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Dewatering and disinfection of aerobic and anaerobic sludge using an electrokinetic (EK) system

机译:使用电动(EK)系统对好氧和厌氧污泥进行脱水和消毒

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The objectives of the study were to upgrade sewage sludge to Class A Exceptional Quality biosolids (as defined by US EPA) using an electrokinetics dewatering system. The pathogens monitored were Salmonella spp, and fecal coliforms (FC). Ten bench-scale electrokinetic cells were set up for the disinfection of the following sludges: primary, secondary ( attached growth culture and suspended culture), and anaerobically digested sludge. A conditioning liquid was also added to five cells. Blower system to aid in dewatering and drying was used in in four EK cells. Sludge characteristics such as water content, volatile solids content, sulfate and chloride ions concentrations, FC and Salmonella spp. before and after the tests were monitored. The highest total solids content (98% TS) was achieved in the cell with the low voltage gradient, in the presence of the conditioner and with the blower system. An average reduction by 50% of volatile solids was observed. The highest, 11 log-reduction of Salmonella spp. was observed in a cell with anaerobically digested sludge. No fecal coliforms were observed in any of the cells after EK treatment.
机译:该研究的目的是使用电动脱水系统将污水污泥升级为A级质量卓越的生物固体(由US EPA定义)。监测的病原体为沙门氏菌和粪大肠菌群(FC)。设置了十个台式规模的电动细胞,用于以下污泥的消毒:一次,二次(附着生长培养和悬浮培养)和厌氧消化的污泥。也将调节液添加到五个电池中。在四个EK单元中使用了有助于脱水和干燥的鼓风机系统。污泥特性,例如水含量,挥发性固体含量,硫酸根和氯离子浓度,FC和沙门氏菌。在测试之前和之后进行监视。在存在调节剂和鼓风机系统的情况下,采用低电压梯度的电解槽中实现了最高的总固体含量(98%TS)。观察到平均减少了50%的挥发性固体。最高,沙门氏菌减少了11个对数。在厌氧消化污泥的细胞中观察到。 EK处理后在任何细胞中均未观察到粪便大肠菌。

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