In this work, Life Cycle Assessment has been applied for the evaluation of UVC-based photochemical treatments to deal with wastewater treatment plant effluents. In particular, UVC photolysis, UVC/H 2 O 2 combination and UVC/H 2 O 2 /Fe(II) (namely photo-Fenton) were tested at pH ca. 7.5. Clostridium spp. was chosen as target species to test disinfection. Both, UVC/H 2 O 2 and photo-Fenton were able to decrease Clostridium spp. below detection limit in 5 min. Best results were reached with H 2 O 2 concentration of 21 mM. Coupling coagulation-flocculation with the photochemical process was tested for effluents with high organic load and turbidity. Global warming potential selected UVC photolysis as the best treatment for disinfection from the environmental point of view, despite its lower efficiency. However, when CECs removal was considered using acetaminophen as target contaminant, photo-Fenton was the most efficient and the most sustainable option. Finally, LCA was applied to the experimental work performed in the laboratory, showing that the effect of reactions was negligible vs. sample collection and transportation, as well as analytical procedures which accounted for more than 99 % of the impact. • UVC/H₂O₂ process is the most effective method to remove Clostridium spp. from WWTP effluents. • LCA shows that UVC photolysis was more sustainable, due to the lower chemicals consumption. • Circumneutral photo-Fenton is more efficient for acetaminophen removal, also showing lower GWP. • Chemical decontamination shows higher GWP than disinfection. • LCA revealed laboratory experiments have lower impact, when compared with sample transportation and analysis.
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López-Timoner et al. (2025) studied this question.
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