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Process performance and methane production optimizing of anaerobic co-digestion of swine manure and corn straw

机译:猪粪和玉米秸秆厌氧共消化的工艺性能和甲烷生产优化

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摘要

During anaerobic digestion (AD) process, process parameters e.g., VFA, pH, COD removal … and kinetic parameters e.g., hydrolysis rate, lag phase and methane production potential… are the important indicator for illustrating AD process performance, however, the AD process performance based on these parameters remains poorly understood. To estimate process performance focusing on initial pH and substrate composition, the effects of initial pH and swine manure to corn straw ratio on biogas production and these parameters and linkages of these parameters were analyzed. Also, the methane production was optimized. The results revealed that the maximum methane yield and methane production rate were obtained with initial pH 7.5 and SM/CS ratio of 70:30. Kinetic parameters are coupled with process parameters, especially for COD removal rate, VS degradation rate, VFA and pH. Hydrolysis constant positively correlated with pH, COD removal rate and VS degradation rate, then impacted methane production and lag phase. Meanwhile, lag phase and the maximum methane production rate were directly determined by VFA and COD removal rate. The optimum initial pH and SM/CS ratio were 7.15 and 0.62, respectively, with a predicted maximum methane content of 55.12%. Thinking these findings together, they provide a scientific theory for estimating AD performance.
机译:在厌氧消化(AD)过程中,过程参数(例如VFA,pH,COD去除...)和动力学参数(例如水解速率,滞后相和甲烷生成潜能...)是说明AD过程性能的重要指标,但是,AD过程性能基于这些参数仍然知之甚少。为了评估着重于初始pH和底物成分的工艺性能,分析了初始pH和猪粪与玉米秸秆的比例对沼气产量以及这些参数以及这些参数之间的联系的影响。同样,甲烷的生产也得到了优化。结果表明,在初始pH 7.5和SM / CS比为70:30的条件下,可获得最大的甲烷产率和甲烷产率。动力学参数与工艺参数结合在一起,尤其是关于COD去除率,VS降解率,VFA和pH的参数。水解常数与pH,COD去除率和VS降解率成正相关,进而影响甲烷的产生和滞后阶段。同时,通过VFA和COD去除率直接确定滞后阶段和最大甲烷生成率。最佳初始pH和SM / CS比分别为7.15和0.62,预计最大甲烷含量为55.12%。一起考虑这些发现,它们提供了评估AD性能的科学理论。

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