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Improving biogas yields using an innovative concept for conversion of the fiber fraction of manure

机译:使用创新理念转化粪肥纤维部分,提高沼气产量

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The potential of a new concept to enable economically feasible operation of manure-based biogas plants was investigated at laboratory scale. Wet explosion (WEx) was applied to the residual manure fibers separated after the anaerobic digestion process for enhancing the biogas yield before reintroducing the fiber fraction into the biogas reactor. The increase in methane yield of the digested manure fibers was investigated by applying the WEx treatment under five different process conditions. The WEx treatment at 180°C and a treatment time of 10 min without addition of oxygen was found to be optimal, resulting in 136% increase in methane yield compared with the untreated digested manure fibers in batch experiments. In a continuous mesophilic reactor process the addition of WEx-treated digested fibers in co-digestion with filtered manure did not show any signs of process inhibition, and the overall methane yield was on average 75% higher than in a control reactor with addition of non-treated digested fibers.
机译:在实验室规模上研究了一种新概念的潜力,以使以粪便为基础的沼气厂在经济上可行。在厌氧消化过程之后,将湿式爆炸(WEx)应用于分离的残留粪肥纤维,以提高沼气产量,然后再将纤维馏分重新引入沼气反应器。通过在五种不同的工艺条件下进行WEx处理,研究了消化的粪肥纤维甲烷产量的增加。发现在180°C的WEx处理和10分钟的不添加氧气的处理时间是最佳的,与批处理实验中未处理的消化粪肥纤维相比,甲烷的收率提高了136%。在连续的中温反应器工艺中,与过滤后的粪便共同消化添加经WEx处理的消化纤维,未显示任何抑制工艺的迹象,并且与不添加氮氧化物的对照反应器相比,总甲烷产量平均高出75%。处理的消化纤维。

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