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首页> 外文期刊>Brazilian journal of chemical engineering >Relative importance of process parameters and their mutual interactions on the hydrodynamics of a pulsed disc and doughnut column
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Relative importance of process parameters and their mutual interactions on the hydrodynamics of a pulsed disc and doughnut column

机译:过程参数的相对重要性及其对脉冲盘和甜甜圈柱的流体动力学的相互相互作用

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The pulsed disc and doughnut extraction column (PDDC) has emerged as an efficient equipment in the field of hydrometallurgy. This work is concerned with determining the statistically significant process parameters and their mutual interaction in relation to the hydrodynamics of a PDDC. Pulsation intensity, %duty cycle, total throughput and organic to aqueous ratio are selected as the process variables. By the Analysis of Variance and the Student's t test, Pulsation intensity has been identified as the most important parameter in the dispersion regime. %Duty cycle turns out to be a statistically significant process parameter. The mutual interaction between total throughput with pulsation intensity is found to be most influential on the dispersed phase holdup in the dispersion regime. It has been found that the dispersed holdup data is normally distributed. Based on the data, a linear regression model was fitted for the dispersion with an adjusted R-2 of 0.983.
机译:脉冲盘和甜甜圈萃取柱(PDDC)已成为氢磨机领域的有效设备。 这项工作涉及确定统计上显着的过程参数及其相对于PDDC的流体动力学的相互相互作用。 选择脉动强度,%占空比,总通量和有机物与水性比例作为过程变量。 通过分析方差和学生的T试验,脉动强度已被识别为分散制度中最重要的参数。 %占空比结果是统计上重要的过程参数。 发现具有脉动强度的总吞吐量之间的相互相互作用在分散状态下分散的相位悬架最有影响力。 已经发现分散的保持数据通常是分布式的。 基于数据,线性回归模型适用于分散体,其调节的R-2为0.983。

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