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Complex mathematical analysis of photobioreactor system

机译:光生物反应器系统的复杂数学分析

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摘要

Modeling as a tool solves extremely difficult tasks in life sciences. Recently, schemes of culturing of microalgae have received special attention because of its unique features and possible uses in many industrial applications for renewable energy production and high value products isolation. The goal of this review is to present the use of system analysis theory applied to microalgae culturing modeling and process development. The review mainly focuses on the modeling of the key steps of autotrophic growth under the integral biorefinery concept of the microalgae biomass. The system approach follows systematically a procedure showing the difficulties by modeling of sub‐systems. The development of microalgae kinetics and computational fluid dynamics (CFD) studies were analyzed in details as sub‐systems in advanced design of photobioreactor (PBR). This review logically follows the trends of the modeling procedure and clarifies how this approach may save time and money during the research efforts. The result of this work is a successful development of a complex PBR mathematical analysis in the frame of the integral biorefinery concept.
机译:作为工具的建模解决了生命科学中极其困难的任务。近年来,微藻的培养方案由于其独特的特征以及在可再生能源生产和高价值产品分离的许多工业应用中的可能用途而受到了特别关注。本文的目的是介绍系统分析理论在微藻培养建模和工艺开发中的应用。审查主要集中在微藻生物质的整体生物精炼概念下自养生长关键步骤的建模。系统方法系统地遵循了通过建模子系统来显示困难的过程。作为光生物反应器(PBR)高级设计中的子系统,对微藻动力学和计算流体动力学(CFD)研究的发展进行了详细分析。这项审查从逻辑上遵循了建模过程的趋势,并阐明了这种方法如何在研究过程中节省时间和金钱。这项工作的结果是在完整的生物精炼概念框架内成功开发了复杂的PBR数学分析。

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