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Sludge disinfection using electrical thermal treatment: The role of ohmic heating

机译:使用电热处理的污泥消毒:欧姆加热的作用

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摘要

Electrical heating has been proposed as a potential method for pathogen inactivation in human waste sludge, especially in decentralized wastewater treatment systems. In this study, we investigated the heat production and E. coli inactivation in wastewater sludge using electrical thermal treatment. Various concentrations of NaCl and NH4Cl were tested as electrolyte to enhance conductivity in sludge mixtures. At same voltage input (18 V), sludge treated with direct current (DC) exhibited slower ascent of temperature and lower energy efficiencies for heat production comparing to that using alternate current (AC). However, DC power showed better performance in E. coli inactivation due to electrochemical inactivation in addition to thermal inactivation. Greater than 6log10 removal of E. coli was demonstrated within 2 h using 0.15 M of NaCl as electrolyte by AC or DC power. The heat production in sludge was modeled using Maxwell–Eucken and effective medium theory based on the effective electrical conductivity in the two-phase (liquid and solid) sludge mixtures. The results showed that the water and heat loss is a critical consideration in modeling of sludge temperature using ohmic heating. The experimental data also suggested that the models are less applicable to DC power because the electrochemical reactions triggered by DC reduce the concentration of NH4+ and other ions that serve as electrolyte. The results of this study contribute to the development of engineering strategies for human waste sludge management.
机译:已经提出电加热作为人类废物污泥中病原体灭活的潜在方法,尤其是在分散式废水处理系统中。在这项研究中,我们调查了采用电热处理的废水污泥中的热量产生和大肠杆菌的灭活。测试了各种浓度的NaCl和NH4Cl作为电解质,以增强污泥混合物中的电导率。在相同电压输入(18 V)下,与使用交流电(AC)相比,用直流电(DC)处理的污泥显示出温度上升较慢,并且产生热量的能源效率较低。但是,除了热灭活外,由于电化学灭活,直流电在大肠杆菌灭活中也表现出更好的性能。交流电或直流电使用0.15M的氯化钠作为电解质,在2小时内证明了大于6log10的大肠杆菌去除率。基于两相(液体和固体)污泥混合物的有效电导率,使用Maxwell-Eucken和有效介质理论对污泥中的热量进行建模。结果表明,水和热损失是使用欧姆加热对污泥温度进行建模的关键考虑因素。实验数据还表明,该模型不适用于直流电源,因为由直流触发的电化学反应会降低NH4 + 和其他用作电解质的离子的浓度。这项研究的结果有助于发展人类废物污泥管理的工程策略。

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