Water Pollution Research Department, National Research Centre, 33El-Bohouth St. (Former El-Tahrir St.), Dokki, P.O. 12622, Giza, Egypt.
Cellulose and Paper Department, National Research Centre, 33El-Bohouth St. (Former El-Tahrir St.), Dokki, P.O. 12622, Giza, Egypt.
Sci Rep. 2023 Sep 20;13(1):15601. doi: 10.1038/s41598-023-42876-7.
Although submerged membrane bioreactor (MBR) are widely used in treating municipal wastewater and recovery of potential resources, membrane operational parameters and membrane fouling control remain debated issues. In this study, the treatment of municipal wastewater by MBR at high-biomass sludge (MLSS (g/L) ranging from 5.4 g/L to 16.1 g/L) was assessed at an organic loading rates (OLRs) ranging from 0.86 to 3.7 kg COD/md. The correlation between trans-membrane pressure and total fouling resistance was thoroughly investigated in this study. According to the findings, greater OLRs of 0.86 to 3.7 kg COD/md caused a decrease in COD, BOD, and NH-N removal efficiency, and higher OLRs of 3.7 kg COD/md resulted in a higher increase in total fouling resistance (R). The economic study of using the MBR system proved that for a designed flow rate of 20 m/d, the payback period from using the treated wastewater will be 7.98 years, which confirms the economic benefits of using this MBR for treating municipal wastewater. In general, understanding the challenges facing the efficiency of MBR would improve its performance and, consequently, the sustainability of wastewater reclamation.
尽管浸没式膜生物反应器(MBR)广泛用于处理城市污水和回收潜在资源,但膜操作参数和膜污染控制仍然是有争议的问题。在本研究中,以高生物质污泥(MLSS(g/L)范围为 5.4 g/L 至 16.1 g/L)的 MBR 处理城市污水,在有机负荷率(OLR)范围为 0.86 至 3.7 kg COD/md 下进行评估。本研究彻底研究了跨膜压力与总污染阻力之间的相关性。根据研究结果,更高的 OLR(0.86 至 3.7 kg COD/md)会降低 COD、BOD 和 NH-N 的去除效率,而更高的 OLR(3.7 kg COD/md)会导致总污染阻力(R)的更高增加。使用 MBR 系统的经济研究证明,对于设计流量为 20 m/d 的系统,使用处理后的废水的投资回收期为 7.98 年,这证实了使用 MBR 处理城市污水的经济效益。总的来说,了解 MBR 效率面临的挑战将提高其性能,从而提高废水回收的可持续性。