Michal Bittner, Lucie Báborská, Kateřina Bočková, Anna Ireinová, Marek Holba, Jaroslav Lev, Daniel Polášek, Lucie Bláhová, Bryan W Brooks, Luděk Bláha
For wastewater to provide freshwater resources, reclaimed water should not contain pharmaceutical active compounds (PhACs) or other contaminants that pose significant ecological or health risks. This consideration addresses a recent European Union (EU) wastewater regulation mandating an 80% removal efficiency (RE) for indicator PhACs. We investigated REs of six different quaternary treatment technologies (QTTs) over a year-long study to identify seasonal variability and potential environmental risks of PhACs in recycled water. Wastewater from both a WWTP effluent and subsequent QTT effluents was sampled approximately every two to six weeks and processed by solid-phase extraction, and 12 indicator PhACs were analyzed by LC-MS/MS. Though no RE was observed for ultrafiltration (UF) and limited RE for granular activated carbon (GAC) and GAC + UV, advanced treatment with ozonation (UF + O3) and reverse osmosis (UF + GAC + UV + RO) achieved over 99% RE for most PhACs during both cold and warm seasons. Probabilistic environmental hazard assessments demonstrated that even after QTT, some PhACs, particularly diclofenac, remained at concentrations that exceeded predicted no-effect concentrations, indicating the need for continued improvement in wastewater treatment and water reclamation strategies.