Domingos Dayane Gonzaga, Libardi Nelson, Henriques Rosana Oliveira, Xavier Jéssica Antunes, da Costa Rejane Helena Ribeiro
Department of Sanitary and Environmental Engineering, Federal University of Santa Catarina-UFSC, Florianópolis, 88040-970, Brazil.
Department of Chemical Engineering, Federal University of Santa Catarina-UFSC, Florianópolis, 88040-970, Brazil.
Bioprocess Biosyst Eng. 2021 Jan;44(1):161-171. doi: 10.1007/s00449-020-02432-3. Epub 2020 Aug 29.
This study investigated the effect of magnetite nanoparticles (Np-magnetite) added to a pilot-scale sequencing batch reactor (SBR) treating domestic wastewater, to improve aerobic granular sludge (AGS) formation and the effects of granule disintegration. Np-magnetite additions (75 mg L) were made during the start-up of the reactor and repeated after 100 and 170 days, when granule disintegration was observed. From the first Np-magnetite addition, SVI was reduced from 1315 to 85 mL g. The granular biomass was observed on the 56th day, when 57% of the granules presented diameters bigger than 212 µm. The 100-day disintegration episode disturbed the granular biomass, reducing the volatile suspended solids by 51%, increasing the SVI values to above 200 mL g. Np-magnetite addition recovered all the granular biomass parameters to the values observed before disintegration. The treatment efficiency was stable during operation of the reactor for nutrients (52.8 ± 23.4% NH-N; 54.5 ± 12.2% PO-P) and carbonaceous organic matter (71.7 ± 12.7% BOD; 77.5 ± 10.0% COD). Np-magnetite addition changed the microbial community of the granular sludge, analysed via high-throughput 16S RNA sequencing, and recovered the treatment efficiency previously disturbed by the disintegration processes. These results indicate the potential of Np-magnetite as an agent for sludge aggregation in an aerobic granular reactor.
本研究调查了向中试规模的序批式反应器(SBR)中添加磁铁矿纳米颗粒(Np-磁铁矿)对处理生活污水的影响,以改善好氧颗粒污泥(AGS)的形成以及颗粒解体的影响。在反应器启动期间添加Np-磁铁矿(75 mg/L),并在100天和170天后观察到颗粒解体时重复添加。从首次添加Np-磁铁矿开始,污泥体积指数(SVI)从1315降至85 mL/g。在第56天观察到颗粒生物质,此时57%的颗粒直径大于212 µm。100天的解体事件扰乱了颗粒生物质,使挥发性悬浮固体减少了51%,SVI值增加到200 mL/g以上。添加Np-磁铁矿使所有颗粒生物质参数恢复到解体前观察到的值。在反应器运行期间,对营养物质(氨氮去除率52.8±23.4%;总磷去除率54.5±12.2%)和含碳有机物(生化需氧量去除率71.7±12.7%;化学需氧量去除率77.5±10.0%)的处理效率保持稳定。通过高通量16S RNA测序分析,添加Np-磁铁矿改变了颗粒污泥的微生物群落,并恢复了此前因解体过程而受到干扰的处理效率。这些结果表明Np-磁铁矿作为好氧颗粒反应器中污泥聚集剂的潜力。