Department of Chemical & Biomolecular Engineering, National University of Singapore, Singapore.
Clean Technologies, Scion, Rotorua, New Zealand.
Chemosphere. 2019 Jan;215:893-903. doi: 10.1016/j.chemosphere.2018.10.085. Epub 2018 Oct 16.
A sequencing batch bioreactor (SBR) treating municipal wastewater was photosynthetically aerated using microalgae cultivated in a photobioreactor (PBR). Symbiotic interactions and CO/O exchange were established between activated sludge in the SBR and microalgae in the PBR through hydrophobic hollow fiber membranes. Photosynthetic aeration enhanced COD removal in the SBR from 52.2% (without external aeration) to 90.3%, whereas N-NH and P-PO removal increased by 63.5% and 90.4%, respectively. The SBR performance under photosynthetic aeration was comparable to that under mechanical aeration. However, no nitrification was observed in the SBR, indicating oxygen limitation and poor growth condition for nitrifiers. In the PBR, there was a rapid increase in biomass concentration and it stabilized at 3.0 g/L after 22 days of operation. High nitrogen demand in the PBR indicated the steady flow of inorganic carbon from the SBR through the membranes. Prolonged oxygen limitation and massive sludge attachment on the membranes resulted in low suspended sludge concentration in the SBR. Microbial community analysis indicated gradual enrichment of facultative and strictly anaerobic microorganisms in the SBR. These results highlight the potential of microalgae in lowering the cost of wastewater aeration and underline the challenges in sustaining symbiotic gas exchange during long-term.
采用光合曝气法,利用在光生物反应器中培养的微藻对处理城市污水的序批式生物反应器(SBR)进行处理。通过疏水性中空纤维膜在 SBR 中的活性污泥和 PBR 中的微藻之间建立共生相互作用和 CO/O 交换。光合曝气将 SBR 中的 COD 去除率从 52.2%(无外部曝气)提高到 90.3%,同时,N-NH 和 P-PO 的去除率分别提高了 63.5%和 90.4%。光合曝气下的 SBR 性能可与机械曝气下的性能相媲美。然而,SBR 中未观察到硝化作用,表明硝化菌受到氧气限制且生长条件较差。在 PBR 中,生物量浓度迅速增加,经过 22 天的运行后稳定在 3.0 g/L。PBR 中对氮的高需求表明无机碳从 SBR 通过膜稳定流动。长时间的氧气限制和大量污泥在膜上的附着导致 SBR 中悬浮污泥浓度降低。微生物群落分析表明,SBR 中兼性和好氧微生物逐渐富集。这些结果突出了微藻在降低废水曝气成本方面的潜力,并强调了在长期运行中维持共生气体交换的挑战。