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首页> 外文期刊>Brazilian Archives of Biology and Technology >Fed Bateh Enzymatic Saccharifieation of Food Waste Improves the Sugar Concentration in the Hydrolysates and Eventually the Ethanol Fermentation by Saccharomyces cerevisiae H058
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Fed Bateh Enzymatic Saccharifieation of Food Waste Improves the Sugar Concentration in the Hydrolysates and Eventually the Ethanol Fermentation by Saccharomyces cerevisiae H058

机译:美联储巴特赫对食物垃圾进行酶促糖化可提高水解产物中的糖浓度,并最终通过酿酒酵母H058进行乙醇发酵

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摘要

The enzymatic hydrolysis of food waste by commercially available enzymes and the subsequent ethanol fermentation of the hydrolysates by Saccharomyces cerecisiae H058 were studied in this work. The optimum batch enzymatic conditions were found to be saccharifieation pH of 4.5, temperature of 55 V, glucoamylase concentration of 120 u/g. a-amylase concentration of 10 mu/g, solid-liquid ratio of I: 0.75 (w/w). Fed batch hydrolysis process was started with a solid-liquid ratio of 1: 1 (w/w), with solid food waste added at time lapse of 2 h to get a final solid-liquid ratio of 1: 0.5 (w/w). After 4 h of reaction, the reducing sugar concentration reached 194.43 g/L with a enzymatic digestibility of 93.12%. Further fermentation of the batch and fed batch enzymatic hydrolysates, which contained reducing sugar concentration of 131.41 and 194.43 g/L respectively, was performed using Saccharomyces cerevisiae H058, 62.93 and 90.72 g/L ethanol was obtained within 48 h.
机译:在这项工作中,研究了通过商业上可获得的酶对食物残渣进行酶促水解以及随后的酿酒酵母H058对水解产物进行的乙醇发酵。发现最佳的批酶条件为糖化pH为4.5,温度为55V,葡糖淀粉酶浓度为120u / g。 α-淀粉酶浓度为10μg/ g,固液比为I:0.75(w / w)。加料分批水解过程以固液比为1:1(w / w)开始,在2小时的时间里添加了固体食物残渣,最终固液比为1:0.5(w / w) 。反应4小时后,还原糖浓度达到194.43g / L,酶消化率为93.12%。使用酿酒酵母H058分别进行还原糖浓度分别为131.41和194.43 g / L的分批和补料分批酶解产物的进一步发酵,在48小时内获得了62.93和90.72 g / L的乙醇。

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