Thermochemical valorization of argan nutshells: Torrefaction and air-steam gasification

被引:18
作者
Afailal, Zainab [1 ]
Gil-Lalaguna, Noemi [1 ]
Fonts, Isabel [1 ]
Gonzalo, Alberto [1 ]
Arauzo, Jesus [1 ]
Sanchez, Jose Luis [1 ]
机构
[1] Univ Zaragoza, Aragon Inst Engn Res I3A, Thermochem Proc Grp, C Mariano Esquillor S-N, Zaragoza, Spain
关键词
Argan nutshells; Waste valorization; Torrefaction; Air-steam gasification; Syngas quality; PARTICLE-SIZE; SEWAGE-SLUDGE; TAR FORMATION; BIOMASS; WOOD; TEMPERATURE; SHELLS; PERFORMANCE; PYROLYSIS; CARBON;
D O I
10.1016/j.fuel.2022.125970
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
The upswing of argan's oil for the cosmetic industry has increased the farming of this plant and originated an unexplored residue of complex treatment, its nutshells. This work deals with the characterization of this feedstock, its pretreatment via torrefaction and its gasification either with or without the pretreatment stage. Torrefaction was carried out in a continuous auger reactor at two temperatures, 220 and 250 degrees C. Hemicellulose was almost totally removed from argan nutshells after torrefaction. Compared to the raw argan shells, the torrefied solids showed an increased content of fixed carbon, a noticeable reduction in the O/C ratio and a significant increase in the HHV, the higher the torrefaction temperature. Chemical thermodynamic equilibrium calculations were implemented to the gasification stage to calculate the equivalence ratio for auto-thermal operation and to assess the effect of temperature and steam-to-biomass ratio on gas yield and composition. Air-steam gasification was also experimentally tested for the raw and torrefied materials at the operational conditions drawn from the simulation results. The torrefied material gasification yielded four times more char than the raw material, while tar production from the torrefied material was only reduced in the presence of steam (anyway starting from a low value: 0.7 g/m(3)STP for raw argan shells vs 0.3 g/m(3)STP for the torrefied material). Nor gas production, neither the H-2/CO ratio nor the energy content in syngas were improved by gasifying the torrefied material, so torrefaction does not appear to be a profitable pretreatment stage for the gasification of argan nutshells from the point of view of syngas quality.
引用
收藏
页数:13
相关论文
共 55 条
[1]   Antioxidant Additives Produced from Argan Shell Lignin Depolymerization [J].
Afailal, Zainab ;
Gil-Lalaguna, Noemi ;
Teresa Torrijos, Maria ;
Gonzalo, Alberto ;
Arauzo, Jesus ;
Luis Sanchez, Jose .
ENERGY & FUELS, 2021, 35 (21) :17149-17166
[2]  
Ahrenfeldt J., 2005, Handbook Biomass Gasification, V1st
[3]   Optimization of palm kernel shell torrefaction to produce energy densified bio-coal [J].
Asadullah, Mohammad ;
Adi, Ag Mohammad ;
Suhada, Nurul ;
Malek, Nur Hanina ;
Saringat, Muhammad Ilmam ;
Azdarpour, Amin .
ENERGY CONVERSION AND MANAGEMENT, 2014, 88 :1086-1093
[4]   Sewage Sludge Torrefaction in an Auger Reactor [J].
Atienza-Martinez, Maria ;
Francisco Mastral, Jose ;
Abrego, Javier ;
Ceamanos, Jesus ;
Gea, Gloria .
ENERGY & FUELS, 2015, 29 (01) :160-170
[5]   Hydrogen-rich syngas production from palm kernel shells (PKS) biomass on a downdraft allothermal gasifier using steam as a gasifying agent [J].
Barco-Burgos, J. ;
Carles-Bruno, J. ;
Eicker, U. ;
Saldana-Robles, A. L. ;
Alcantar-Camarena, V. .
ENERGY CONVERSION AND MANAGEMENT, 2021, 245
[6]   Effect of temperature and dolomite on tar formation during gasification of torrefied biomass in a pressurized fluidized bed [J].
Berrueco, C. ;
Montane, D. ;
Guell, B. Matas ;
del Alamo, G. .
ENERGY, 2014, 66 :849-859
[7]  
Boonstra MJ., 2008, A two-stage thermal modification of wood
[8]   Fluidized Bed Torrefaction of Commercial Wood Pellets: Process Performance and Solid Product Quality [J].
Brachi, Paola ;
Chirone, Riccardo ;
Miccio, Michele ;
Ruoppolo, Giovanna .
ENERGY & FUELS, 2018, 32 (09) :9459-9469
[9]   Valorization of Sugar Beet Pulp via Torrefaction with a Focus on the Effect of the Preliminary Extraction of Pectins [J].
Brachi, Paola ;
Riianova, Evelina ;
Miccio, Michele ;
Miccio, Francesco ;
Ruoppolo, Giovanna ;
Chirone, Riccardo .
ENERGY & FUELS, 2017, 31 (09) :9595-9604
[10]   Hydrogen and CNT Production by Methane Cracking Using Ni-Cu and Co-Cu Catalysts Supported on Argan-Derived Carbon [J].
Cazana, Fernando ;
Afailal, Zainab ;
Gonzalez-Martin, Miguel ;
Luis Sanchez, Jose ;
Latorre, Nieves ;
Romeo, Eva ;
Arauzo, Jesus ;
Monzon, Antonio .
CHEMENGINEERING, 2022, 6 (04)