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Co-digestion of glycerine and sewage sludge to optimise green electricity production

机译:甘油和污水污泥的共消化,以优化绿色电力生产

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Sewage sludge and crude glycerine were co-digested in the mesophilic digester of Hoogstraten wastewater treatment plant. Additions of up to 1 kg of crude glycerine/(m reactor).(day) were done without significant operational problems. At higher dosage, severe digester foaming was observed. Methane production during co-digestion was up to 20% higher than what would be expected based on the digester input. Compared to the period before glycerine dosage, every tonne of added crude glycerine resulted in a surplus methane production of 489 Nm. The theoretical methane production from the used crude glycerine was 341 Nm per tonne. The difference is explained by a higher sewage sludge degradability during co-digestion with glycerine. Glycerine dosage can remedy the lowered specific biogas yield of sewage sludge in Flanders and consequently enhance green electricity production.
机译:在Hoogstraten废水处理厂的中温消化池中共同消化污水污泥和粗甘油。每天最多添加1千克粗甘油/(m反应器),而没有明显的操作问题。在较高剂量下,观察到严重的消化器起泡。共消化期间的甲烷产量比根据消化池输入的预期产量高出20%。与添加甘油前的时期相比,每添加一吨粗甘油会产生489 Nm的甲烷过剩。用过的粗甘油的理论甲烷产量为每吨341 Nm。与甘油共消化过程中较高的污泥可降解性可以解释这种差异。甘油的用量可以弥补法兰德斯下水污泥比气产量的降低,从而提高绿色电力的生产。

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