Brasil | Dissertação
dc.contributorRita de Cássia de Oliveira Sebastião
dc.contributorhttp://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4706354E9&tokenCaptchar=03AGdBq25DVxVDlRR3ZXNUfwohp7GVUdJmJ98UgqYamDuiau4_k32-tpPCo4--mHSvI4sukrWVJ85N-1kMVtV-dsqb34UbkG1kj5y5Do5SgVC4atKmLs5cISLJZQgezY9dv0Kd7fvi3nZ--9sIvSDq5Gxjm3cQK1jxM-m4jGCuIbpB7vh0vuzVPDX6NAX2GH2iiLiOs6umStzqceHGOSDsB5dJQTdEi2qovtIDAwYxYlUEMsTLn42wQ1oYrQDQRul6mCkt1ue53rX4S8rHCRYvnpazbFrYT_cURXVD4Qm6kln2gHRXXotd1bYnrl9ABXAPV5JBnYI5g6iZ2GruJBxsc0aRljuRppSLAxBceii8GdDw-vDt-aR7k5N1fdOkwWkE_r0WY5OkVsq_QYUaP8Bja__2bddajwNopqSZ_xe7_yanVQMlFnTN9K-9ZQeDgadWeXtw15MZ33f6hOwueJ2_MimJ3SBDyqcX5-4AhTNAGryrB01wvsUcyF9-Mspfb5VRvl3q4ZtzoGwlGsEgVBiTze0bT7pX24FUlAZoV4aFUqIFIPapojuxs2g
dc.contributorArilza de Oliveira Porto
dc.contributorVanya Marcia Duarte Pasa
dc.creatorNatália Regina de Souza Araujo
dc.date.accessioned2021-07-30T18:48:06Z
dc.date.accessioned2022-10-04T00:26:08Z
dc.date.available2021-07-30T18:48:06Z
dc.date.available2022-10-04T00:26:08Z
dc.date.created2021-07-30T18:48:06Z
dc.date.issued2021-02-22
dc.identifierhttp://hdl.handle.net/1843/37145
dc.identifierhttps://orcid.org/0000-0001-9138-6284
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/3834011
dc.description.abstractThe kinetic study of thermal decomposition of solids provides essential information about the thermal behavior of a system and its possible industrial applications. The correct determination of the kinetic triplet (activation energy, frequency factor, and parameters of the reaction model) depends, above all, on the choice of the most appropriate kinetic model to describe the system. To evaluate the green petroleum coke and sewage sludge, three kinetic analysis methods were used: isoconversional analysis, Cai-Liu empirical model, and distribution activation energy model (DAEM). The last two were optimized by Hopfield's neural network (HNN). The determination of the activation energy distribution, using the HNN algorithm, was performed for the first time in this work and simulated data were used to validate the computational code developed. The green petroleum coke was better adjusted using the Cai-Liu equation, which points to a reaction with the contribution of Avrami-Erofeev and first-order models. The kinetic parameters that best represent the coke decomposition are k0=3,1009e6 min^-1 e E0=112,51 kJ/mol. The sewage sludge presented multi-stage kinetics represented by a 5-DAEM process. The kinetic parameters that best represent the sludge decomposition are k0=1,26e10 min^-1 e E0=83,984; 111,328; 119,140; 130,859 e 146,375 kJ/mol.
dc.publisherUniversidade Federal de Minas Gerais
dc.publisherBrasil
dc.publisherICX - DEPARTAMENTO DE QUÍMICA
dc.publisherPrograma de Pós-Graduação em Química
dc.publisherUFMG
dc.rightsAcesso Aberto
dc.subjectModelos reacionais
dc.subjectDistribution of activation energy model DAEM
dc.subjectRede artificial de Hopfield
dc.subjectCombustível sólido
dc.subjectCoque verde de petróleo
dc.subjectLodo de estação de tratamento de esgoto
dc.subjectModelo de distribuição de energia de ativação DAEM
dc.titleEstudo da cinética de materiais complexos: modelos de reação e de distribuição de energia de ativação através de redes neurais de Hopfield
dc.typeDissertação


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