School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Biofouling. 2022 May;38(5):415-426. doi: 10.1080/08927014.2022.2081805. Epub 2022 Jun 10.
Membrane costs and biofouling limit applications of membrane bioreactors (MBRs) for wastewater treatment. Here, powdered activated carbon (PAC) utilization in the formation and performance of a self-forming dynamic membrane consisting of activated sludge and PAC during hybrid wastewater treatment process was studied. Short-term agitation helped (non)biological particles to quickly uniformly settle on mesh filter, forming more uniform PAC-containing dynamic membranes (PAC-DMs). PAC adsorbed adhesive materials, resulting in an increase in average floc size and DM permeability while decreasing biofouling. The most efficient PAC concentration was 4 g L considering techno-economics, i.e. the highest effluent quality (turbidity of 19.89 NTU) and the lowest biofouling (transmembrane pressure rise of 2.89 mbar). Short-term performance of hybrid PAC-DM bioreactor (PAC-DMBR) showed stability in effluent quality improvement including 92%, 95%, 83%, 84% and 98% reductions in turbidity, chemical oxygen demand, total dissolved solids, total nitrogen, and total phosphorous, respectively. Accordingly, adopting hybrid PAC-DMBR has potential to alleviate biofouling and capital cost.
膜成本和生物污染限制了膜生物反应器 (MBR) 在废水处理中的应用。在这里,研究了粉末活性炭 (PAC) 在混合废水处理过程中形成和性能自形成动态膜的活性污泥和 PAC 中的应用。短期搅拌有助于(非)生物颗粒快速均匀地沉降在滤网,形成更均匀的含 PAC 的动态膜(PAC-DM)。PAC 吸附粘性物质,导致平均絮体尺寸和 DM 渗透率增加,同时减少生物污染。从技术经济角度考虑,最有效的 PAC 浓度为 4 g/L,即最高的出水质量(浊度为 19.89 NTU)和最低的生物污染(跨膜压力升高 2.89 mbar)。混合 PAC-DM 生物反应器 (PAC-DMBR) 的短期性能表现出在改善出水质量方面的稳定性,分别使浊度、化学需氧量、总溶解固体、总氮和总磷的去除率达到 92%、95%、83%、84%和 98%。因此,采用混合 PAC-DMBR 有潜力缓解生物污染和资本成本。