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Reducing the environmental footprint of wastewater screenings through anaerobic digestion with resource recovery

机译:通过厌氧消化和资源回收来减少废水筛选的环境足迹

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Screenings produced as the first stage of wastewater treatment and currently disposed of to landfill, are rich in volatile organic solids, nitrogen and phosphorus which could be recovered through anaerobic digestion. Biochemical methane potential (BMP) tests on screenings demonstrated a methane yield of 0.33 m~3 methane/kg volatile solids (VS) and a VS destruction of 503%. Consequently, the effect of a range of hydraulic retention time (HRT) and organic loading rates (OLRs) was evaluated in lab-scale continuously fed mesophilic digesters. The highest methane yield of 0.416 Nm~3 methane/kg VS added was observed with an HRT of 15 days and an OLR of 2.5 kg VS/m~3/day, when up to 65% of the VS were destroyed. If treated by anaerobic digestion, every dry tonne of screenings digested would divert 466 kg from landfill, save 4.6 tonne equivalent carbon dioxide (CO_(2 eq)) and deliver 3.4 MWh of renewable energy.
机译:作为废水处理第一阶段生产的滤网,目前已运至垃圾填埋场,其滤网中富含挥发性有机固体,氮和磷,可通过厌氧消化将其回收。筛选的生化甲烷潜力(BMP)测试表明,甲烷产量为0.33 m〜3甲烷/ kg挥发性固体(VS),VS破坏率为503%。因此,在实验室规模的连续进料中温消化池中评估了一定范围的水力停留时间(HRT)和有机负荷率(OLR)的影响。观察到最高的甲烷产量为0.416 Nm〜3甲烷/ kg V​​S,HRT为15天,OLR为2.5 kg V​​S / m〜3 / day,这时高达65%的VS被破坏。如果通过厌氧消化处理,每干燥一吨筛选的筛分物将转移466千克垃圾填埋场,节省4.6吨当量的二氧化碳(CO_(2 eq)),并提供3.4 MWh的可再生能源。

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