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Uncoupling solid and hydraulic retention time in photobioreactors for microalgae mass production: A model-based analysis

机译:微藻肿大批量生产光生物反应器的脱耦固体和液压保留时间:基于模型的分析

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In conventional continuous bioreactor operations, it is a common practice to decouple the hydraulic retention time (HRT) from the solid retention time (SRT). When dealing with photosynthetic microorganisms, light intensity plays a major role in the growth kinetics; thus, the effect of HRT and SRT on biomass productivity may differ from that in chemotrophic bioreactors. In this study, we assessed the role of uncoupled SRT and HRT on biomass productivity in continuous photobioreactors (PBRs) based on simple mass balances, light transfer, and kinetic models to highlight the specific features of PBRs. Under a non-limiting nutrient supply, SRT is the fundamental variable used to maximize productivity and control the biomass concentration and light penetration in a PBR. Operating at SRT > HRT does not enhance the productivity. If the goal is biomass production, it is instead convenient to operate at SRT < HRT, thereby significantly reducing the water and nutrient consumption. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在常规的连续生物反应器操作中,是一种常见的做法,可以从固体保留时间(SRT)分离液压保留时间(HRT)。在处理光合微生物时,光强度在生长动力学中发挥着重要作用;因此,HRT和SRT对生物质生产率的影响可能与趋化性生物反应器中的影响可能不同。在这项研究中,我们评估了基于简单质量平衡,光学转移和动力学模型的连续光生物反应器(PBR)中的解偶联SRT和HRT对生物量生产率的作用。在非限制性营养供应下,SRT是用于最大限度地提高生产率的根本变量,并控制PBR中的生物质浓度和光渗透。在SRT> HRT上运行不会提高生产率。如果目标是生物质生产,则在SRT

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