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Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy

Year 2014, Volume: 4 Issue: 2, 338 - 348, 01.06.2014

Abstract

Wood milling is an intensively energy consuming operation that has a significative effect on energy yield of ethanol processes as particle size is an important factor in productivity of saccharification methods. We optimized fiber particle size for  a very wide range of treatment conditions (temperature, agitation, and solid loads) for acid hydrolysis in a batch reactor. We also analysed heat and mass transfer effects by calculating the Thiele and Prater modulus at experimental conditions. Multivariate optimization results show that using a length-weighted fiber mean diameter (DL21) of 1.21-2.68 mm a better sugar yield, concentration and lower furan production can be achieved. Agitation allowed a simulteous particle size reduction and hydrolysis of polysaccharides. Heat and mass transfer studies suggest that acid diffusion is only important for hemicellulose hydrolysis at very high temperature and that particles are nearly isothermic. These results show that about 30% of the required energy for milling can be saved by using optimal particle size.

Year 2014, Volume: 4 Issue: 2, 338 - 348, 01.06.2014

Abstract

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Details

Primary Language English
Journal Section Articles
Authors

Miguel Angel Zamudio-jaramillo This is me

Agustin Jaime Castro-montoya This is me

Rafael Maya Yescas This is me

María del Carmen Chávez Parga This is me

Juan Carlos González Hernández This is me

Jaime Saucedo Luna This is me

Publication Date June 1, 2014
Published in Issue Year 2014 Volume: 4 Issue: 2

Cite

APA Zamudio-jaramillo, M. A., Castro-montoya, A. J., Yescas, R. M., Parga, M. d. C. C., et al. (2014). Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy. International Journal Of Renewable Energy Research, 4(2), 338-348.
AMA Zamudio-jaramillo MA, Castro-montoya AJ, Yescas RM, Parga MdCC, Hernández JCG, Luna JS. Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy. International Journal Of Renewable Energy Research. June 2014;4(2):338-348.
Chicago Zamudio-jaramillo, Miguel Angel, Agustin Jaime Castro-montoya, Rafael Maya Yescas, María del Carmen Chávez Parga, Juan Carlos González Hernández, and Jaime Saucedo Luna. “Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy”. International Journal Of Renewable Energy Research 4, no. 2 (June 2014): 338-48.
EndNote Zamudio-jaramillo MA, Castro-montoya AJ, Yescas RM, Parga MdCC, Hernández JCG, Luna JS (June 1, 2014) Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy. International Journal Of Renewable Energy Research 4 2 338–348.
IEEE M. A. Zamudio-jaramillo, A. J. Castro-montoya, R. M. Yescas, M. d. C. C. Parga, J. C. G. Hernández, and J. S. Luna, “Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy”, International Journal Of Renewable Energy Research, vol. 4, no. 2, pp. 338–348, 2014.
ISNAD Zamudio-jaramillo, Miguel Angel et al. “Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy”. International Journal Of Renewable Energy Research 4/2 (June 2014), 338-348.
JAMA Zamudio-jaramillo MA, Castro-montoya AJ, Yescas RM, Parga MdCC, Hernández JCG, Luna JS. Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy. International Journal Of Renewable Energy Research. 2014;4:338–348.
MLA Zamudio-jaramillo, Miguel Angel et al. “Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy”. International Journal Of Renewable Energy Research, vol. 4, no. 2, 2014, pp. 338-4.
Vancouver Zamudio-jaramillo MA, Castro-montoya AJ, Yescas RM, Parga MdCC, Hernández JCG, Luna JS. Optimization of Parcticle Size for Hydrolysis of Pine Wood Polysaccharides and Its Impact on Milling Energy. International Journal Of Renewable Energy Research. 2014;4(2):338-4.