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Mixotrophic Microalgae Biofilm: A Novel Algae Cultivation Strategy for Improved Productivity and Cost-efficiency of Biofuel Feedstock Production

机译:混合营养微藻生物膜:一种新型的藻类培养策略可提高生物燃料原料生产的生产率和成本效益

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摘要

In this work, we studied a novel algae cultivation strategy, mixotrophic microalgae biofilm, to improve the productivity and cost-efficiency of algal biofuel production. In contrast to previous methods, this improved approach can achieve high productivity at low cost by harnessing the benefits of mixotrophic growth’s high efficiency, i.e., capable of subsisting on inorganic and organic carbons thus unaffected by limited light, and microalgae biofilm’s low harvesting cost. Our results, as one of the first studies of this type, proved that microalgae biofilms under mixotrophic condition exhibited significantly higher productivity and quality of biofuel feedstock: 2–3 times higher of biomass yield, 2–10 times higher of lipid accumulation, and 40–60% lower of ash content when compared to microalgae biofilms under autotrophic condition. In addition, we investigated the impact of cell-surface properties (hydrophobicity and roughness) on the growth activities of microalgae biofilms and found that the productivity of mixotrophic biofilms was significantly correlated with the surface hydrophobicity. Finally, our work demonstrated the applicability of integrating this novel cultivation method with wastewater for maximum efficiency. This study opens a new possibility to solve the long-lasting challenges of algal biofuel feedstock production, i.e., low productivity and high cost of algal cultivation.
机译:在这项工作中,我们研究了一种新颖的藻类培养策略,混合营养型微藻生物膜,以提高藻类生物燃料生产的生产率和成本效率。与以前的方法相比,这种改进的方法可以利用混合营养生长的高效率优势实现低成本,高生产率,即能够依靠无机碳和有机碳生存,从而不受有限的光照影响,并且微藻生物膜的捕捞成本低。我们的结果作为该类型的最早研究之一,证明了在混合营养条件下微藻生物膜表现出显着更高的生物燃料原料生产力和质量:生物量产量提高2-3倍,脂质积累提高2-10倍以及40与自养条件下的微藻生物膜相比,灰分含量降低–60%。此外,我们调查了细胞表面性质(疏水性和粗糙度)对微藻生物膜生长活性的影响,发现混合营养生物膜的生产力与表面疏水性显着相关。最后,我们的工作证明了将这种新颖的栽培方法与废水相结合以实现最大效率的适用性。这项研究为解决藻类生物燃料原料生产的长期挑战(即藻类生产的低生产率和高成本)开辟了新的可能性。

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