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Trickle bed wetting factors from pressure drop and liquid holdup measurements

机译:来自压降和液体滞留量测量的滴流床润湿因子

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In this work, solid-liquid wetting factors were determined from liquid holdup and pressure drop measurements according to the model proposed by Pironti et al. for different air-liquid systems: distilled water and CMC solutions at viscosity values of 3, 6, 9, and 12 mPa. s. The experiments were carried out at atmospheric conditions in a column of 10.2 cm internal diameter and 2 m high, packed with a cylindrical material. The superficial mass velocities varied from 0.67 to 18.6 kg/m~2s for liquid flow and from 0.024 to 0.31 kg/m~2 for gas flow. Under these operating conditions, regime of continuous gas flow was observed. The wetting factors obtained were in agreement with those reported by other methods, which allow us to confirm that the model used in this work is applicable to fluids of different properties at low gas velocities.
机译:在这项工作中,根据Pironti等人提出的模型,从液体滞留量和压降测量中确定了固液润湿因子。对于不同的气液系统:蒸馏水和CMC溶液的粘度值为3、6、9和12 mPa。 s。实验是在大气条件下,用装有圆柱形材料的内径为10.2厘米,高为2 m的柱子进行的。液体流动的表观质量速度在0.67至18.6kg / m〜2s之间,气体流动的表面质量速度在0.024至0.31kg / m〜2之间。在这些操作条件下,观察到连续气流的状态。所获得的润湿因子与其他方法所报道的润湿因子一致,这使我们可以确认该工作中使用的模型适用于低气体速度下性质不同的流体。

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