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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced ethanol production from Kinnow mandarin (Citrus reticulata) waste via a statistically optimized simultaneous saccharification and fermentation process
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Enhanced ethanol production from Kinnow mandarin (Citrus reticulata) waste via a statistically optimized simultaneous saccharification and fermentation process

机译:通过统计优化的同时糖化和发酵过程,提高了Kinnow柑桔(Citrus reticulata)废物的乙醇生产

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摘要

Dried, ground, and hydrothermally pretreated Kinnow mandarin (Citrus reticulata) waste was used to produce ethanol via simultaneous saccharification and fermentation (SSF). Central composite design was used to optimize cellulase and pectinase concentrations, temperature, and time for SSF. The D-limonene concentration determined with high-performance liquid chromatography (HPLC) for fresh, dried, and pretreated biomass was 0.76%, 0.32%, and 0.09% (v/w), respectively. Design Expert software suggested that the first-order effect of all four factors and the second-order effect of cellulase and pectinase concentrations were significant for ethanol production. The validation experiment using 6FPUgds-1 cellulase and 60IUgds~(-1)pectinase at 37°C for 12h in a laboratory batch fermenter resulted in ethanol concentration and productivity of 42gL~(-1) and 3.50gL~(-1)h~(-1), respectively. Experiments using optimized parameters resulted in an ethanol concentration similar to that predicted by the model equation and also helped reduce fermentation time.
机译:干燥,研磨和水热预处理的Kinnow柑桔(Citrus reticulata)废料通过同时糖化和发酵(SSF)来生产乙醇。中央复合设计用于优化SSF的纤维素酶和果胶酶浓度,温度和时间。用高效液相色谱(HPLC)测定的新鲜,干燥和预处理生物质的D-柠檬烯浓度分别为0.76%,0.32%和0.09%(v / w)。 Design Expert软件建议,所有四个因素的一级效应以及纤维素酶和果胶酶浓度的二级效应对于乙醇生产均具有重要意义。在实验室分批发酵罐中使用6FPUgds-1纤维素酶和60IUgds〜(-1)果胶酶在37°C下进行12h的验证实验,乙醇浓度和生产率分别为42gL〜(-1)和3.50gL〜(-1)h〜 (-1)。使用优化参数进行的实验得出的乙醇浓度类似于模型方程式预测的浓度,还有助于减少发酵时间。

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