Utilize este identificador para referenciar este registo: https://hdl.handle.net/10316/108140
Título: Multiscale Modeling of a Packed Bed Chemical Looping Reforming (PBCLR) Reactor
Autor: Singhal, Arpit 
Cloete, Schalk
Quinta-Ferreira, Rosa M. 
Amini, Shahriar
Palavras-chave: chemical looping reforming; particle resolved direct numerical simulation (PR-DNS); heat transfer; multiscale; packed bed; reaction rate; steam methane reforming (SMR)
Data: 2017
Editora: MDPI
Projeto: This work is part of a European Union project under Seventh research framework program (FP7/2007-2013) under grant agreement No. 604656 called NanoSim—a multi-scale Simulation based design platform for Cost effective CO2 capture Processes using Nano-structured materials 
Título da revista, periódico, livro ou evento: Energies
Volume: 10
Número: 12
Resumo: Packed bed reactors are broadly used in industry and are under consideration for novel reactor concepts such as packed bed chemical looping reforming (PBCLR). Mass and heat transfer limitations in and around the particles in packed bed reactors strongly affect the behavior of these units. This study employs a multiscale modeling methodology to simulate a PBCLR reactor. Specifically, small-scale particle-resolved direct numerical simulation is utilized to improve large-scale mass transfer models for use in an industrial scale 1D model. Existing intra-particle mass transfer models perform well for simple first order reactions, but several model enhancements were required to model the more complex steam methane reforming reaction system. Three specific aspects required enhanced modeling: the generation of additional gas volume by the reforming reactions, the lack of clear reaction orders in the equilibrium reactions, and the diffusion of multiple reactant species into the particle. Large-scale simulations of the PBCLR reactor with the enhanced 1D model showed that the highly reactive Ni-based catalyst/oxygen carrier employed allows for the use of large particle sizes and high gas flowrates, offering potential for process intensification.
URI: https://hdl.handle.net/10316/108140
ISSN: 1996-1073
DOI: 10.3390/en10122056
Direitos: openAccess
Aparece nas coleções:FCTUC Eng.Química - Artigos em Revistas Internacionais

Ficheiros deste registo:
Mostrar registo em formato completo

Visualizações de página

60
Visto em 8/mai/2024

Downloads

24
Visto em 8/mai/2024

Google ScholarTM

Verificar

Altmetric

Altmetric


Este registo está protegido por Licença Creative Commons Creative Commons