Paquette Alexandre J, Vadlamani Agasteswar, Demirkaya Cigdem, Strous Marc, De la Hoz Siegler Hector
Department of Geoscience, University of Calgary, Calgary, AB, Canada.
Department of Chemical and Petroleum Engineering, University of Calgary, Calgary, AB, Canada.
Front Bioeng Biotechnol. 2022 Aug 11;10:942771. doi: 10.3389/fbioe.2022.942771. eCollection 2022.
Alkaliphilic cyanobacteria have gained significant interest due to their robustness, high productivity, and ability to convert CO into bioenergy and other high value products. Effective nutrient management, such as re-use of spent medium, will be essential to realize sustainable applications with minimal environmental impacts. In this study, we determined the solubility and uptake of nutrients by an alkaliphilic cyanobacterial consortium grown at high pH and alkalinity. Except for Mg, Ca, Co, and Fe, all nutrients are in fully soluble form. The cyanobacterial consortium grew well without any inhibition and an overall productivity of 0.15 g L d (AFDW) was achieved. Quantification of nutrient uptake during growth resulted in the empirical formula CHNOPS for the consortium biomass. We showed that spent medium can be reused for at least five growth/harvest cycles. After an adaptation period, the cyanobacterial consortium fully acclimatized to the spent medium, resulting in complete restoration of biomass productivity.
嗜碱蓝藻细菌因其强大的生命力、高生产力以及将二氧化碳转化为生物能源和其他高价值产品的能力而备受关注。有效的养分管理,如对废培养基的再利用,对于实现对环境影响最小的可持续应用至关重要。在本研究中,我们测定了在高pH值和碱度条件下生长的嗜碱蓝藻细菌聚生体对养分的溶解度和吸收情况。除了镁、钙、钴和铁之外,所有养分均以完全可溶的形式存在。该蓝藻细菌聚生体生长良好,未受到任何抑制,实现了0.15 g L d(无灰干重)的总体生产力。对生长过程中养分吸收的量化得出了该聚生体生物量的经验公式CHNOPS。我们表明,废培养基可重复使用至少五个生长/收获周期。经过适应期后,蓝藻细菌聚生体完全适应了废培养基,从而使生物量生产力得以完全恢复。