Numerical Modeling of Oxygen Carrier Performances (NiO/NiAl2O4) for Chemical-Looping Combustion

被引:9
作者
Blas, Lucia [1 ]
Dutournie, Patrick [2 ]
Jeguirim, Mejdi [2 ]
Josien, Ludovic [2 ]
Chiche, David [3 ]
Bertholin, Stephane [3 ]
Lambert, Arnold [3 ]
机构
[1] LGRE, Lab Gest Risques, Environm Bis 3, Rue Alfred Werner, F-68093 Mulhouse, France
[2] Univ Haute Alsace, Univ Strasbourg, IS2M, UMR CNRS 7361, 3 Bis,Rue Alfred Werner, F-68098 Mulhouse, France
[3] IFP Energies Nouvelles, Rond Point Echangeur Solaize, BP 3, F-69360 Solaize, France
关键词
NiO reactivity; nickel migration; chemical looping combustion; fixed bed reactor; modelling; POWER-GENERATION SYSTEM; HYDROGEN-PRODUCTION; OXIDATION-KINETICS; BED REACTOR; REDUCTION; REACTIVITY; IMPREGNATION; METHODOLOGY; VALIDATION; SIMULATION;
D O I
10.3390/en10070864
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This work was devoted to study experimentally and numerically the oxygen carrier (NiO/NiAl2O4) performances for Chemical-Looping Combustion applications. Various kinetic models including Shrinking Core, Nucleation Growth and Modified Volumetric models were investigated in a one-dimensional approach to simulate the reactive mass transfer in a fixed bed reactor. The preliminary numerical results indicated that these models are unable to fit well the fuel breakthrough curves. Therefore, the oxygen carrier was characterized after several operations using Scanning Electronic Microscopy (SEM) coupled with equipped with an energy dispersive X-ray spectrometer (EDX). These analyses showed a layer rich in nickel on particle surface. Below this layer, to a depth of about 10 mu m, the material was low in nickel, being the consequence of nickel migration. From these observations, two reactive sites were proposed relative to the layer rich in nickel (particle surface) and the bulk material, respectively. Then, a numerical model, taking into account of both reactive sites, was able to fit well fuel breakthrough curves for all the studied operating conditions. The extracted kinetic parameters showed that the fuel oxidation was fully controlled by the reaction and the effect of temperature was not significant in the tested operating conditions range.
引用
收藏
页数:16
相关论文
共 43 条
[1]   Extended Euler-Euler model for the simulation of a 1 MWth chemical-looping pilot plant [J].
Alobaid, Falah ;
Ohlemueller, Peter ;
Stroehle, Jochen ;
Epple, Bernd .
ENERGY, 2015, 93 :2395-2405
[2]  
Annamalai K., 2007, Combustion Science and Engineering
[3]  
[Anonymous], 2007, TRANSPORT PHENOMENA
[4]  
[Anonymous], 2014, CLIMATE CHANGE 2014, V80, P1
[5]  
[Anonymous], 2006 IPCC GUIDELINES
[6]   Screening and techno-economic assessment of biomass-based power generation with CCS technologies to meet 2050 CO2 targets [J].
Bhave, Amit ;
Taylor, Richard H. S. ;
Fennell, Paul ;
Livingston, William R. ;
Shah, Nilay ;
Mac Dowell, Niall ;
Dennis, John ;
Kraft, Markus ;
Pourkashanian, Mohammed ;
Insa, Mathieu ;
Jones, Jenny ;
Burdett, Nigel ;
Bauen, Ausilio ;
Beal, Corinne ;
Smallbone, Andrew ;
Akroyd, Jethro .
APPLIED ENERGY, 2017, 190 :481-489
[7]   Thermal stability study of NiAl2O4 binders for Chemical Looping Combustion application [J].
Blas, Lucia ;
Dutournie, Patrick ;
Dorge, Sophie ;
Josien, Ludovic ;
Kehrli, Damaris. ;
Lambert, Arnold .
FUEL, 2016, 182 :50-56
[8]   Influence of the regeneration conditions on the performances and the microstructure modifications of NiO/NiAl2O4 for chemical looping combustion [J].
Blas, Lucia ;
Dorge, Sophie ;
Michelin, Laure ;
Dutournie, Patrick ;
Lambert, Arnold ;
Chiche, David ;
Bertholin, Stephane .
FUEL, 2015, 153 :284-293
[9]   Study of the performances of an oxygen carrier: Experimental investigation of the binder's contribution and characterization of its structural modifications [J].
Blas, Lucia ;
Dorge, Sophie ;
Dutournie, Patrick ;
Lambert, Arnold ;
Chiche, David ;
Bertholin, Stephane ;
Josien, Ludovic .
COMPTES RENDUS CHIMIE, 2015, 18 (01) :45-55
[10]   Novel quasi-autothermal hydrogen production process in a fixed-bed using a chemical looping approach: A numerical study [J].
Diglio, Giuseppe ;
Bareschino, Piero ;
Mancusi, Erasmo ;
Pepe, Francesco .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (22) :15010-15023