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基于周围生物质抑制作用的微藻培养生长计算新方法。

A new approach for calculating microalgae culture growth based on an inhibitory effect of the surrounding biomass.

机构信息

Department of Mechanical Engineering and Environmental Engineering, OTH Amberg-Weiden, Kaiser-Wilhelm-Ring 23, 92241, Amberg, Germany.

Department of Food Biotechnology and Food Processing Engineering, Technische Universität Berlin, Königin-Luise-Str. 22, 14195, Berlin, Germany.

出版信息

Bioprocess Biosyst Eng. 2021 Aug;44(8):1671-1684. doi: 10.1007/s00449-021-02550-6. Epub 2021 Apr 16.

Abstract

Ever since the potential of algae in biotechnology was recognized, models describing the growth of algae inside photobioreactors have been proposed. These models are the basis for the optimization of process conditions and reactor designs. Over the last few decades, models became more and more elaborate with the increase of computational capacity. Thus far, these models have been based on light attenuation due to the absorption and scattering effects of the biomass. This manuscript presents a new way of predicting the apparent growth inside photobioreactors using simple models for enzymatic kinetics to describe the reaction between photons and the photosynthetic unit. The proposed model utilizes an inhibition kinetic formula based on the surrounding biomass to describe the average growth rate of a culture, which is determined by the local light intensities inside the reactor. The result is a mixed-inhibition scheme with multiple inhibition sites. The parameters of the new kinetic equation are replaced by empirical regression functions to correlate their dependency on incident light intensity and reactor size. The calibrations of the parameters and the regression functions are based on the numerical solutions of the growth rate computed with a classical Type II model. As a final verification, we apply the new equation in predicting the growth behavior of three phototrophic organisms in reactors of three different sizes.

摘要

自从人们认识到藻类在生物技术中的潜力以来,描述藻类在光生物反应器内生长的模型就被提出来了。这些模型是优化工艺条件和反应器设计的基础。在过去的几十年中,随着计算能力的提高,模型变得越来越精细。到目前为止,这些模型都是基于生物质的吸收和散射效应导致的光衰减。本文提出了一种新的方法,即使用简单的酶动力学模型来预测光生物反应器内的表观生长,以描述光子与光合单元之间的反应。所提出的模型利用基于周围生物质的抑制动力学公式来描述培养物的平均生长速率,该速率由反应器内的局部光强决定。其结果是一个具有多个抑制位点的混合抑制方案。新动力学方程的参数被替换为经验回归函数,以关联它们对入射光强度和反应器尺寸的依赖性。参数和回归函数的校准是基于用经典的 II 型模型计算的增长率的数值解。作为最终验证,我们将新方程应用于预测三种不同尺寸反应器中三种光养生物的生长行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5661/8238767/32a3ffb95a54/449_2021_2550_Fig1_HTML.jpg

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