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BUBBLE FORMATION AND DYNAMIC SLAG FOAMING PHENOMENA

机译:气泡形成和动态渣SL发泡现象

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摘要

Slag foaming proves to be both blessing and curse for the process productivity, depending on where in the process it occurs. In pyrometallurgical processes, slag foaming is often a result of chemical reactions taking place in the slag. As the slag composition and reaction rates are changing, foaming occurs under dynamic conditions. In the present work, slag foaming was studied with XRF. The foam displayed a fluctuating behaviour, unaccountable by existing models. The concept of foaming index was found not to be satisfactory in describing the foam, resulting in the need for alternative theories. The rate of fluctuations was seen to be related to the difference between rate of gas generation and rate of gas escape from the system (Ug-Ue) as well as the bubble sizes. Thus, model development of dynamic foaming phenomenon has to take the effective chemical reaction rate as well as the bubble sizes into consideration.rnThe first step in obtaining foam is to form bubbles. In the present work, gas bubbles were generated through chemical reaction at interface between two immiscible liquids and the bubble formation was studied optically. The gas bubble size was seen to be uninfluenced by the reaction rate. However, bubble formation was seen to take place in one of the phases and since the bubbles consequently traversed the interface under the influence of buoyancy, the viscosity of the first phase was found to influence the final bubble size where increased viscosity would yield a larger bubble size.
机译:事实证明,炉渣起泡既有利又不利于生产效率,具体取决于发生在何处。在火法冶金过程中,炉渣起泡通常是炉渣中发生化学反应的结果。随着炉渣组成和反应速率的变化,在动态条件下会产生泡沫。在目前的工作中,用XRF研究了炉渣起泡。泡沫显示出波动的行为,现有模型无法解释。发现发泡指数的概念不能令人满意地描述泡沫,因此需要其他理论。波动率被认为与气体产生速率和系统中气体逸出速率(Ug-Ue)之间的差异以及气泡大小有关。因此,动态起泡现象的模型开发必须考虑有效的化学反应速率以及气泡大小。-获得泡沫的第一步是形成气泡。在目前的工作中,气泡是通过在两种不混溶液体之间的界面发生化学反应而产生的,并且对气泡的形成进行了光学研究。观察到气泡大小不受反应速率的影响。但是,可以看到气泡的形成是在其中一个相中发生的,并且由于气泡因此在浮力的影响下穿过了界面,因此发现第一相的粘度会影响最终的气泡大小,其中增加的粘度会产生更大的气泡尺寸。

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