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dc.contributor.authorPérez Rodríguez, Pedro
dc.contributor.otherOvando Medina, Víctor Manuel
dc.contributor.otherMartínez Amador, Silvia Yudith
dc.contributor.otherRodríguez de la Garza, José Antonio
dc.date.accessioned2018-04-27T23:48:18Z
dc.date.available2018-04-27T23:48:18Z
dc.date.issued2017
dc.identifier.urihttp://repositorio.uaaan.mx:8080/xmlui/handle/123456789/43332
dc.descriptionCompuesto de poliuretanoes_MX
dc.formatPDFes_MX
dc.languageIngleses_MX
dc.publisherUniversidad Autónoma Agraria Antonio Narro
dc.rightsAcceso Abiertoes_MX
dc.rights.uriCC BY-NC-ND - Atribución-NoComercial-SinDerivadases_MX
dc.subjectCIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍAes_MX
dc.subject.otherPolyurethanees_MX
dc.subject.otherPolypyrrolees_MX
dc.subject.otherGraphitees_MX
dc.subject.otherMicroorganismes_MX
dc.subject.otherMfces_MX
dc.titleBioanode of polyurethane graphite polypyrrole composite in microbial fuel cellses_MX
dc.typeArtículoes_MX
dc.description.abstractEn"Polyurethane (PU) foams were coated with graphite, and pyrrole monomer was subsequently polymerized onto its surface by chemical oxidization to obtain nanostructured polyurethane/graphite/polypyrrole (PU/Graph/PPy) composites, which were used for anaerobic microorganisms grown and tested as anodes in microbial fuel cells (MFC) using municipal wastewater as fuel. The effects of oxidizing agent type (ammonium persulfate and FeClz) used in pyrrole polymerization on the performance of electrodes in MFC were studied. Composites were characterized by Fourier Transform Infrared (FTIR) spectroscopy, Scanning Electron Microscopy (SEM), and by the four-point probes to determine conductivity. It was observed from SEM analysis that globular nanostructures of PPy were formed onto PU surface with average diameters between 120 and 450 nm, which are typical of aqueous polymerization of pyrrole monomer. The highest output power density observed in MFCs was 305.5 mW/m3 for the composite synthesized using FeCl3 as the oxidant, and 128.6 mW/m3 using the composite obtained with ammonium persulfate as oxidizing; the corresponding chemical oxygen demand (COD) removal were 48.2 and 45.5%, respectively. The calculated coulombic efficiency for PU/Graph/PPy composite obtained with FeCl3 as oxidant was of 9.4%. Internal resistance of MFC using the composite obtained with FeCl3 as-oxidant was determined by linear sweep voltammetry (LSV) and the variable resistance (VR) methods, giving 4.8 and 2.9 KO), respectively, with average maximum power density of 237.5 mW/m3."es_MX
dc.date.embargo2017
dc.type.versionVersión publicadaes_MX
dc.audienceEstudianteses_MX
dc.audienceInvestigadores
dc.publisher.placeSaltillo, Coahuila, Méxicoes_MX


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