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Determination of Minimum Agitation Speed for Complete Solid Suspension Using Four Electrode Conductivity Method

机译:使用四电极电导率法测定完全固体悬浮液的最小搅拌速度

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In many solid liquid operations, it is required to keep all the solids in suspension to avoid localised reactions, prevent the solid build-up at a particular location on the base of the vessel or just avoid clogging the outlet port. In operations like dissolution of a solid in a liquid, the employment of agitation speed over the just suspension speed (Njs) does not necessarily increase the effective surface area of the solids and hence increase mixing efficiency. Many workers have proposed the correlations for the Njs but it is widely accepted that the phenomenon is best represented by Zweitering correlation. The discrepancies in the correlations are probably due to lack of accurate Njs measurement instruments. In this paper, a sensor based on the four electrode conductivity measurement has been proposed to directly measure the Njs. This sensor relies on the change in the electrical resistivity as the solids settle over the electrodes. A relationship to determine the Zweitering constant has been investigated for the Rushton impeller using this technique. A 5-10percent discrepancy in Njs values is normally found between the sensor prediction and the visual determination.
机译:在许多固体液体操作中,需要保持悬浮液中的所有固体以避免局部反应,防止在容器底部的特定位置处的固体积聚,或者只是避免堵塞出口。在液体中固体溶解的操作中,在仅仅悬浮速度(NJS)上的搅拌速度的就业不一定增加固体的有效表面积,因此提高混合效率。许多工人已经提出了NJ的相关性,但众所周度地接受了这种现象是通过ZwerInering相关性代表的。相关性的差异可能是由于缺乏准确的NJS测量仪器。本文已经提出了一种基于四个电极电导率测量的传感器直接测量NJS。该传感器依赖于电阻率的变化,因为固体沉降在电极上。使用这种技术研究了Rushton叶轮的达到Zweering常数的关系。通常在传感器预测和视觉确定之间找到5-10%的NJS值差异。

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