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Sweet potato having a low temperature-gelatinizing starch as a promising feedstock for bioethanol production

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논문

Sweet potato having a low temperature-gelatinizing starch as a promising feedstock for bioethanol production

학술지

Biomass & bioenergy

저자명

Srichuwong, S.; Orikasa, T.; Matsuki, J.; Shiina, T.; Kobayashi, T.; Tokuyasu, K.

초록

A newly developed sweet potato ''Kyushu No. 159'' (K159) was used as a feedstock for ethanol production in comparison with an ordinary type ''Daichinoyume'' (DCY). Gelatinization temperature of isolated K159 starch (49.5-66.2 <SUP>o</SUP>C) was approximately 20 <SUP>o</SUP>C lower than that of DCY starch (70.9-85.4 <SUP>o</SUP>C). The lower gelatinization temperature of K159 starch would be attributed to its higher proportion of short amylopectin branch-chains. Sweet potato mashes containing > 0.3 kg dm<SUP>-3</SUP> total solids were prepared using enzymatic viscosity reduction, and utilized for liquefaction and simultaneous saccharification and fermentation (SSF). Ethanol productivity as a function of liquefaction temperature (50, 60, 70, 80, 90, and 100 <SUP>o</SUP>C) was investigated. The results showed that liquefaction at 60 <SUP>o</SUP>C was sufficient to efficiently accelerate SSF process of K159, and ethanol yields of 15.1-15.4 % (v/v) (88.8-90.6% of theoretical yield) were obtained during 48-72 h. In contrast, DCY mash required higher liquefaction temperature (90 <SUP>o</SUP>C) to achieve the similar ethanol yield. An estimate of environmental impacts in liquefaction process showed that K159 would provide approximately 50% reduction in energy consumption and CO<SUB>2</SUB> emission compared with DCY. Accordingly, the specialized sweet potato ''Kyushu No. 159'' would offer an energy-saving alternative for fuel-ethanol production.

발행연도

2012

발행기관

Pergamon ; Elsevier Science Ltd

ISSN

0961-9534

39

페이지

pp.120-127

주제어

Sweet potato; Starch; Liquefaction; Fermentation; Very high gravity (VHG); Bioethanol; [abr] K159; sweet potato cv. Kyushu No. 159; [abr] DCY; sweet potato cv. Daichinoyume; [abr] CARV; the conversion after viscosity reduction process; [abr] VHG; very high gravity; [abr] DE; dextrose equivalent; [abr] DP; degree of polymerization; [abr] To; onset gelatinization temperature; [abr] Tp; peak gelatinization temperature; [abr] Tc; conclusion gelatinization temperature; [abr] ΔH; enthalpy change;

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1 2023-12-11

논문; 2012-04-01

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