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Oxygen control for an industrial pilot-scale fed-batch filamentous fungal fermentation

机译:工业中试规模分批补料丝状真菌发酵的氧气控制

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摘要

Industrial filamentous fungal fermentations are typically operated in fed-batch mode. Oxygen control represents an important operational challenge due to the varying biomass concentration. In this study, oxygen control is implemented by manipulating the substrate feed rate, i.e. the rate of oxygen consumption. It turns out that the setpoint for dissolved oxygen represents a trade-off since a low dissolved oxygen value favors productivity but can also induce oxygen limitation. This paper addresses the regulation of dissolved oxygen using a cascade control scheme that incorporates auxiliary measurements to improve the control performance. The computation of an appropriate setpoint profile for dissolved oxygen is solved via process optimization. For that purpose, an existing morphologically structured model is extended to include the effects of both low levels of oxygen on growth and medium theological properties on oxygen transfer. Experimental results obtained at the industrial pilot-scale level confirm the efficiency of the proposed control strategy but also illustrate the shortcomings of the process model at hand for optimizing the dissolved oxygen setpoints. (c) 2007 Elsevier Ltd. All rights reserved.
机译:工业丝状真菌发酵通常以补料分批模式进行。由于生物质浓度的变化,氧气控制是一项重要的操作挑战。在这项研究中,氧气的控制是通过控制基质的进料速度,即氧气消耗速度来实现的。事实证明,溶解氧的设定值是一个折衷方案,因为低溶解氧值有利于生产率,但也会引起氧气限制。本文使用级联控制方案解决溶解氧的调节问题,该方案结合了辅助测量以改善控制性能。通过工艺优化解决了溶解氧的合适设定值曲线的计算。为此,扩展了现有的形态结构模型,以包括低水平的氧气对生长的影响以及中等神学特性对氧气转移的影响。在工业试验规模上获得的实验结果证实了所提出的控制策略的有效性,但也说明了现有工艺模型在优化溶解氧设定值方面的缺点。 (c)2007 Elsevier Ltd.保留所有权利。

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