Alharbi Reem M
Biology Department, Science College, University of Hafr Al Batin, Hafr Al Batin, Saudi Arabia.
Environ Technol. 2025 Jul;46(18):3632-3644. doi: 10.1080/09593330.2025.2474252. Epub 2025 Mar 11.
Microalgae have been pioneering microbial cell factories for sustainable bioenergy production and other high-value product extraction. The present study affirms using mixed algal species (MAS) as a consortium for escalated biomass yield and lipid production under different calcium chloride and magnesium sulphate concentrations toward biofuel production. Of the different concentrations of Ca and Mg concentrations tested, 75 mg/L of calcium and 125 mg/L of magnesium displayed maximal biomass yield, cell density, and biomass productivity. The optimization revealed 18 days of day-light incubation for enhanced biomass and biochemical production. Further, a higher lipid content of 24.55% was noticed at 0 mg/L Ca, while a maximum lipid content of 22-23.2% was observed from the MAS grown in 100 and 125 mg/L Mg concentrations. Regarding the biodiesel yield from MAS, 0 mg/L Ca showed a higher biodiesel yield of 68.45%, while 65.62-68.33% was obtained from 75 mg/L and 125 mg/L Mg concentrations. In addition, the biodiesel produced from the high Ca concentration showed higher unsaturated fatty acids of 55.13%, whereas biodiesel obtained from a higher Mg - amended consortium presented high saturated fatty acids of 53.12%. The present work will enable environmental scientists to combinatorial benefits for utilizing microalgal consortium for circular bionomy aspects and attaining sustainable development goals. Moreover, the present attempt aims to assess the microalgal consortium-based - biodiesel production in accomplishing Sustainable Development Goal - 7 (clean and affordable energy) as enlisted by the UNSDG 2030 agenda.
微藻一直是可持续生物能源生产和其他高价值产品提取的开创性微生物细胞工厂。本研究证实,使用混合藻类物种(MAS)作为一个联合体,在不同氯化钙和硫酸镁浓度下提高生物量产量和脂质产量,以用于生物燃料生产。在所测试的不同钙和镁浓度中,75毫克/升的钙和125毫克/升的镁表现出最大的生物量产量、细胞密度和生物量生产力。优化结果显示,18天的日光培养可提高生物量和生化产物产量。此外,在0毫克/升钙的条件下,脂质含量更高,为24.55%,而在100和125毫克/升镁浓度下生长的MAS中观察到的最大脂质含量为22 - 23.2%。关于MAS的生物柴油产量,0毫克/升钙的生物柴油产量较高,为68.45%,而在75毫克/升和125毫克/升镁浓度下的产量为65.62 - 68.33%。此外,高钙浓度下生产的生物柴油显示出较高的不饱和脂肪酸含量,为55.13%,而从高镁改良联合体中获得的生物柴油则呈现出较高的饱和脂肪酸含量,为53.12%。本研究将使环境科学家能够综合利用微藻联合体实现循环生物经济,并实现可持续发展目标。此外,本研究旨在评估基于微藻联合体的生物柴油生产,以实现联合国可持续发展目标2030议程中列出的可持续发展目标7(清洁和负担得起的能源)。