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Chlorella vulgaris (SAG 211-12) biofilm formation capacity and proposal of a rotating flat plate photobioreactor for more sustainable biomass production

机译:Noholla寻常(SAG 211-12)Biofilm形成容量和旋转平板光生物反应器的提案,用于更可持续的生物质生产

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摘要

Difficulties and cost of suspended microalgal biomass harvest and processing can be overcome by cultivating microalgae as biofilms. In the present work, a new photoautotrophic biofilm photobioreactor, the rotating flat plate photobioreactor (RFPPB), was developed aiming at a cost-effective production of Chlorella vulgaris (SAG 211-12), a strain not frequently referred in the literature but promising for biofuel production. Protocols were developed for evaluating initial adhesion to different materials and testing the conditions for biofilm formation. Polyvinyl chloride substrate promoted higher adhesion and biofilm production, followed by polypropylene, polyethylene, and stainless steel. The new RFPPB was tested, aiming at optimizing incident light utilization, minimizing footprint area and simplifying biomass harvesting. Tests show that the photobioreactor is robust, promotes biofilm development, and has simple operation, small footprint, and easy biomass harvest. Biomass production (dry weight) under non-optimized conditions was 3.35 g m(-2), and areal productivity was 2.99 g m(-2) day(-1). Lipid content was 10.3% (dw), with high PUFA content. These results are promising and can be improved by optimizing some operational parameters, together with evaluation of long-term photobioreactor maximum productivity.
机译:通过培养微藻作为生物膜,可以克服悬浮微藻生物量收获和加工的困难和成本。本研究开发了一种新型的光自养生物膜光生物反应器,即旋转平板光生物反应器(RFPPB),旨在经济高效地生产普通小球藻(SAG 211-12),这是一种文献中不常提及但有望用于生物燃料生产的菌株。制定了评估不同材料初始粘附性和测试生物膜形成条件的方案。聚氯乙烯基质促进了更高的附着力和生物膜的生成,其次是聚丙烯、聚乙烯和不锈钢。对新型RFPPB进行了测试,旨在优化入射光利用率、最小化占地面积和简化生物质收获。试验表明,该光生物反应器运行稳定,促进了生物膜的形成,操作简单,占地面积小,易于生物量收获。非优化条件下的生物产量(干重)为3.35 g m(-2),面积生产力为2.99 g m(-2)天(-1)。脂肪含量为10.3%(dw),多不饱和脂肪酸含量较高。这些结果是有希望的,可以通过优化一些操作参数以及评估长期光生物反应器的最大生产率来改善。

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