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Effect of Impeller Geometry on Gas-Liquid Mass Transfer Coefficients in Filamentous Suspensions

机译:叶轮几何形状对丝状悬浮液气液传质系数的影响

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Volumetric gas-liquid mass transfer coefficients were measured in suspensions of cellulose fibers with concentrations ranging from 0 to 20 g/L. The mass transfer coefficients were measured using the dynamic method. Results are presented for three different combinations of impellers at a variety of gassing rates and agitation speeds. Rheological properties of the cellulose fibers were also measured using the impeller viscometer method. Tests were conducted in a 20 L stirred-tank fermen-tor and in 65 L tank with a height to diameter ratio of 3:1. Power consumption was measured in both vessels. At low agitation rates, two Rushton turbines gave 20% better performance than the Rushton and hydrofoil combination and 40% better performance than the Rushton and propeller combination for oxygen transfer. At higher agitation rates, the Rushton and hydrofoil combination gave 14 and 25% better performance for oxygen transfer than two Rushton turbines and the Rushton and hydrofoil combination, respectively.
机译:在浓度范围为0至20 g / L的纤维素纤维悬浮液中测量气液传质系数。使用动态方法测量传质系数。给出了在各种放气速率和搅拌速度下叶轮的三种不同组合的结果。还使用叶轮粘度计方法测量纤维素纤维的流变性质。测试是在20 L搅拌罐发酵罐和65 L罐中进行的,该罐的高径比为3:1。测量了两个容器中的功率消耗。在低搅拌速率下,两台Rushton涡轮机的氧气传输性能比Rushton和水翼机组合好20%,比Rushton和螺旋桨机组合好40%。在较高的搅拌速率下,Rushton和水翼桨组合比两个Rushton涡轮机和Rushton和水翼桨组合分别提供了14%和25%的氧气转移性能。

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