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利用响应面法在废水中共培养微藻和细菌以生产最佳生物能源原料。

Co-cultivation of microalgae and bacteria for optimal bioenergy feedstock production in wastewater by using response surface methodology.

机构信息

Department of Civil and Environmental Engineering, Wayne State University, 5050 Anthony Wayne Dr, Detroit, MI, 48201, USA.

Department of Biological Sciences, Wayne State University, 5047 Gullen Mall, Detroit, MI, 48202, USA.

出版信息

Sci Rep. 2024 Sep 5;14(1):20703. doi: 10.1038/s41598-024-70033-1.

Abstract

This work uses response surface methodology (RSM) to study the co-cultivation of symbiotic indigenous wastewater microalgae and bacteria under different conditions (inoculum ratio of bacteria to microalgae, CO, light intensity, and harvest time) for optimal bioenergy feedstock production. The findings of this study demonstrate that the symbiotic microalgae-bacteria culture not only increases total microalgal biomass and lipid productivity, but also enlarges microalgal cell size and stimulates lipid accumulation. Meanwhile, inoculum ratio of bacteria to microalgae, light intensity, CO and harvest time significantly affect biomass and lipid productivity. CO concentration and harvest time have significant interactive effect on lipid productivity. The response of microalgal biomass and lipid productivity varies significantly from 2.1 × 10 to 1.9 × 10 cells/mL and 2.8 × 10 to 3.7 × 10 Total Fluorescent Units/mL respectively. Conditions for optimum biomass and oil accumulation are 100% of inoculation ratio (bacteria/microalgae), 3.6% of CO (v/v), 205.8 µmol/m/s of light intensity, and 10.6 days of harvest time. This work provides a systematic methodology with RSM to explore the benefits of symbiotic microalgae-bacteria culture, and to optimize various cultivation parameters within complex wastewater environments for practical applications of integrated wastewater-microalgae systems for cost-efficient bioenergy production.

摘要

本研究采用响应面法(RSM),研究了在不同条件(细菌与微藻接种比、CO、光照强度和收获时间)下共生土著废水微藻和细菌的共培养,以优化生物能源原料的生产。研究结果表明,共生微藻-细菌培养不仅提高了总微藻生物量和油脂生产力,还增大了微藻细胞的大小,刺激了油脂的积累。同时,细菌与微藻的接种比、光照强度、CO 和收获时间均显著影响生物量和油脂生产力。CO 浓度和收获时间对油脂生产力有显著的交互作用。微藻生物量和油脂生产力的响应范围分别为 2.1×10 至 1.9×10 个细胞/mL 和 2.8×10 至 3.7×10 总荧光单位/mL。最佳生物量和油脂积累的条件为 100%接种比(细菌/微藻)、3.6%的 CO(v/v)、205.8µmol/m/s 的光照强度和 10.6 天的收获时间。本研究采用响应面法提供了一种系统的方法,探索了共生微藻-细菌培养的益处,并优化了复杂废水环境中的各种培养参数,为集成废水-微藻系统在高效低成本生物能源生产中的实际应用提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ab9/11377697/8c352c3d9059/41598_2024_70033_Fig1_HTML.jpg

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