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Effects of Additional Xylanase on Saccharification and Ethanol Fermentation of Ammonia-Pretreated Corn Stover and Rice Straw

Authors
Park, Seung HyeonThi Thu Huong PhamKim, Tae Hyun
Issue Date
Sep-2020
Publisher
MDPI
Keywords
pretreatment; inoculum size; high-solid fermentation; enzymatic saccharification; simultaneous
Citation
ENERGIES, v.13, no.17, pp 1 - 15
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
ENERGIES
Volume
13
Number
17
Start Page
1
End Page
15
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/913
DOI
10.3390/en13174574
ISSN
1996-1073
1996-1073
Abstract
Synergistic effect of cellulase and hemicellulase (xylanase) was evaluated because lignocellulosic material is a heterogeneous complex of cellulose and hemicellulose. Various effects of HTec2 addition on enzymatic saccharification and fermentation were evaluated using two different substrates such as corn stover and rice straw. Corn stover and rice straw were pretreated by the LMAA (low-moisture anhydrous ammonia) method at the preselected same conditions (90 degrees C, 120 h, moisture content = 50%, NH(3)loading = 0.1 g NH3/g). It was observed that the enzymatic saccharification yield of pretreated corn stover (76.4% for glucan digestibility) was higher than that of pretreated rice straw (70.9% for glucan) using CTec2 cellulase without HTec2 addition. Glucan digestibility of pretreated corn stover was significantly increased from 76.4% to 91.1% when the HTec2/CTec2 (v/v) increased from 0 to 10. However, it was interesting that the ethanol production was decreased from 89.9% to 76.3% for SSF and 118.0% to 87.9% for SSCF at higher HTec2/CTec2. As the glucan loading increased from 2.0% to 7.0%, the ethanol yields of both SSF and SSCF were decreased from 96.3% to 88.9% and from 116.6% to 92.4%, respectively. In addition, the smallest inoculum size (optical density of 0.25) resulted in the highest ethanol production (20.5 g/L).
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ERICA 첨단융합대학 (ERICA 신소재·반도체공학전공)
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