Kinetic modeling of rapid enzymatic hydrolysis of crystalline cellulose after pretreatment by NMMO
Artikel i vetenskaplig tidskrift, 2012

Pretreatment of cellulose with an industrial cellulosic solvent, N-methylmorpholine-N-oxide, showed promising results in increasing the rate of subsequent enzymatic hydrolysis. Cotton linter was used as high crystalline cellulose. After the pretreatment, the cellulose was almost completely hydrolyzed in less than 12 h, using low enzyme loading (15 FPU/g cellulose). The pretreatment significantly decreased the total crystallinity of cellulose from 7.1 to 3.3, and drastically increased the enzyme adsorption capacity of cellulose by approximately 42 times. A semi-mechanistic model was used to describe the relationship between the cellulose concentration and the enzyme loading. In this model, two reactions for heterogeneous reaction of cellulose to glucose and cellobiose, and a homogenous reaction for cellobiose conversion to glucose was incorporated. The Langmuir model was applied to model the adsorption of cellulase onto the treated cellulose. The competitive inhibition was also considered for the effects of sugar inhibition on the rate of enzymatic hydrolysis. The kinetic parameters of the model were estimated by experimental results and evaluated.

binding

Pretreatment

Kinetic modeling

N-Methylmorpholine-N-oxide

systems

dilute-acid

saccharification

Enzymatic hydrolysis

biogas production

fibers

Substrate reactivity

conversion

ethanol

lignocellulosic biomass

Författare

M. Khodaverdi

Hogskolan i Boras

Azam Jeihanipour

Chalmers, Kemi- och bioteknik, Kemisk reaktionsteknik

K. Karimi

Hogskolan i Boras

Chalmers University of Technology

Mohammad Taherzadeh Esfahani

Hogskolan i Boras

Journal of Industrial Microbiology and Biotechnology

1367-5435 (ISSN) 1476-5535 (eISSN)

Vol. 39 3 429-438

Ämneskategorier (SSIF 2011)

Industriell bioteknik

DOI

10.1007/s10295-011-1048-y

Mer information

Skapat

2017-10-08