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首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Optimization of Microbial Hydrogen Production from Maize Stalk Using an Isolated Strain
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Optimization of Microbial Hydrogen Production from Maize Stalk Using an Isolated Strain

机译:利用分离菌株优化玉米秸秆生产微生物产氢

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摘要

Experimental designs were applied for optimizing media and process parameters for hydrogen production from maize stalk hydrolyzate by a newly isolated facultative strain. Plackett-Burman design was used to identify the significant components and using this method the media components - glucose, yeast extract, malt extract, peptone, and NaCl were identified as significant variables influencing the production of hydrogen. The concentrations of these components were optimized using Central Composite Design (CCD) and were found to be: glucose, 19.25g/L; peptone, 5.64g/L; malt extract, 1.64g/L; yeast extract, 3.16g/L and NaCl, 4.312g/L. For further maximizing the production of hydrogen, the process parameters including pH, temperature and fermentation time were optimized by adopting Box-Behnken design. A maximum hydrogen yield of 0.91 mol H-2/mol substrate was achieved under the optimum conditions of pH, 7.0; temperature, 34.5 degrees C and fermentation time, 42.5h.
机译:实验设计被用于优化通过新分离的兼性菌株从玉米秸秆水解产物生产氢的培养基和工艺参数。使用Plackett-Burman设计来鉴定重要成分,并使用此方法将培养基成分-葡萄糖,酵母提取物,麦芽提取物,蛋白ept和NaCl鉴定为影响氢气产生的重要变量。使用中央复合设计(CCD)对这些成分的浓度进行了优化,结果发现:葡萄糖为19.25g / L;葡萄糖为19.25g / L。蛋白ept5.64g / L;麦芽提取物,1.64g / L;酵母提取物3.16g / L和NaCl 4.312g / L。为了进一步最大化氢气的产生,采用Box-Behnken设计对包括pH,温度和发酵时间在内的工艺参数进行了优化。在最佳pH值为7.0的条件下,最大氢产率为0.91 mol H-2 / mol底物。温度34.5摄氏度,发酵时间42.5小时。

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