Research Group of Sustainable Energy, Air and Water Technology, Department of Bioscience Engineering, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerpen, Belgium.
Department of Biotechnology, Delft University of Technology, van der Maasweg 9, 2629 HZ Delft, the Netherlands.
Environ Sci Technol. 2021 Jun 15;55(12):8278-8286. doi: 10.1021/acs.est.0c08204. Epub 2021 Jun 4.
Purple non-sulfur bacteria (PNSB) show potential for microbial protein production on wastewater as animal feed. They offer good selectivity (i.e., low microbial diversity and high abundance of one species) when grown anaerobically in the light. However, the cost of closed anaerobic photobioreactors is prohibitive for protein production. Although open raceway reactors are cheaper, their feasibility to selectively grow PNSB is thus far unexplored. This study developed operational strategies to boost PNSB abundance in the biomass of a raceway reactor fed with volatile fatty acids. For a flask reactor run at a 2 day sludge retention time (SRT), matching the chemical oxygen demand (COD) loading rate to the removal rate in the light period prevented substrate availability during the dark period and increased the PNSB abundance from 50-67 to 88-94%. A raceway reactor run at a 2 day SRT showed an increased PNSB abundance from 14 to 56% when oxygen supply was reduced (no stirring at night). The best performance was achieved at the highest surface-to-volume ratio (10 m m increased light availability) showing productivities up to 0.2 g protein L day and a PNSB abundance of 78%. This study pioneered in PNSB-based microbial protein production in raceway reactors, yielding high selectivity while avoiding the combined availability of oxygen, COD, and darkness.
紫色非硫细菌(PNSB)在废水作为动物饲料方面显示出微生物蛋白生产的潜力。它们在光照下厌氧生长时表现出良好的选择性(即微生物多样性低,一种物种丰度高)。然而,封闭厌氧光生物反应器的成本对于蛋白质生产来说是过高的。尽管开放式跑道式反应器更便宜,但迄今为止,它们选择性生长 PNSB 的可行性尚未得到探索。本研究开发了操作策略,以提高跑道式反应器中生物质中 PNSB 的丰度,该反应器以挥发性脂肪酸为食。对于在 2 天污泥停留时间(SRT)下运行的烧瓶反应器,将化学需氧量(COD)的加载速率与光照期的去除速率相匹配,可以防止基质在黑暗期的可用性,并将 PNSB 的丰度从 50-67%增加到 88-94%。当减少氧气供应(夜间不搅拌)时,SRT 为 2 天的跑道式反应器中 PNSB 的丰度从 14%增加到 56%。当表面积与体积比最高(增加 10mm 的光可用性)时,表现出最佳性能,生产率高达 0.2g 蛋白 L 天,PNSB 的丰度为 78%。本研究率先在跑道式反应器中进行了基于 PNSB 的微生物蛋白生产,在避免氧气、COD 和黑暗的综合可用性的同时,实现了高选择性。