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Pilot-scale experiment on thermally hydrolyzed sludge liquor anaerobic digestion using a mesophilic expanded granular sludge bed reactor

机译:中温膨胀式颗粒污泥床反应器热水解污泥液厌氧消化的中试研究

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A pilot process of thermal hydrolysis combined with an expanded granular sludge bed reactor (EGSB) was carried out to evaluate pretreated sludge liquor into biogas conversion, process stability, and energy input/output balance. Approximately 25% of suspended solids of sludge were liquefied into aqueous phase during thermal hydrolysis pretreatment, which resulted in chemical oxygen demand (COD) concentration of 20.0 to 35.0 g/L. A mesophilic EGSB reactor was operated for 206 days treating pretreated liquor. Under an organic loading rate of 11.0 kg COD/(m~3·d) and hydraulic retention time of 60 h, COD conversion efficiency was maintained at 63%. The energy from biogas provided 80% of that demand for heating pretreatment. Dewatered sludge after thermal hydrolysis could be incinerated with municipal solid waste in an industrial-scale incinerator. Total energy production from combined biogas anaerobic digestion and sludge incineration, treating 1.0 kg raw sludge with moisture content of 82%, was 2419 kJ. The energy demand of thermal hydrolysis pretreatment was 340 kJ.
机译:进行了热水解与膨胀的颗粒污泥床反应器(EGSB)结合的中试过程,以评估预处理的污泥液转化为沼气的转化率,过程稳定性以及能量输入/输出平衡。在热水解预处理过程中,大约25%的污泥悬浮固体被液化为水相,这导致化学需氧量(COD)浓度为20.0至35.0 g / L。中温EGSB反应器运行206天以处理预处理液。在有机负荷率为11.0 kg COD /(m〜3·d)和水力停留时间为60 h的情况下,COD转化效率保持在63%。来自沼气的能量满足了加热预处理的80%的需求。热水解后的脱水污泥可以在工业规模的焚化炉中与城市固体废物一起焚化。沼气厌氧消化和污泥焚烧相结合产生的总能量产量为2419 kJ,处理1.0 kg含水量为82%的原污泥。热水解预处理的能量需求为340 kJ。

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