School of Resources and Environment, Chengdu University of Information Technology, Chengdu 610225, China.
School of Resources and Environment, Chengdu University of Information Technology, Chengdu 610225, China.
Enzyme Microb Technol. 2023 Apr;165:110194. doi: 10.1016/j.enzmictec.2023.110194. Epub 2023 Jan 11.
An S-shaped photobioreactor was designed by adding grooves and baffles in the traditional photobioreactor to improve the culture efficiency of microalgae. After that, the parameters of the characterization of the S-shaped photobioreactor, such as the mixing time, gas holdup, and gas-liquid mass transfer coefficient, were determined. The biomass, lipid production rate, and average CO capture rate of microalgae were then analyzed under different culture modes. Finally, the feasibility of using digested piggery wastewater combined with simulated flue gas was explored as a culture mode for the microalgae and the lipid properties of the microalgae were analyzed. The results revealed that, at a flow rate of 0.08 vvm, the mixing time was reduced by 8.5 s, the gas hold-up increased by 44.6% and the gas-liquid mass transfer ability was also improved. Improvements were also observed in the biomass values, lipid production rate, and average CO capture rate of the microalgae under different culture conditions, with respective values reaching 0.23 g·(L·d), 70.28 mg·(L·d), and 0.43 g·(L·d) under the mixotrophic mode. Additionally, digested piggery wastewater combined with the simulated microalgae flue gas culture was determined to be feasible. The biomass, lipid production rate, and the average CO capture rate of microalgae, the values of which were 0.22 g·(L·d), 52.55 mg·(L·d), and 0.41 g·(L·d), respectively. Lipid was observed to have the potential to produce high-quality biofuel.
设计了一种 S 形光生物反应器,在传统光生物反应器中增加了凹槽和挡板,以提高微藻的培养效率。之后,确定了 S 形光生物反应器的特性参数,如混合时间、气体持液量和气液传质系数。然后在不同的培养模式下分析了微藻的生物量、油脂产率和平均 CO 捕集率。最后,探索了利用消化后的猪场废水与模拟烟道气结合作为微藻的培养模式的可行性,并分析了微藻的油脂特性。结果表明,在流量为 0.08 vvm 时,混合时间缩短了 8.5 s,气体持液量增加了 44.6%,气液传质能力也得到了提高。在不同的培养条件下,微藻的生物量、油脂产率和平均 CO 捕集率均有所提高,在混合营养培养模式下分别达到 0.23 g·(L·d)、70.28 mg·(L·d)和 0.43 g·(L·d)。此外,确定了利用消化后的猪场废水与模拟烟道气结合培养微藻是可行的。微藻的生物量、油脂产率和平均 CO 捕集率分别为 0.22 g·(L·d)、52.55 mg·(L·d)和 0.41 g·(L·d),油脂具有生产高质量生物燃料的潜力。