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A kinetic approach to anaerobic hydrogen-producing process

机译:厌氧制氢过程的动力学方法

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Kinetics of hydrogen production from sucrose by mixed anaerobic cultures was investigated, and the Gompertz model was modified to describe the growth of hydrogen-producing microorganisms, consumption of substrate and formation of product in this work. A modified Gompertz model could adequately fit the experimental results. The effects of pH, temperature and the ratio of the initial substrate concentration to initial biomass concentration (S_0/X_0) on the maximum specific microbial growth rate (μ_m) were evaluated using a response-surface methodology. Experimental results show that pH, temperature and S_0/X_0 all had an influence on μ_m. The effect of pH and the second-order effect of pH and temperature were significant. A maximum μ_m of 0.078 h~(-1) was estimated under the optimum conditions of pH 5.5, temperature 34.6℃ and S_0/X_0 of 4.3 g/g-VSS. Modeling of microbial growth, substrate consumption and product formation was useful for optimizing the anaerobic hydrogen-producing process.
机译:研究了混合厌氧培养物中蔗糖产氢的动力学,并修改了Gompertz模型以描述产氢微生物的生长,底物的消耗和产物的形成。改进的Gompertz模型可以充分拟合实验结果。使用响应表面方法评估了pH,温度以及初始底物浓度与初始生物质浓度之比(S_0 / X_0)对最大比微生物生长速率(μ_m)的影响。实验结果表明,pH,温度和S_0 / X_0均对μ_m有影响。 pH的影响以及pH和温度的二次影响是显着的。在pH 5.5,温度34.6℃和S_0 / X_0为4.3 g / g-VSS的最佳条件下,估计最大μ_m为0.078 h〜(-1)。微生物生长,底物消耗和产物形成的模型对于优化厌氧制氢过程很有用。

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