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dc.creatorAguas Y.
dc.creatorHincapie M.
dc.creatorMartínez-Piernas A.B.
dc.creatorAgüera A.
dc.creatorFernández-Ibáñez P.
dc.creatorNahim-Granados S.
dc.creatorPolo-López M.I.
dc.date2019
dc.date.accessioned2020-04-29T14:53:39Z
dc.date.available2020-04-29T14:53:39Z
dc.identifier.issn0013936X
dc.identifier.urihttp://hdl.handle.net/11407/5680
dc.descriptionIn this study, disinfection of urban wastewater (UWW) with two solar processes (H2O2 -20 mg/L and photo-Fenton 10 mg/L-Fe2+/20 mg/L-H2O2 at natural water pH) at pilot scale using a 60 L compound parabolic collector reactor for irrigation of two raw-eaten vegetables (lettuce and radish) has been investigated. Several microbial targets (total coliforms, Escherichia coli, Salmonella spp., and Enterococcus spp.) naturally occurring in UWW and 74 organic microcontaminants (OMCs) were monitored. Disinfection results showed no significant differences between both processes, showing the following inactivation resistance order: Salmonella spp. < E. coli < total coliforms < Enterococcus spp. Reductions of target microorganisms to concentrations below the limit of detection (LOD) was achieved in all cases with cumulative solar UV energy per volume (QUV) ranged from 12 to 40 kJ/L (90 min to 5 h). Solar photo-Fenton showed a reduction of 66% of OMCs and solar/H2O2 of 56% in 5 h treatment. Irrigation of radish and lettuce with solar treated effluents, secondary effluents, and mineral water was performed for 6 and 16 weeks, respectively. The presence of bacteria was monitored in surfaces and uptake of leaves, fruit, and also in soil. The bacterial concentrations detected were below the LOD in the 81.2% (lettuce) and the 87.5% (radish) of the total number of samples evaluated. Moreover, uptake of OMCs was reduced above 70% in crops irrigated with solar treated effluents in comparison with secondary effluents of UWW. © 2019 American Chemical Society.
dc.language.isoeng
dc.publisherAmerican Chemical Society
dc.relation.isversionofhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85070866752&doi=10.1021%2facs.est.9b00748&partnerID=40&md5=b9d46b0bdf69e38b399081c666f9e719
dc.sourceEnvironmental Science and Technology
dc.subjectBeverages
dc.subjectDisinfection
dc.subjectEscherichia coli
dc.subjectIrrigation
dc.subjectSalmonella
dc.subjectWastewater reclamation
dc.subjectWastewater treatment
dc.subjectAdvanced Oxidation Processes
dc.subjectCompound parabolic collector
dc.subjectLimit of detection
dc.subjectMicro-contaminants
dc.subjectMicrobial pathogens
dc.subjectNaturally occurring
dc.subjectSecondary effluent
dc.subjectSolar photo-Fenton
dc.subjectEffluents
dc.titleReclamation of Real Urban Wastewater Using Solar Advanced Oxidation Processes: An Assessment of Microbial Pathogens and 74 Organic Microcontaminants Uptake in Lettuce and Radish
dc.typeArticleeng
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.publisher.programIngeniería Ambiental
dc.identifier.doi10.1021/acs.est.9b00748
dc.publisher.facultyFacultad de Ingenierías
dc.affiliationAguas, Y., Universidad de Sucre, School of Engineering, Cra 28 No 5-268, Sincelejo, 700001, Colombia, Universidad de Medellín, School of Engineering, Cra 87 No 30-65, Medellín, 050026, Colombia; Hincapie, M., Universidad de Medellín, School of Engineering, Cra 87 No 30-65, Medellín, 050026, Colombia; Martínez-Piernas, A.B., CIESOL, Joint Centre University of Almería-CIEMAT, Almería, Spain; Agüera, A., CIESOL, Joint Centre University of Almería-CIEMAT, Almería, Spain; Fernández-Ibáñez, P., Nanotechnology and Integrated BioEngineering Centre, School of Engineering, University of Ulster, Newtownabbey, BT37 0QB, United Kingdom; Nahim-Granados, S., CIESOL, Joint Centre University of Almería-CIEMAT, Almería, Spain, Plataforma Solar de Almería-CIEMAT, Carretera Senés km 4, Tabernas, Almería, 04200, Spain; Polo-López, M.I., CIESOL, Joint Centre University of Almería-CIEMAT, Almería, Spain, Plataforma Solar de Almería-CIEMAT, Carretera Senés km 4, Tabernas, Almería, 04200, Spain
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