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首页> 外文期刊>E3S Web of Conferences >Application of Modified Gompertz Model to Study on Biogas production from middle temperature co-digestion of pig manure and dead pigs
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Application of Modified Gompertz Model to Study on Biogas production from middle temperature co-digestion of pig manure and dead pigs

机译:改进的Gompertz模型在研究猪粪和死猪中温共消化沼气中的应用

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The dead pig is an organic waste rich in oil and protein, and is an ideal anaerobic digestion raw material. This study based on single factor ANOVA and Modified Gompertz model. It investigated the effects of the ratio of dead pigs on biogas production by middle temperature co-digestion of pig manure and dead pigs. And the biogas production potential was determined. The results showed that there was no significant correlation between the ratio of dead pigs and the biogas production. The ratio would significantly affect the average methane content and degradation rate. When the addition ratio was in the range of 3 to 15%, the biogas production was between 191.39 and 202.44 (L/kg VS). The average contents of methane were 50.67%, 50.35%, 41.83%, 45.53% and 44.57%, respectively. The time required to reach 80% of the biogas production was 28, 34, 36, 65 and 63 days, respectively. The degradation rate of the raw materials was generally decreased with the increase of the addition ratio. The results of Modified Gompertz model fitting showed that the mixed raw materials had a fully anaerobic digestion with high utilization rate and short hysteresis in the range of 0 ~ 9%. Therefore, a hydraulic retention time (HRT) of 30 days and the addition ratio was in the range of 0 to 6% could be recommended for a continuous digester. It could get a better gas production and higher raw material utilization.
机译:死猪是一种富含油脂和蛋白质的有机废物,是理想的厌氧消化原料。本研究基于单因素方差分析和修正的Gompertz模型。通过中温共消化猪粪和死猪,研究了死猪比例对沼气生产的影响。并确定了沼气生产潜力。结果表明,死猪比例与沼气产量之间无显着相关性。该比例将显着影响平均甲烷含量和降解速率。当添加比例在3%至15%的范围内时,沼气产量在191.39至202.44(L / kg V​​S)之间。甲烷的平均含量分别为50.67%,50.35%,41.83%,45.53%和44.57%。达到沼气产量的80%所需的时间分别为28、34、36、65和63天。原料的降解率通常随着添加比例的增加而降低。改进的Gompertz模型拟合结果表明,混合原料完全厌氧消化,利用率高,滞后时间短,范围为0〜9%。因此,对于连续蒸煮器,建议水力停留时间(HRT)为30天,添加比例为0至6%。可以获得更好的天然气产量和更高的原料利用率。

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