Artículo

Basso, M.C.; Cerrella, E.G.; Buonomo, E.L.; Bonelli, P.R.; Cukierman, A.L. "Thermochemical conversion of Arundo donax into useful solid products" (2005) Energy Sources. 27(15):1429-1438
Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

Physico-chemical characteristics of raw stems of giant reed (Arundo donax L.) and of the char obtained by pyrolysis at 500° C and 800° C under flowing N2, as well as char yield, were determined to examine features evolution and potential applications. The chars derived at both temperatures were found potentially suitable as solid bio-fuels. Char features and yield at the lower temperature were compared to those from pyrolysis of the stems pre-treated with a phosphoric acid solution under otherwise identical conditions. The acid treatment induced an enhanced char yield and a highly developed porous structure with surface properties similar to those characterizing activated carbons. Thermogravimetric analysis also showed substantial changes in pyrolytic behavior of the treated stems. They seem to be due to the catalytic action of the acid promoting degradation at lower temperatures compared to pyrolysis of the untreated stems. Copyright © Taylor & Francis Inc.

Registro:

Documento: Artículo
Título:Thermochemical conversion of Arundo donax into useful solid products
Autor:Basso, M.C.; Cerrella, E.G.; Buonomo, E.L.; Bonelli, P.R.; Cukierman, A.L.
Filiación:PINMATE, Departamento de Industrias, Universidad de Buenos Aires Buenos, Aires, Argentina
PINMATE, Departamento de Industrias, Ciudad Universitaria, (C1428BGA) Buenos Aires, Argentina
Palabras clave:Arundo donax pyrolysis; Arundo-derived char properties; Energy crops; Giant reed; Carbon; Phosphoric acid; Thermogravimetric analysis; Arundo donax pyrolysis; Arundo-derived char properties; Energy crops; Giant reed; Pyrolysis
Año:2005
Volumen:27
Número:15
Página de inicio:1429
Página de fin:1438
DOI: http://dx.doi.org/10.1080/009083190523280
Título revista:Energy Sources
Título revista abreviado:Energy Sources
ISSN:00908312
CODEN:EGYSA
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00908312_v27_n15_p1429_Basso

Referencias:

