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Improvement of very-high-gravity ethanol fermentation from sweet sorghum juice by controlling fermentation redox potential

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논문

Improvement of very-high-gravity ethanol fermentation from sweet sorghum juice by controlling fermentation redox potential

학술지

Journal of the Taiwan Institute of Chemical Engineers

저자명

Khongsay, N.; Lin, Y.H.; Laopaiboon, P.; Laopaiboon, L.

초록

Effects of fermentation redox potential control (no control, -100mV and -150mV) on the improvement of ethanol productivity during very-high-gravity (VHG) fermentation from sweet sorghum juice (300g/l of total sugar) were investigated. Results showed that redox potential controlled at -150mV gave the highest ethanol production efficiencies (ethanol concentration or P value, 134.35+/-1.67g ethanol 1/l and ethanol productivity or Q<SUB>p</SUB> value, 2.80+/-0.03g ethanol 1/lh) at the fermentation time of 48h. Under the same condition without the redox potential control, the P and Q<SUB>p</SUB> values were 115.34+/-2.01g/l and 2.14+/-0.05g/lh, respectively at the fermentation time of 54h. To complete sugar utilization under redox potential controlled at -150mV, 16mM urea was supplemented into the VHG medium. Results showed that the P and Q<SUB>p</SUB> values were 140.23+/-1.88g/l and 2.92+/-0.01g/lh, respectively corresponding to sugar utilization of 96%. When the initial total sugar in the juice was reduced to 250g/l, no urea addition was required in order to complete sugar utilization, and the P and Q<SUB>p</SUB> values were 121.54+/-2.23g/l and 3.38+/-0.04g/lh, respectively at the fermentation time of 36h. These results clearly indicated that redox potential control coupling with supplementation of assimilable nitrogen levels significantly improved the ethanol production efficiency from the sweet sorghum juice under the VHG fermentation by Saccharomyces cerevisiae NP 01.

발행연도

2014

발행기관

Elsevier BV

ISSN

1876-1070

ISSN

1876-1089

45

2

페이지

pp.302-307

주제어

Assimilable nitrogen; Redox potential; Sweet sorghum juice; Very high gravity

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1 2023-12-11

논문; 2014-03-01

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