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Production of bioethanol from sugarcane bagasse using NH4OH-H2O2 pretreatment and simultaneous saccharification and co-fermentation

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    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
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      1. 식품첨가제
논문

Production of bioethanol from sugarcane bagasse using NH4OH-H2O2 pretreatment and simultaneous saccharification and co-fermentation

학술지

Biotechnology and bioprocess engineering : Bbe

저자명

Zhu, Zhi-Sheng; Zhu, Ming-Jun; Xu, Wan-Xia; Liang, Lei

초록

In this study, we investigated the production of bioethanol from sugarcane bagasse (SCB) using an <TEX>$NH_4OH-H_2O_2$</TEX> pretreatment and simultaneous saccharification and co-fermentation (SScF). Response surface methodology and a <TEX>$2^3$</TEX> Box-Behnken design were used to evaluate the effect of different liquid mixture concentrations, liquid-to-solid ratios (LSRs) and pretreatment temperatures on the production of ethanol. The liquid mixture concentration and LSR significantly influenced the fermentation efficiency. Based on ridge max analysis, the following pretreatment conditions resulted in a fermentation efficiency of <TEX>$95.79{\pm}0.01%$</TEX>: liquid mixture concentration 53%, LSR 28, and a temperature of <TEX>$63^{\circ}C$</TEX>. A morphological analysis performed using scanning electron microscopy (SEM) and chemical characterization revealed that these pretreatment conditions were effective in disrupting the sugarcane fibers and removing lignin. Ethanol fermentation with the pretreated SCB using SScF in yeast SHY 07-1 resulted in an ethanol concentration of <TEX>$14.65{\pm}0.17$</TEX> g/L, an ethanol yield of <TEX>$0.48{\pm}0.01$</TEX> g/g, and an ethanol productivity of <TEX>$0.12{\pm}0.01$</TEX> g/(L/h), which represents increases of 106.02, 89.98, and 107.02%, respectively, over the values obtained from SScF with untreated SCB.

발행연도

2012

발행기관

Korean Society for Biotechnology and Bioengineering

ISSN

1226-8372

ISSN

1976-3816

17

2

페이지

pp.316-325

주제어

sugarcane bagasse; $NH_4OH-H_2O_2$ pretreatment; response surface methodology; simultaneous saccharification and co-fermentation; ethanol fermentation

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1 2023-12-11

논문; 2012-04-01

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