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首页> 外文期刊>Enzyme and Microbial Technology >Potential of the waste from beer fermentation broth for bio-ethanol production without any additional enzyme, microbial cells and carbohydrates
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Potential of the waste from beer fermentation broth for bio-ethanol production without any additional enzyme, microbial cells and carbohydrates

机译:啤酒发酵液产生的废物可能会产生生物乙醇,而无需任何其他酶,微生物细胞和碳水化合物

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摘要

The potential of the waste from beer fermentation broth (WBFB) for the production of bio-ethanol using a simultaneous saccharification and fermentation process without any extra additions of saccharification enzymes, microbial cells or carbohydrate was tested. The major microbial cells in WBFB were isolated and identified. The variations in compositions of WBFB with stock time were investigated. There was residual activity of starch hydrolyzing enzymes in WBFB. The effects of reaction modes e.g. static and shaking on bio-ethanol production were studied. After 7 days of cultivation using the supernatant of WBFB at 30 °C the ethanol concentration reached 103.8 g/L in shaking culture and 91.5 g/L in static culture. Agitation experiments conducted at a temperature-profile process in which temperature was increased from 25 to 67 °C shortened the simultaneous process time. The original WBFB was more useful than the supernatant of WBFB in getting the higher concentration of ethanol and reducing the fermentation time. From this whole study it was found that WBFB is a cheap and suitable source for bio-ethanol production.
机译:测试了啤酒发酵液(WBFB)废料在同时糖化和发酵过程中不添加糖化酶,微生物细胞或碳水化合物的情况下生产生物乙醇的潜力。分离并鉴定了WBFB中的主要微生物细胞。研究了WBFB的组成随库存时间的变化。 WBFB中存在淀粉水解酶的残留活性。反应模式的影响,例如研究了静态和振动对生物乙醇生产的影响。使用WBFB在30°C的上清液培养7天后,振荡培养的乙醇浓度达到103.8 g / L,静态培养的乙醇浓度达到91.5 g / L。在将温度从25℃升高到67℃的温度曲线过程中进行的搅拌实验缩短了同时进行的时间。原始的WBFB比WBFB的上清液更有用,可以获取更高的乙醇浓度并减少发酵时间。从整个研究中发现,WBFB是一种廉价且合适的生物乙醇生产来源。

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