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Comparative study of simultaneous saccharification and fermentation byproducts from sugarcane bagasse using steam explosion, alkaline hydrogen peroxide and organosolv pretreatments

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논문

Comparative study of simultaneous saccharification and fermentation byproducts from sugarcane bagasse using steam explosion, alkaline hydrogen peroxide and organosolv pretreatments

학술지

RSC advances

저자명

You, Yanzhi; Yang, Shujuan; Bu, Lingxi; Jiang, Jianxin; Sun, Dafeng

초록

<P>Byproducts of simultaneous saccharification and fermentation (SSF) from sugarcane bagasse using steam explosion (SE, 190 &deg;C for 10 min and 210 &deg;C for 5 min) and green liquor (GL) combined with hydrogen peroxide (GL-H2O2) or ethanol (GL-ethanol) pretreatments were compared. Results showed that SE pretreatments did not result in lactic acid because a majority of the glucose was consumed for yeast growth and ethanol production, and the ethanol yield of 93.86% (of the theoretical) at 190 &deg;C for 10 min and 94.33% at 210 &deg;C for 5 min were achieved. Most of the hemicelluloses were removed and more acetyl groups were generated after the SE pretreatment, so it always had the highest amount of acetic acid (1.22 g L<SUP>&#x2212;1</SUP>at 190 &deg;C for 10 min and 1.38 g L<SUP>&#x2212;1</SUP>at 210 &deg;C for 5 min). GL-ethanol pretreatment resulted in an ethanol yield of 80.56%. However, the existence of reactive lignin from organic solvent produced high amount of byproducts, especially for the maximum glycerol contents (0.818 g L<SUP>&#x2212;1</SUP>). Deficient lignin removal and sugar degradation with GL-H2O2pretreatment led to the lowest ethanol yield of 23.23%, which may be because some inhibitors generated from GL-H2O2pretreatment affected hydrolysis efficiency and yeast activity in the SSF process.</P>

발행연도

2016

발행기관

The Royal Society of Chemistry

ISSN

2046-2069

6

17

페이지

pp.13723-13729

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논문; 2016-01-01

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