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Hybrid SSF/SHF Processing of SO2 Pretreated Wheat Straw-Tuning Co-fermentation by Yeast Inoculum Size and Hydrolysis Time

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논문

Hybrid SSF/SHF Processing of SO2 Pretreated Wheat Straw-Tuning Co-fermentation by Yeast Inoculum Size and Hydrolysis Time

학술지

Applied biochemistry and biotechnology

저자명

Cassells, B.; Karhumaa, K.; Sà nchez i Nogué , V.; Lidé n, G.

초록

<P>Wheat straw is one of the main agricultural residues of interest for bioethanol production. This work examines conversion of steam-pretreated wheat straw (using SO<SUB>2</SUB> as a catalyst) in a hybrid process consisting of a short enzymatic prehydrolysis step and a subsequent simultaneous saccharification and fermentation (SSF) step with a xylose-fermenting strain of <I>Saccharomyces cerevisiae</I>. A successful process requires a balanced design of reaction time and temperature in the prehydrolysis step and yeast inoculum size and temperature in the SSF step. The pretreated material obtained after steam pretreatment at 210&nbsp;°C for 5&nbsp;min using 2.5&nbsp;% SO<SUB>2</SUB> (based on moisture content) showed a very good enzymatic digestibility at 45&nbsp;°C but clearly lower at 30&nbsp;°C. Furthermore, the pretreatment liquid was found to be rather inhibitory to the yeast, partly due to a furfural content of more than 3&nbsp;g/L. The effect of varying the yeast inoculum size in this medium was assessed, and at a yeast inoculum size of 4&nbsp;g/L, a complete conversion of glucose and a 90&nbsp;% conversion of xylose were obtained within 50&nbsp;h. An ethanol yield (based on the glucan and xylan in the pretreated material) of 0.39&nbsp;g/g was achieved for a process with this yeast inoculum size in a hybrid process (10&nbsp;% water-insoluble solid (WIS)) with 4&nbsp;h prehydrolysis time and a total process time of 96&nbsp;h. The obtained xylose conversion was 95&nbsp;%. A longer prehydrolysis time or a lower yeast inoculum size resulted in incomplete xylose conversion.</P>

발행연도

2017

발행기관

Springer US

ISSN

0273-2289

ISSN

1559-0291

181

2

페이지

pp.536-547

주제어

Bioethanol; Xylose fermentation; SSF; Yeast inoculum size; In situ detoxification

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논문; 2017-12-31

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