Publicación:
THERMAL BEHAVIOR, REACTION PATHWAYS AND KINETIC IMPLICATIONS OF USING A NI/SIO 2 CATALYST FOR WASTE TIRE PYROLYSIS

dc.creatorRAYDEL MANRIQUE SUAREZ
dc.creatorFELIPE EDUARDO ALFONSO SOBREVÍA VALENZUELA
dc.creatorLUIS ERNESTO ARTEAGA PÉREZ
dc.date2021
dc.date.accessioned2025-01-10T15:26:08Z
dc.date.available2025-01-10T15:26:08Z
dc.date.issued2021
dc.description.abstractCATALYTIC PYROLYSIS HAS BEEN USED TO UPGRADING THE QUALITY OF PYROLYTIC LIQUIDS. HEREIN, WE REPORT A COMPREHENSIVE STUDY ON THE CATALYTIC PYROLYSIS OF WASTE TIRES USING NI/SIO2 AS CATALYSTS. THE ANALYSES WERE CARRIED OUT BY COMBINING THERMOGRAVIMETRY (TGA), TGA INTERFACED TO A FOURIER TRANSFORM INFRARED SPECTROMETER (TGA?FTIR), AND PYROLYSIS COUPLED TO GAS CHROMATOGRAPHY/MASS SPECTROMETER (PY?GC/MS) TECHNIQUES. DURING WASTE TIRE DECOMPOSITION, THE MAIN FUNCTIONAL GROUPS DETECTED IN THE FTIR WERE ALKENES, AROMATICS, AND HETEROATOMS-CONTAINING GROUPS SUCH AS NITROGEN, SULFUR, AND OXYGEN. MEANWHILE, BY PY?GC/MS WERE IDENTIFIED MAINLY D,L-LIMONENE, ISOPRENE, BENZENE, TOLUENE, XYLENES (BTX), AND P-CYMENE. THE PY?GC/MS EXPERIMENTS AT THREE DIFFERENT TEMPERATURES (350, 400, AND 450 °C) SUGGESTED AN EFFECT OF THE CATALYST ON PRODUCT DISTRIBUTION. THE NI CATALYST PROMOTED CYCLIZATION REACTIONS AND SUBSEQUENTLY AROMATIZATION, LEADING TO AN IMPROVED VAPORS COMPOSITION. THE USE OF ISO-CONVERSIONAL KINETIC MODELS ALONG WITH MASTER PLOTS ALLOWS PROPOSING A MULTIPLE-STEP REACTION MECHANISM, WHICH WAS WELL DESCRIBED BY THE AVRAMI?EROFEEV, RANDOM SCISSION, AND TRUNCATED SESTAK?BERGGREN MODELS. THE VALUES OF ACTIVATION ENERGIES SHOW DIFFERENCES FOR THE CATALYZED AND UNCATALYZED PYROLYSIS (111.0 KJ MOL?1 AND 168.4 KJ MOL?1), VALIDATING THE EFFECTIVITY OF NI/SIO2. FINALLY, THE THERMAL BIOT (>?1) AND PYI AND PYII NUMBERS (10?3?
dc.formatapplication/pdf
dc.identifier.doi10.1007/s12649-021-01494-y
dc.identifier.issn1877-265X
dc.identifier.issn1877-2641
dc.identifier.urihttps://repositorio.ubiobio.cl/handle/123456789/12001
dc.languagespa
dc.publisherWaste and Biomass Valorization
dc.relation.uri10.1007/s12649-021-01494-y
dc.rightsPUBLICADA
dc.titleTHERMAL BEHAVIOR, REACTION PATHWAYS AND KINETIC IMPLICATIONS OF USING A NI/SIO 2 CATALYST FOR WASTE TIRE PYROLYSIS
dc.typeARTÍCULO
dspace.entity.typePublication
ubb.EstadoPUBLICADA
ubb.Otra ReparticionDEPARTAMENTO DE INGENIERIA EN MADERAS
ubb.Otra ReparticionRECTORIA
ubb.Otra ReparticionDEPARTAMENTO DE INGENIERIA EN MADERAS
ubb.SedeCONCEPCIÓN
ubb.SedeCONCEPCIÓN
ubb.SedeCONCEPCIÓN
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