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Methane Production in a 100-L Upflow Bioreactor by Anaerobic Digestion of Farm Waste

机译:通过Anaerobic消化农场废物100L溢流生物反应器中的甲烷生产

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Manure waste from dairy farms has been used for methane production for decades, however, problems such as digester failure are routine. The problem has been investigated in small scale (1-2 L) digesters in the laboratory; however, very little scale-up to intermediate scales are available. We report production of methane in a 100-L digester and the results of an investigation into the effect of partial mixing induced by gas upflow/recirculation in the digester. The digester was operated for a period of about 70 d (with 16-d hydraulic retention time) with and without the mixing induced by gas recirculation through an internal draft tube. The results show a clear effect of mixing on digester operation. Without any mixing, the digester performance deteriorated within 30-50 d, whereas with mixing continuous production of methane was observed. This study demonstrates the importance of mixing and its critical role in design of large scale anaerobic digesters.
机译:乳制品农场的粪便废物已经用于甲烷的生产数十年,然而,蒸煮器失败等问题是常规的。在实验室中的小规模(1-2L)消化器中已经调查了问题;但是,可以获得对中间尺度的缩放非常小。我们将甲烷的生产在100升蒸煮器中报告甲烷的产量和调查蒸煮器中气体上流/再循环诱导的部分混合效果的结果。蒸煮器在约70d(具有16-D液压保留时间)的时段,随着气体再循环通过内径管,而不通过气体再循环引起的混合。结果表明,在蒸煮器操作中混合的明显效果。没有任何混合,蒸煮性能在30-50℃内劣化,而观察到甲烷的混合连续产生。本研究表明混合的重要性及其在大规模厌氧消化器设计中的重要作用。

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