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Distinctive effects of graphene oxide and reduced graphene oxide on methane production kinetics and pharmaceuticals removal in anaerobic reactors

Oriol Casabella-Font, M Riva, José Luís Balcázar, Jelena Radjenović, Maite Pijuan

2024Bioresource Technology14 citationsDOIOpen Access PDF

Abstract

VS) and biologically and hydrothermally reduced GO (bio-rGO and h-rGO, respectively) on the methane production kinetics and removal of 12 pharmaceuticals was assessed in Fed-batch reactors. A decrease of 15 % in methane production was observed in the tests with GO addition compared with the control and the h-rGO. However, bio-rGO and h-rGO substantially increased the methane production rate compared to the control tests (+40 %), in the third fed-batch test. Removal of pharmaceuticals was enhanced only during the bio-reduction of GO (1st fed-batch test), whereas once the GO was bio-reduced, it followed a similar trend in the control and h-rGO tests. The addition of GO can enhance the methane production rate and, therefore, reduce the anaerobic treatment time.

Topics & Concepts

GrapheneOxideMethaneKineticsProduction (economics)ChemistryMaterials scienceChemical engineeringEnvironmental scienceNanotechnologyEngineeringPhysicsOrganic chemistryEconomicsMacroeconomicsQuantum mechanicsGraphene and Nanomaterials Applications3D Printing in Biomedical ResearchMembrane Separation Technologies