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Novel Stacked Modular Open Raceway Ponds for Microalgae Biomass Cultivation in Biogas Plants: Preliminary Design and Modelling

机译:新型堆积模块化滚道池沼泽植物微藻生物量栽培:初步设计与造型

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Microalgae hold great potential as a source for renewable energy due to their high photosynthetic efficiency, high growth rates and independence from fertile agricultural lands. However, large-scale cultivation systems of microalgae biomass are still not economically viable mainly due to the difficulties with maintaining optimum growth conditions of microalgae in open pond systems and high costs of biomass cultivation and harvesting. Here we propose the Novel Stacked Modular Open Raceway Ponds (SMORPs) system for microalgae biomass cultivation to be integrated in biogas production plant. The proposed technological solution will eliminate the drawbacks of current microalgae cultivation technologies, mainly, will reduce the land use, improve lighting conditions and reduce the cost of cultivation as a result of the application of waste products from biogas production, i.e. anaerobic digestion effluent and flue gas. In this study we propose the initial design of the SMORP concept and a microalgae biomass kinetic model as a simple approach to screen microalgae strains potentially applicable for large-scale ponds. The developed tool is also useful to evaluate the potential benefit of additional artificial LED light sources and to assess the maximum biomass growth rate with minimal light intensity.
机译:由于它们的高光合效率,高增长率和来自肥沃农业土地的独立性,微藻作为可再生能源的源泉。然而,由于在开放的池系统中保持微藻的最佳生长条件以及生物量培养和收获的高成本,因此仍然是经济上的微藻生物量的大规模培养系统仍然不是在经济上可行的困难。在这里,我们提出了用于微藻生物量栽培的新型堆积的模块化开放滚道池塘(Smorps)系统,以集成在沼气生产植物中。该拟议的技术解决方案将消除目前的微藻栽培技术的缺点,主要是将降低土地利用,改善照明条件,降低栽培成本,从沼气生产中的应用,即厌氧消化流出物和烟道气体。在这项研究中,我们提出了Smorp概念的初始设计和微藻生物量动力学模型作为筛选微藻菌株可能适用于大型池塘的简单方法。开发的工具也有助于评估额外的人造LED光源的潜在益处,并以最小的光强度评估最大的生物质生长速率。

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