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Enzymatic hydrolysis and simultaneous saccharification and fermentation of soybean processing intermediates for the production of ethanol and concentration of protein and lipids

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    • 바이오플라스틱
      1. 플라스틱
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      1. 용매
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      3. 연료
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논문

Enzymatic hydrolysis and simultaneous saccharification and fermentation of soybean processing intermediates for the production of ethanol and concentration of protein and lipids

학술지

ISRN microbiology

저자명

Long, Craig C.; Gibbons, William

초록

<P>Carbohydrates in soybeans are generally undesirable due to their low digestibility and because they “dilute” more valuable components (proteins, lipids). To remove these carbohydrates and raise the titer of more valuable components, ethanol production was investigated. Commercial enzymes (Novozyme cellulase, <I><I>&beta;</I></I>-glucosidase, and pectinase) were added to ground soybeans (SB), soybean meal (SBM), soybean hulls (SH), and soybean white flakes (WF) at a 10% solids loading rate to quantify hydrolyzed glucan. Saccharification resulted in glucan reductions of 28%, 45%, 76%, and 80% (SBM, SB, SH, WF, resp.). Simultaneous saccharification and fermentation (SSF) trials were conducted at 5%, 10%, 15%, and 20% solids loading with <I>Saccharomyces cerevisiae </I>NRRL Y-2034 and <I>Scheffersomyces stipitis </I>NRRL Y-7124, with protein, fiber, and lipids analyzed at SSF 10% solids and saccharification trials. <I>S. cerevisiae </I>and <I>S. stipitis </I>produced ~3&#x2013;12.5 g/L ethanol and ~2.5&#x2013;8.6 g/L ethanol, respectively, on SB, SBM, and WF over all solid loading rates. SH resulted in higher ethanol titers for both <I>S. cerevisiae </I>(~9&#x2013;23 g/L) and <I>S. stipitis </I>(~9.5&#x2013;14.5 g/L). Protein concentrations decreased by 2.5&#x2013;10% for the SB, SBM, and WF, but increased by 53%&#x2013;55% in SH. Oil concentrations increased by ~50% for SB; by ~500%&#x2013;1300% for the others.</P>

발행연도

2012

발행기관

International Scholarly Research Network

라이선스

cc-by

ISSN

2090-7478

ISSN

2090-7486

2012

페이지

pp.278092

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1 2023-12-11

논문; 2012-10-17

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