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PMID: 18781686 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Validation Study

Kinetic modeling of cellulosic biomass to ethanol via simultaneous saccharification and fermentation: Part II. Experimental validation using waste paper sludge and anticipation of CFD analysis.

Biotechnology and bioengineering ·Vol. 102 ·No. 1 ·2009-01-01 ·页码 66-72

Shao X, Lynd L, Wyman C

Abstract

A kinetic model of cellulosic biomass conversion to ethanol via simultaneous saccharification and fermentation (SSF) developed previously was validated experimentally using paper sludge as the substrate. Adsorption parameters were evaluated based on the data obtained at various values for fractional cellulose conversion. The adsorption model was then combined with batch SSF data to evaluate the cellulose hydrolysis parameters. With the parameters evaluated for the specific substrate, the discrete model was able to predict SSF successfully both with discrete addition of cellulase only and with discrete feeding of substrate, cellulase, and media. The model tested in this study extends the capability of previous SSF models to semi-continuous feeding configurations, and invites a mechanistic interpretation of the recently observed trend of increasing conversion with decreasing feeding frequency [Fan et al. (2007a) Bioprocess Biosyst Eng 30(1):27-34]. Our results also support the feasibility and utility of determining adsorption parameters based on data obtained at several conversions, particularly when the model is to be applied to extended reaction times rather than only initial hydrolysis rates. The revised model is considerably more computationally efficient than earlier models, and appears for many conditions to be within the capability of simulation using computational fluid dynamics.

MeSH 主题词
Biocatalysis Biomass Bioreactors Cellulose/metabolism Ethanol/metabolism Kinetics Models, Theoretical Paper
化学物质
Ethanol Cellulose
作者与单位
共 3 位作者,点击展开单位 / ORCID
Shao Xiongjun
Thayer School of Engineering at Dartmouth College, Hanover, New Hampshire 03755, USA.
Lynd Lee
Wyman Charles
Article Info
Journal
Biotechnology and bioengineering
Abbr.
Biotechnol Bioeng
ISSN
1097-0290
Published
2009-01-01
页码
66-72
Language
English
Country/Region
United States
NLM ID
7502021
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