RT journal article T1 Effect of seawater intrusion using real wastewater on an attached biomass system operating a nitrogen and phosphorus removal process A1 Egea-Corbacho Lopera, Agata A1 Romero Pareja, Pablo Mª A1 Aragón Cruz, Carlos A. A1 Pavón, C. A1 A1 Coello, M.D. A2 Tecnologías del Medio Ambiente K1 Marine intrusion K1 Moving biofilm bed reactor K1 Nutrient removal K1 Nitrogen removal K1 Phosphorus removal AB Wastewater treatment plants that are close to the coast and sea level often have problems with seawater intrusion. Because of this, three saline intrusions of 2%, 5% and 10% in volume (socks 1, 2 and 3 respectively) were carried out using actual wastewater. As a technology, a sequential biofilm batch reactor operating an enhanced biological phosphorus removal process was studied. The main focus of the study lies in the impact on the plant's nutrient removal performance during these seawater intrusion events until achieving system recovery. During the study a constant salinity profile was observed without large variations in the reactor after reproducing the seawater intrusions. The COD removal rate decreased below 80% and 65.4% for shock 2 and 3 respectively. In a seawater intrusion of 2% and 5% in volume, corresponding to shocks 1 and 2, TN removal decreased to 66.4% and 71.5%, respectively, and was subsequently restored to previous removal rate values (> 80%) 4 days after the shocks, in both cases. TP removal was negative after every shock due to increased concentrations in the effluent resulting from deficient PAO activity. This situation lasted for 9, 10 and 14 days for shocks 1, 2 and 3, respectively, until recovery of performance to the same levels as prior to the shocks. PB Elsevier SN 2213-3437 YR 2021 FD 2021 LK http://hdl.handle.net/10498/30236 UL http://hdl.handle.net/10498/30236 LA eng DS Repositorio Institucional de la Universidad de Cádiz RD 22-sep-2026