Department of Chemical Engineering, University of Almería, 04120 Almería, Spain.
Department of Chemical Engineering, University of Almería, 04120 Almería, Spain; Research Centre CIAIMBITAL, University of Almería, 04120 Almería, Spain.
Bioresour Technol. 2024 Sep;407:131147. doi: 10.1016/j.biortech.2024.131147. Epub 2024 Jul 21.
In this study, the effects of shear stress and different culture media on the growth of the filamentous microalga Klebsormidium cf. nitens were studied. The microalga's growth, carotenoids and fatty acids were further evaluated in a pump-driven tubular photobioreactor. The results show that this microalga had the ability to withstand high shear stress and the adaptability to grow in a culture medium that lacks certain trace elements. K. cf. nitens grew consistently in the tubular photobioreactor at different average light intensities although it did not grow well in a tall bubble column. The carotenoid analysis revealed that the xanthophyll cycle was activated to protect the cell photosynthetic system. The fatty acids increased with irradiance, with linoleic acid (C18:2n6) making up over 50 % of the total fatty acids. This study supports the potential of employing pump-driven tubular photobioreactors to produce the filamentous microalga K. cf nitens at the large scale.
在这项研究中,研究了切应力和不同培养基对丝状微藻Klebsormidium cf. nitens 生长的影响。进一步在泵驱动管式光生物反应器中评估了微藻的生长、类胡萝卜素和脂肪酸。结果表明,这种微藻能够承受高切应力,并适应在缺乏某些痕量元素的培养基中生长。尽管在高大的气泡柱中生长不佳,但 K. cf. nitens 在不同平均光强的管式光生物反应器中始终生长。类胡萝卜素分析表明,叶黄素循环被激活以保护细胞光合系统。脂肪酸随光照强度增加,亚油酸(C18:2n6)占总脂肪酸的 50%以上。这项研究支持采用泵驱动管式光生物反应器大规模生产丝状微藻 K. cf nitens 的潜力。