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Modeling of carbon dioxide mass transfer behavior in attached cultivation photobioreactor using the analysis of the pH profiles

机译:使用pH值分析分析附着培养光生物反应器中二氧化碳的传质行为

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The CO2 mass transfer model associated with growth kinetics of microalgal biofilm in attached cultivation photobioreactor was developed and verified by using the analysis of pH profiles which were in equilibrium with inorganic carbon components concentrations (CO2, H2CO3, HCO3 (-) and CO3 (2-)) in medium. Model simulation results showed that the model well presented the biofilm growth process. The overall volumetric mass transfer coefficient of CO2 was more influenced by CO2 concentration in aerated gas but less by gas aeration rate and medium circulation rate. Other bio-kinetic parameters related with the microalgal biofilm such as CO2 diffusion coefficient in biofilm, Monod maximum utilization rate of CO2, lag phase duration of biofilm and half-saturation CO2 concentration in the biofilm were independent on operational conditions. The pH profiles provided a way to monitor the variations of inorganic carbon concentrations of medium and to regulate the cultivation of attached microalgal biofilm by CO2 supplement.
机译:通过分析与无机碳成分浓度(CO2,H2CO3,HCO3(-)和CO3(2-)平衡的pH分布图,建立并验证了与附着培养光生物反应器中微藻生物膜生长动力学相关的CO2传质模型。 ))。模型仿真结果表明,该模型很好地展示了生物膜的生长过程。 CO2的整体体积传质系数受充气气体中CO2浓度的影响较大,而受气体充气速率和介质循环速率的影响较小。与微藻生物膜相关的其他生物动力学参数,例如生物膜中的CO2扩散系数,Monod的最大CO2利用率,生物膜的滞后阶段持续时间以及生物膜中半饱和的CO2浓度均与操作条件无关。 pH分布图提供了一种方法来监控培养基中无机碳浓度的变化,并通过补充CO2来调节附着的微藻生物膜的培养。

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