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首页> 外文期刊>Biotechnology Research International >High Level Ethanol from Sugar Cane Molasses by a New ThermotolerantSaccharomyces cerevisiaeStrain in Industrial Scale
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High Level Ethanol from Sugar Cane Molasses by a New ThermotolerantSaccharomyces cerevisiaeStrain in Industrial Scale

机译:新型耐高温酿酒酵母菌株从甘蔗糖蜜中提取高含量乙醇

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摘要

A new local strain ofS. cerevisiaeF-514, for ethanol production during hot summer season, using Egyptian sugar cane molasses was applied in Egyptian distillery factory. The inouluum was propagated through 300 L, 3 m3, and 12 m3fermenters charged with diluted sugar cane molasses containing 4%-5% sugars. The yeast was applied in fermentation vessels 65 m3working volume to study the varying concentrations of urea, DAP, orthophosphoric acid (OPA), and its combinations as well as magnesium sulfate and inoculum size. The fermenter was allowed to stay for a period of 20 hours to give time for maximum conversion of sugars into ethanol.S. cerevisiaeF-514 at molasses sugar level of 18% (w/v), inoculum size of 20% (v/v) cell concentration of3.0×108/mL, and combinations of urea, diammonium phosphate (DAP), orthophosphoric acid (OPA), and magnesium sulfate at amounts of 20, 10, 5, and 10 kg/65 m3working volume fermenters, respectively, supported maximum ethanol production (9.8%, v/v), fermentation efficiency (FE) 88.1%, and remaining sugars (RS) 1.22%. The fermentation resulted 13.4 g dry yeast/L contained 34.6% crude protein and 8.2% ash. By selecting higher ethanol yielding yeast strain and optimizing, the fermentation parameters both yield and economics of the fermentation process can be improved.
机译:一个新的本地菌株。 cerevisiaeF-514,用于在炎热的夏季生产乙醇,在埃及酿酒厂中使用埃及甘蔗糖蜜。接种物通过装有浓度为4%-5%糖的稀释甘蔗糖蜜的300μL,3μm3和12μm3发酵罐繁殖。将酵母应用于工作容积为65 m3的发酵容器中,以研究尿素,DAP,正磷酸(OPA)及其组合以及硫酸镁和接种量的不同浓度。使发酵罐停留20小时,以留出时间使糖最大程度地转化为乙醇。糖蜜水平为18%(w / v),接种量为20%(v / v),细胞浓度为3.0×108 / mL的cerevisiaeF-514,以及尿素,磷酸二铵(DAP),正磷酸( OPA)和硫酸镁的工作量分别为20、10、5和10 8 kg / 65μm3发酵罐,可支持最大乙醇产量(9.8%,v / v),发酵效率(FE)88.1%和剩余糖分(RS)1.22%。发酵产生13.4μg干酵母/ L,其包含34.6%的粗蛋白和8.2%的灰分。通过选择乙醇产量更高的酵母菌株并进行优化,可以提高发酵参数,提高发酵工艺的经济性。

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