Department of Biosciences & Bioengineering, Indian Institute of Technology, Guwahati, Assam, 781039, India.
Department of Biotechnology, Gandhi Institute of Technology and Management (GITAM) University, Visakhapatnam, Andhra Pradesh, 530045, India.
J Environ Manage. 2022 Sep 15;318:115539. doi: 10.1016/j.jenvman.2022.115539. Epub 2022 Jun 18.
A novel CO tolerant microalga Tetradesmus obliquus CT02, was previously evaluated to be a suitable bio refinery platform for synthesis of bioactive molecules, biodiesel, and biofertilizer. In the present study, a process engineering strategy was developed targeting improved growth performance of the strain at large scale under fluctuating outdoor environmental conditions. The strategy relies on maintaining pH of the culture at its optimal value via cascade control with CO feeding. The strategy was developed at laboratory scale bubble column photobioreactor under diurnal variation of simulated sunlight intensity and was further validated through growth performance of the strain under outdoor conditions in a 100 L airlift bioreactor. Under laboratory condition, 53.3% and 85.16% improvement in biomass concentration (1.87 g L) and productivity (114.8 mg L day) was achieved as compared to the uncontrolled pH, respectively. The strategy demonstrated a significant improvement in biomass concentration and productivity by 225.7% and 121.6% respectively, compared to the pH uncontrolled batch, even under outdoor fluctuating environmental condition.
先前曾评估过一种新型耐 CO 微藻 Tetradesmus obliquus CT02,它适合作为生物精炼平台来合成生物活性分子、生物柴油和生物肥料。在本研究中,开发了一种工艺工程策略,旨在针对在波动的户外环境条件下大规模提高该菌株的生长性能。该策略依赖于通过 CO 进料的级联控制将培养物的 pH 值维持在最佳值。该策略在实验室规模的鼓泡柱光生物反应器中,根据模拟太阳光强度的日变化进行开发,并在 100L 气升式生物反应器中通过该菌株在户外条件下的生长性能进行了验证。在实验室条件下,与未控制 pH 值相比,生物量浓度(1.87g/L)和生产力(114.8mg/L·天)分别提高了 53.3%和 85.16%。与未控制 pH 值的批次相比,该策略甚至在户外波动的环境条件下,也使生物量浓度和生产力分别提高了 225.7%和 121.6%。