  • Antal Jr., M.J., Allen, S.G., Dai, X., Shimizu, B., Tam, M.S., Grønli, M., Attainment of the theoretical yield of carbon from biomass (2000) Ind. Eng. Chem. Res., 39, pp. 4024-4031
  • Benaddi, H., Legras, D., Rouzard, J.N., Beguin, F., Influence of the atmosphere in the chemical activation of wood by phosphoric acid (1998) Carbon, 36, pp. 306-309
  • Blanco Castro, J., Bonelli, P.R., Cerrella, E.G., Cukierman, A.L., Phosphoric acid activation of agricultural residues and bagasse from sugar cane: Influence of the experimental conditions on adsorption characteristics of activated carbons (2000) Ind. Eng. Chem. Res., 39, pp. 4166-4172
  • Bonelli, P.R., Cerrella, E.G., Cukierman, A.L., Slow pyrolysis of nutshells: Characterization of derived chars and of process kinetics (2003) Energy Sources, 25, pp. 767-778
  • Bridgewater, A.V., Renewable fuels and chemicals by thermal processing (2003) Chem. Eng. J., 91, pp. 87-102
  • Bonelli, P.R., Della Rocca, P.A., Cerrella, E.G., Cukierman, A.L., Effect of pyrolysis temperature on composition, surface properties and termal degradation rates of Brazil nut shells (2001) Bioresource Technol., 76, pp. 15-22
  • Channiwala, S.A., Parikh, P.P., A unified correlation for estimating HHV of solid, liquid and gaseous fuels (2002) Fuel, 81, pp. 1051-1063
  • Chidumayo, E.N., Kwibisa, L., Effects of deforestation on grass biomass and soil nutrient status in miombo woodland, Zambia (2003) Agriculture Ecosystems & Environment, 96, pp. 97-105
  • Cordero, T., Marquez, F., Rodriguez-Mirasol, J., Rodríguez, J.J., Predicting heating values of lignocellulosics and carbonaceous materials from proximate analysis (2001) Fuel, 80, pp. 1567-1571
  • Cukierman, A.L., Della Rocca, P.A., Bonelli, P.R., Cassanello, M.C., On the study of biomass thermochemical conversion (1996) Trends in Chem. Eng., 3, pp. 129-144
  • Della Rocca, P.A., Cerrella, E.G., Bonelli, P.R., Cukierman, A.L., Pyrolysis of hardwood residues: On kinetics and chars characterization (1999) Biomass and Bioenergy, 16, pp. 79-88
  • El Tayeb Muneer, S., Mukhtar Mohamed, E.W., Adoption of biomass improved cook-stoves in a patriarchal society: An example from Sudan (2003) The Science of the Total Environment, 307, pp. 259-266
  • Faix, O., Meier, D., Beinhoff, O., Analysis of lignocelluloses and lignins from Arundo donax L. and Miscanthus sinensis Anderss, and hydroliquefaction of Miscanthus (1989) Biomass, 18, pp. 109-126
  • Girgis, B.S., Ishak, M.F., Activated carbon from cotton stalks by impregnation with phosphoric acid (1999) Mater. Lett., 39, pp. 107-114
  • Jagtoyen, M., Derbyshire, F., Activated carbon from yellow poplar and white oak by H3PO 4 activation (1998) Carbon, 36, pp. 1085-1097
  • Karaosmanoǧlu, F., Isigigür-Ergündeler, A., Sever, A., Biochar from the straw-stalk of rapeseed plant (2000) Energy & Fuels, 14, pp. 336-339
  • Kumar, M., Gupta, R., Scanning electron microscopic study of acacia and eucalyptus wood (1995) J. Materials Science, 30, pp. 544-551
  • Laine, J., Yunes, S., Effect of the preparation method on the pore size distribution of activated carbon from coconut shell (1992) Carbon, 30, pp. 601-604
  • Lewandowski, I., Scurlock, J.M.O., Lindvall, E., Christou, M., The development and current status of perennial rhizomatous grasses as energy crops in the US and Europe (2003) Biomass and Bioenergy, 25, pp. 335-361
  • Minkova, V., Razvigorova, M., Bjornbom, E., Zanzi, R., Budinova, T., Petrov, N., Effect of water vapour and biomass nature on the yield and quality of the pyrolysis products from biomass (2001) Fuel Process. Technol., 70, pp. 53-61
  • Nussbaumer, T., Combustion and co-combustion of biomass: Fundamentals, technologies, and primary measures for emission reduction (2003) Energy & Fuels, 17, pp. 1510-1521
  • Szabó, P., Várhegyi, G., Till, F., Faix, O., Thermogravimetric/mass spectrometric characterization of two energy crops, Arundo donax and Miscanthus sinensis (1996) J. Analytical and Applied Pyrolysis, 36, pp. 179-190
  • Vernersson, T., Bonelli, P.R., Cerrella, E.G., Cukierman, A.L., Arundo donax cane as a precursor for activated carbons preparation by phosphoric acid activation (2002) Bioresource Technol., 83, pp. 95-104
  • Yaman, S., Pyrolysis of biomass to produce fuels and chemical feedstocks (2004) Energy Conv. Manag., 45, pp. 651-671
  • Yorgun, S., Gülbaran Tülbentçi, H.S., Pyrolyisis of sunflower press bagasse: Heating values and energy distribution of the pyrolysis products (2003) Energy Sources, 25, pp. 809-817

Citas:

---------- APA ----------
Basso, M.C., Cerrella, E.G., Buonomo, E.L., Bonelli, P.R. & Cukierman, A.L. (2005) . Thermochemical conversion of Arundo donax into useful solid products. Energy Sources, 27(15), 1429-1438.
http://dx.doi.org/10.1080/009083190523280
---------- CHICAGO ----------
Basso, M.C., Cerrella, E.G., Buonomo, E.L., Bonelli, P.R., Cukierman, A.L. "Thermochemical conversion of Arundo donax into useful solid products" . Energy Sources 27, no. 15 (2005) : 1429-1438.
http://dx.doi.org/10.1080/009083190523280
---------- MLA ----------
Basso, M.C., Cerrella, E.G., Buonomo, E.L., Bonelli, P.R., Cukierman, A.L. "Thermochemical conversion of Arundo donax into useful solid products" . Energy Sources, vol. 27, no. 15, 2005, pp. 1429-1438.
http://dx.doi.org/10.1080/009083190523280
---------- VANCOUVER ----------
Basso, M.C., Cerrella, E.G., Buonomo, E.L., Bonelli, P.R., Cukierman, A.L. Thermochemical conversion of Arundo donax into useful solid products. Energy Sources. 2005;27(15):1429-1438.
http://dx.doi.org/10.1080/009083190523280