化概念,它结合了两个循环流化床反应器,具有增强的气体-颗粒相互作用。冷流模型结果显示了该概念在流体动力学方面的可行性。设计的目的是产生具有低焦油和细粉含量的不含氮(N_2)的产物气。因此,该系统分为空气/燃烧和燃料/气化反应器。分别获得两个气流。两个反应器通过回路密封件互连,以确保床层材料的整体循环并避免气体从一个反应器泄漏到另一个反应器。整体循环速率由空气/燃烧反应器中的气体速度驱动。此外,燃料/气化反应器本身是循环流化床,其特征是气相和床材料颗粒几乎为逆流状态。通过简单的几何修改,就有可能在燃料/气化反应器中沿整个高度实现充分混合的流动条件。选择燃料/气化反应器中的气体速度和几何特性,以使顶部的粗颗粒夹带率低。由于床料颗粒和燃料输入口在燃料/气化反应器的确定位置分散地向下运动,因此在上部区域不产生挥发物,避免了气相转化不足和焦油含量高的问题。

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