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Gas-Liquid Mass Transfer Characteristics with Microbubble Aeration - I. Standard Stirred Tank

机译:微气泡曝气的气液传质特性-I.标准搅拌罐

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More knowledge has to be acquired on the gas-liquid mass transfer characteristics with microbubble aeration before an efficient bioreactor is designed. Experiments about this subject have been conducted in a stirred reactor. Some valuable conclusions were obtained: the shaft power consumption is little affected by the superficial gas velocity (v(s)) and the power consumption of the microbubble generator is rather high; the dispersion of microbubbles is more uniform compared to sparger aeration; surface aeration leads to a reduced microbubble number and the diameter of the microbubble increases with higher superficial gas velocity; when surface aeration happens, the k(L)a-v(s) curves turn quite abnormally different from that in the case of sparger aeration, and correlation-based calculations fit well with the measurements.
机译:在设计有效的生物反应器之前,必须获得更多有关微气泡曝气的气-液传质特性的知识。关于这个主题的实验已经在搅拌反应器中进行。得到了一些有价值的结论:轴功率消耗受表观气体速度(v(s))的影响很小,而微气泡发生器的功率消耗则很高。与气泡曝气相比,微气泡的分散更均匀。表面充气导致微气泡数量减少,并且随着更高的表观气体速度微气泡的直径增加;当发生表面曝气时,k(L)a-v(s)曲线的变化与喷射曝气时的曲线有很大不同,并且基于相关的计算非常适合这些测量。

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