酵母
乙醇燃料
乙醇
发酵
化学
氨基酸
生物化学
酵母抽提物
原材料
食品科学
淀粉
乙醇发酵
生物燃料
醋酸
工业发酵
能源
作者
Supriya Sasmal,Srayoshi Roy Chowdhury,Debasish Podder,Debasish Haldar
出处
期刊:ACS omega
[American Chemical Society]
日期:2019-08-07
卷期号:4 (8): 13172-13179
被引量:6
标识
DOI:10.1021/acsomega.9b01260
摘要
The development of sustainable protocols for enhancing the production of ethanol is highly important for its utilization in automotive transportation and energy sector. Up to 15% ethanol can blend with diesel to make e-diesel that can be used in fuel compression ignition engine. Urea-modified amino acids can be used as a very good vitalizer for yeast (Saccharomyces cerevisiae, Baker's yeast (ATCC 204508)) growth and thus promote ethanol production. A simple, one-step, room-temperature synthetic procedure has been developed for urea-appended α-amino acids from amino acid by treatment with KCNO. Single-crystal X-ray studies confirm the successful synthesis and molecular structures of the urea-appended α-amino acids. Out of 20 urea-appended amino acids, Arg-, Pro-, His-, and Gln-containing compounds promote yeast growth significantly after 12 h at pH 6.8 and 38 °C. These compounds are nontoxic. The urea-appended Arg shows 2-fold increase of yeast growth. However, urea-appended m-aminobenzoic acid and p-aminobenzoic acid inhibit yeast growth. NMR experiments confirmed the enhanced production of ethanol by glucose fermentation in the presence of 2.5 μmol urea-appended Arg. Not only glucose but also commercially available sugars and feedstock of the starch slurry drained out after boiling of rice exhibit significant enhancement of ethanol production under same conditions.
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