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Comparison of Fenton and Fered-Fenton processes for sustainable management of textile reverse osmosis concentrate: multivariate analysis approach

dc.contributor.authorCanbakal, Gamze
dc.contributor.authorErsoz, Oykue Nur
dc.contributor.authorCene, Gulay Arslan
dc.contributor.authorGuvenc, Senem Yazici
dc.contributor.authorCan-Guven, Emine
dc.contributor.authorVarank, Gamze
dc.date.accessioned2026-06-27T15:20:48Z
dc.date.issued2025
dc.description.abstractBackgroundWater scarcity and increasingly stringent discharge regulations are driving the adoption of sustainable water management strategies, necessitating the reuse of industrial wastewater and the implementation of zero or near-zero liquid discharge systems. Reverse osmosis (RO) is an effective technology for recycling wastewater in the textile industry. The elevated resistivity and decreased biodegradability of contaminants in RO concentrates generate a novel wastewater stream.ResultsThis study examines the reutilization of these wastewaters through Fenton and Fered-Fenton processes. The Box-Behnken design (BBD) was used to model process variables. The operational parameters for both processes were the H2O2/chemical oxygen demand (COD) ratio, Fe2+/H2O2 ratio, current density and reaction time. The evaluated system responses were COD, color index (CI) and ultraviolet absorbance at 254 nm (UV254) and 280 nm (UV280). The correlation coefficients (R2) for all created models approached 1, demonstrating the efficacy of the BBD method in modeling pollutant removal with the Fenton and Fered-Fenton processes. The Fenton process achieved removal efficiency of 73.5% for COD, 94.5% for CI, 84% for UV254 and 81% for UV280. The efficiencies obtained in the Fered-Fenton process were 87% for COD, 97.5% for CI, 94.5% for UV254 and 89% for UV280 under optimum conditions.ConclusionsThe results indicate that the modified Fenton process may be a more successful alternative method, notably owing to its enhanced removal efficiencies for organic matter. (c) 2025 Society of Chemical Industry (SCI).en
dc.description.urihttps://doi.org/10.1002/jctb.70030
dc.identifier.doi10.1002/jctb.70030
dc.identifier.eissn1097-4660
dc.identifier.endpage2199
dc.identifier.issn0268-2575
dc.identifier.issue10
dc.identifier.startpage2187
dc.identifier.urihttps://hdl.handle.net/20.500.14981/70005
dc.identifier.volume100
dc.identifier.wos001539507400001
dc.language.isoeng
dc.publisherWILEY
dc.relation.ispartofJOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY
dc.subjectcolor index
dc.subjectFenton
dc.subjectresponse surface methodology
dc.subjectreverse osmosis concentrate
dc.subjecttextile wastewater treatment
dc.subjectWASTE-WATER TREATMENT
dc.subjectELECTROCHEMICAL ADVANCED OXIDATION
dc.subjectELECTRO-FENTON
dc.subjectPEROXI-COAGULATION
dc.subjectLANDFILL LEACHATE
dc.subjectDEGRADATION
dc.subjectREMOVAL
dc.subjectEFFLUENT
dc.subjectH2O2
dc.subjectELECTROOXIDATION
dc.subjectBiotechnology & Applied Microbiology
dc.subjectChemistry
dc.subjectEngineering
dc.titleComparison of Fenton and Fered-Fenton processes for sustainable management of textile reverse osmosis concentrate: multivariate analysis approach
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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