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中试空气提升塔式生物反应器的特性研究。I:利用模型介质评估各相特性。

Characterization of a pilot plant airlift tower loop bioreactor. I: evaluation of the phase properties with model media.

机构信息

Metaleurop Weser Zink GmbH, Nordenham, Germany.

出版信息

Biotechnol Bioeng. 1991 Jun 5;38(1):43-55. doi: 10.1002/bit.260380107.

Abstract

Investigations were carried out in a 9 m high, 4 m(3) volume, pilot plant airlift tower loop bioreactor with a draft tube. The reactor was characterized by measuring residence time distributions of the gas phase using pseudostochastic tracer signals and a mass spectrometer and by evaluating the mixing in the liquid phase with single-pulse tracer inputs. The local gas holdup and the bubble size (piercing length) were measured with two-channel electrical conductivity probes. The mean residence times and the intensities of the axial mixing in the riser and downcomer and the circulation times of the phases as well as the fraction of the recirculated gas phase were evaluated. The gas holdup in the riser is nearly uniform along the reactor. In the downcomer, it diminishes from top to bottom. The liquid phase dispersion coefficients, D(L), are smaller than those measured in the corresponding bubble columns. In the pilot plant with tap water the following relationship was found: D(Lr) = cw(SG) (n); with c = 203.4; n = 0.5;D(Lr)(cm(2) s(-1);) and W(SG)(cm s(-1)) where D(Lr) is the longitudinal dispersion coefficient in the riser and W(SG) is the superficial gas velocity. The gas phase dispersion coefficients in the riser of the pilot plant, D(Gr), are also enlarged with increasing superficial gas velocity, W(SG), however, no simple relationship exists. Parameter D(Gr) is the highest in the presence of antifoam agents, intermediate in tap water, and the smallest in ethanol solution.

摘要

在一个 9 米高、4 立方米体积的带导流管的中试工厂气升式环流生物反应器塔中进行了研究。该反应器的特点是使用拟随机示踪剂信号和质谱仪测量气相停留时间分布,并通过单脉冲示踪剂输入评估液相混合情况。通过双通道电导率探头测量局部气含率和气泡尺寸(穿透长度)。评估了上升段和下降段的轴向混合平均停留时间和强度、相的循环时间以及循环气相的分数。上升段的气含率沿反应器几乎均匀。在下降段,气含率从顶部到底部逐渐减少。液相分散系数 D(L)小于在相应的鼓泡塔中测量的值。在使用自来水的中试工厂中,发现以下关系:D(Lr) = cw(SG) (n);其中 c = 203.4;n = 0.5;D(Lr)(cm(2) s(-1);)和 W(SG)(cm s(-1)),其中 D(Lr)是上升段的纵向分散系数,W(SG)是表气速。中试工厂上升段的气相分散系数 D(Gr)也随着表气速 W(SG)的增加而增大,然而,不存在简单的关系。参数 D(Gr)在存在消泡剂时最高,在自来水中居中,在乙醇溶液中最小。

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