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Bioprocess Monitoring of Dissolved Oxygen Using a Computerized Pulsing Membrane Electrode

机译:使用计算机脉冲膜电极对溶解氧进行生物过程监测

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AbstractA membrane oxygen electrode usually suffers from long‐term signal deterioration due to environmental factors such as changes in hydrodynamic conditions and alteration of membrane oxygen diffusivity due to fouling. These problems can theoretically be overcome by the use of the same oxygen electrode in a pulsing mode. The effects of stirring rate, viscosity of the culture media, and addition of antifoam agents on the direct reading of this pulsing oxygen electrode were investigated, and the results were compared to the traditional pseudo‐steady‐state operation of the electrode. With a pulsing period controlled at 1 s and a rest period of longer than 5 min, the transient signal obtained can be quite stable, and it showed minimal interference from various environmental changes. Dissolved oxygen tension of a cephalosporin C fermentation was monitored using both this pulsing and the conventional pseudo‐steady‐state methods, and their readings were compared to those measured from an off‐line newly calibrated oxygen electrode. The reading from the pulsed electrode showed more favorable agreement with that of the off‐line measurement. The error encountered in using the conventional method of dissolved oxygen measurement could vary as much as 40 in comparison with the actual dissolved oxygen tension during a ferment
机译:摘要膜氧电极通常由于流体动力学条件的变化和结垢引起的膜氧扩散率的改变等环境因素而长期存在信号劣化。从理论上讲,这些问题可以通过在脉冲模式下使用相同的氧电极来克服。研究了搅拌速率、培养基粘度和消泡剂添加对该脉冲氧电极直接读数的影响,并将结果与传统的电极伪稳态操作进行了比较。脉冲周期控制在1 s,静止时间大于5 min,获得的瞬态信号可以相当稳定,并且对各种环境变化的干扰最小。使用这种脉冲和传统的伪稳态方法监测头孢菌素 C 发酵的溶解氧张力,并将其读数与离线新校准的氧电极测量的读数进行比较。脉冲电极的读数与离线测量的读数一致。与发酵过程中的实际溶解氧张力相比,使用传统溶解氧测量方法时遇到的误差可能相差多达 40%

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