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Thermo-oxidative pretreatment of municipal waste activated sludge for volatile sulfur compounds removal and enhanced anaerobic digestion

机译:城市废物活性污泥的热氧化预处理,用于去除挥发性硫化物和增强厌氧消化

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Thermo-oxidative pretreatment of municipal waste activated sludge was conducted using thermal pretreatment at 60°C in presence of 0.6 mg H2O2 +1.5 mg FeCl2/mg S~(2-) as oxidants with the objective of achieving sludge disintegration for enhancing anaerobic digestion as well as to remove volatile sulfur compounds generation potential in biogas in continuous anaerobic digestion. For the pretreated feed digester, the hydrogen sulfide (H2S) and dimethyl sulfide (DMS) concentrations in biogas significantly decreased by an average of 75%, and 40%, respectively, while methanethiol (MT) removal efficiency was statistically insignificant compared to the control digester. Compared to the control, overall TSS and VSS removal efficiency were 10% and 11% higher for the pretreated feed digester operated at 10 days solid residence time (SRT), and methane production rate (LCH4/Day) increased by ~20%.The simulation results using BioWin~R suggest that the thermo-oxidative pretreatment has significantly increased the hydrolysis rate by 30% with higher methane production rate compared to the control digester.
机译:为了实现污泥分解以增强厌氧消化的目的,在60°C下以0.6 mg H2O2 +1.5 mg FeCl2 / mg S〜(2-)作为氧化剂进行热预处理,对市政废物活性污泥进行热氧化预处理。以及在连续厌氧消化中消除沼气中挥发性硫化合物的产生潜力。对于预处理的饲料消化器,沼气中的硫化氢(H2S)和二甲基硫醚(DMS)浓度分别平均显着降低了75%和40%,而与对照组相比,甲烷硫醇(MT)的去除效率在统计学上微不足道。消化器。与对照相比,在10天固体停留时间(SRT)下运行的预处理饲料消化池的总TSS和VSS去除效率分别提高了10%和11%,甲烷生成率(LCH4 /天)增加了约20%。使用BioWin〜R进行的模拟结果表明,与对照蒸煮器相比,热氧化预处理显着提高了30%的水解率,并且甲烷产生率更高。

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