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真菌生物颗粒中的有效扩散系数和质量通量。

Effective diffusivities and mass fluxes in fungal biopellets.

作者信息

Hille A, Neu T R, Hempel D C, Horn H

机构信息

Institute of Water Quality Control, Technische Universität München, Am Coulombwall, D-85748 Garching, Germany.

出版信息

Biotechnol Bioeng. 2009 Aug 15;103(6):1202-13. doi: 10.1002/bit.22351.

Abstract

Mass transport within biological aggregates is a key process that can determine overall turnover rates in submerged cultivations. A parameter commonly used for its description is the effective diffusion coefficient D(eff), which is highly dependent on biomass density and structure. Different approaches have been used to estimate or measure D(eff), yet the data still shows broad scattering. This study provides experimental data on effective diffusivities of oxygen within fungal pellets. A correlation is found with the hyphal gradient (dh/dr), which is a morphological parameter describing the structure of the pellet periphery. Furthermore, the dependency of D(eff) on fluid dynamic conditions at the pellet is investigated. The comparison of the results with data from literature clearly demonstrates the influence of the experimental methodology applied for determination of D(eff). Moreover, it is shown that while diffusion limitation of whole pellets is mainly a function of size, the influence of advection in the outer zone of pellets that is supplied with oxygen is actually rather high. Thus, it is concluded that the effective diffusion coefficient might not be sufficient for the description of mass transport within the pellet periphery for a broad range of realistic fluid dynamic conditions during cultivation. Nevertheless, although actual mass transport rates inside pellets are unknown, mass fluxes can be calculated on the basis of spatially resolved data of oxygen and biomass distribution within the pellet.

摘要

生物聚集体内的质量传递是一个关键过程,它可以决定淹没培养中的总体周转率。一个常用于描述它的参数是有效扩散系数D(eff),它高度依赖于生物质密度和结构。人们已经使用了不同的方法来估计或测量D(eff),但数据仍然显示出广泛的离散性。本研究提供了关于真菌颗粒内氧气有效扩散率的实验数据。发现了与菌丝梯度(dh/dr)的相关性,菌丝梯度是描述颗粒周边结构的一个形态学参数。此外,还研究了D(eff)对颗粒处流体动力学条件的依赖性。将结果与文献数据进行比较,清楚地证明了用于测定D(eff)的实验方法的影响。此外,研究表明,虽然整个颗粒的扩散限制主要是尺寸的函数,但在有氧气供应的颗粒外部区域,平流的影响实际上相当大。因此,得出的结论是,对于培养过程中广泛的实际流体动力学条件,有效扩散系数可能不足以描述颗粒周边的质量传递。然而,尽管颗粒内部的实际质量传递速率未知,但可以根据颗粒内氧气和生物质分布的空间分辨数据来计算质量通量。

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