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Enhanced digestion of waste activated sludge using microbial electrolysis cells at ambient temperature

机译:在环境温度下使用微生物电解池增强消化活性污泥的能力

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This study examined the effects of the microbial electrolysis cell (MEC) reactions on anaerobic digestion of waste activated sludge from municipal wastewater treatment under ambient temperature conditions (22-23 degrees C). Two lab-scale digesters, a control anaerobic digester and an electrically-assisted digester (EAD - equipped with a MEC bioanode and cathode) were operated under three solids retention times (SRT = 7, 10 and 14 days) at 22.5 +/- 0.5 degrees C. A numerical model was also built by including the MEC electrode reactions in Anaerobic Digestion Model No.1. In experiments, the EAD showed reduced concentration of acetic acid, propionic acid, n-butyric acid and iso-butyric acid. This improved performance of the EAD is thought to be achieved by direct oxidation of the short-chain fatty acids at the bioanode as well as indirect contribution of low acetic acid concentration to enhancing beta-oxidation. The VSS and COD removal was consistently higher in the EAD by 5-10% compared to the control digester for all SRT conditions at 22.5 +/- 0.5 degrees C. When compared to mathematical model results, this additional COD removal in the EAD was equivalent to that which would be achieved with conventional digesters at mesophilic temperatures. The magnitude of electric current in the EAD was governed by the organic loading rate while conductivity and acetic acid concentration showed negligible effects on current generation. Very high methane content (-95%) in the biogas from both the EAD and control digester implies that the waste activated sludge contained large amounts of lipids and other complex polymeric substances compared to primary sludge. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究检查了微生物电解池(MEC)反应对环境温度条件(22-23摄氏度)下市政废水处理产生的废活性污泥厌氧消化的影响。两个实验室规模的消化池,一个对照厌氧消化池和一个电辅助消化池(EAD-配备了MEC生物阳极和阴极)在三个固体停留时间(SRT = 7、10和14天)下以22.5 +/- 0.5运行还通过将MEC电极反应纳入1号厌氧消化模型来建立数值模型。在实验中,EAD显示乙酸,丙酸,正丁酸和异丁酸的浓度降低。人们认为,通过在生物阳极处短链脂肪酸的直接氧化以及低乙酸浓度对增强β-氧化的间接贡献,可以实现EAD性能的提高。在22.5 +/- 0.5摄氏度下,对于所有SRT条件,EAD中的VSS和COD去除率均比对照蒸煮器高出5-10%。与数学模型结果相比,EAD中的这种额外COD去除率是等效的到常规的消化池在中温温度下所能达到的水平。 EAD中电流的大小受有机负载率控制,而电导率和乙酸浓度对电流产生的影响可忽略不计。 EAD和控制消化器的沼气中甲烷含量很高(-95%),这意味着与初级污泥相比,废活性污泥含有大量的脂质和其他复杂的聚合物质。 (C)2015 Elsevier Ltd.保留所有权利。

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