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Lignocellulose conversion for biofuel: a new pretreatment greatly improves downstream biocatalytic hydrolysis of various lignocellulosic materials

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논문

Lignocellulose conversion for biofuel: a new pretreatment greatly improves downstream biocatalytic hydrolysis of various lignocellulosic materials

학술지

Biotechnology for biofuels

저자명

Wi, Seung Gon; Cho, Eun Jin; Lee, Dae-Seok; Lee, Soo Jung; Lee, Young Ju; Bae, Hyeun-Jong

초록

<P><B>Background</B></P><P>Lignocellulosic biomass is an attractive renewable resource for future liquid transport fuel. Efficient and cost-effective production of bioethanol from lignocellulosic biomass depends on the development of a suitable pretreatment system. The aim of this study is to investigate a new pretreatment method that is highly efficient and effective for downstream biocatalytic hydrolysis of various lignocellulosic biomass materials, which can accelerate bioethanol commercialization.</P><P><B>Results</B></P><P>The optimal conditions for the hydrogen peroxide&#x2013;acetic acid (HPAC) pretreatment were 80&nbsp;°C, 2&nbsp;h, and an equal volume mixture of H<SUB>2</SUB>O<SUB>2</SUB> and CH<SUB>3</SUB>COOH. Compared to organo-solvent pretreatment under the same conditions, the HPAC pretreatment was more effective at increasing enzymatic digestibility. After HPAC treatment, the composition of the recovered solid was 74.0&nbsp;% cellulose, 20.0&nbsp;% hemicelluloses, and 0.9&nbsp;% lignin. Notably, 97.2&nbsp;% of the lignin was removed with HPAC pretreatment. Fermentation of the hydrolyzates by <I>S. cerevisiae</I> resulted in 412&nbsp;mL ethanol&nbsp;kg<SUP>&#x2212;1</SUP> of biomass after 24&nbsp;h, which was equivalent to 85.0&nbsp;% of the maximum theoretical yield (based on the amount of glucose in the raw material).</P><P><B>Conclusion</B></P><P>The newly developed HPAC pretreatment was highly effective for removing lignin from lignocellulosic cell walls, resulting in enhanced enzymatic accessibility of the substrate and more efficient cellulose hydrolysis. This pretreatment produced less amounts of fermentative inhibitory compounds. In addition, HPAC pretreatment enables year-round operations, maximizing utilization of lignocellulosic biomass from various plant sources.</P><P><B>Electronic supplementary material</B></P><P>The online version of this article (doi:10.1186/s13068-015-0419-4) contains supplementary material, which is available to authorized users.</P>

발행연도

2015

발행기관

BioMed Central

라이선스

cc-by

ISSN

1754-6834

8

페이지

pp.228

주제어

Bioethanol; Lignocellulosic biomass; Pretreatment; Energy efficiency

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1 2023-12-11
2 2023-12-11
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논문; 2015-12-01

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