首页> 外文会议>TMS annual meeting exhibition;International symposium on high-temperature metallurgical processing >SIMULATION STUDY ON SOLUTION FOAMING BY CONTROLLING GAS GENERATION REACTION IN WATER-GLYCEROL SYSTEM
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SIMULATION STUDY ON SOLUTION FOAMING BY CONTROLLING GAS GENERATION REACTION IN WATER-GLYCEROL SYSTEM

机译:控制水-气系统中气体发生反应的溶液起泡的模拟研究

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Slag foaming phenomenon is of vital importance to the mass and energy transfer in metallurgical processes. A considerable extensively studies carried out via out-gas in the past cannot simulate well the foaming phenomenon formed in the blast furnace where high TiO_2 iron ore is used. A gas reaction was designed in the water-glycerol system to simulate the inner-gas system. This study investigated the influences of solution viscosity, particle concentration and particle size on foaming caused by endogenetic gas. The results show that the foaming height decreases with the increase of solution viscosity, which means reduced foaming ability, more difficult foaming elimination process and prolonged time for natural defoaming. With increasing the solid particle content, the foam height presents a trend which increases firstly and then decreases. Under a certain solid particle content, foaming height decreases with the increase of solid particle size, indicating a weak foaming ability.
机译:矿渣起泡现象对于冶金过程中的质量和能量传递至关重要。过去通过排气进行的大量广泛研究不能很好地模拟在使用高TiO_2铁矿石的高炉中形成的泡沫现象。在水-甘油系统中设计了一个气体反应器,以模拟内部气体系统。这项研究调查了溶液粘度,颗粒浓度和粒径对内生气体引起的泡沫的影响。结果表明,发泡高度随溶液粘度的增加而降低,这意味着发泡能力下降,消除泡沫的过程更加困难,自然消泡时间延长。随着固体颗粒含量的增加,泡沫高度呈现出先升高然后降低的趋势。在一定的固体颗粒含量下,起泡高度随固体颗粒尺寸的增加而降低,表明起泡能力较弱。

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