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The feasibility of electro-osmotic belt filter dewatering technology at pilot scale

机译:中试规模的电渗带式过滤机脱水技术的可行性

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Sewage sludge is typically dewatered using drying beds, belt filter presses or centrifuges. Mechanical dewatering of sludge is costly in terms of capital and running costs, especially the flocculent. In an attempt to address the need for more cost-effective dewatering technologies, electro-osmotic belt filtering was developed by Smollen and Kafaar in 1995. The mechanical equipment resembles a belt filter press but the belts are stainless steel, woven belts, which act as the electrodes. In this study, the feasibility of the technology was tested at pilot scale using waste activated-, anaerobically digested- and dissolved air flotation sludge. The parameters which were investigated includes the applied voltage, polyelectrolyte usage and sludge feed rate. Applied voltage of between 15 and 25 volts increased the dewatering significantly in the waste activated- and anaerobically digested sludge. Applying a voltage in dissolved air flotation sludge could not enhance the effciency of dewatering, unless stored to de-air. The technology was found as sensitive to polyelectrolyte dosages as belt presses. The performance of the electro-osmotic belt filter was sensitive to feed rate, but performed well with non-thickened waste activated sludge (0.61percent solids), resulting in cake solids above 20percent.
机译:污水污泥通常使用干燥床,带式压滤机或离心机进行脱水。机械污泥的脱水在资金和运行成本方面特别是在絮凝剂方面是昂贵的。为了满足对更具成本效益的脱水技术的需求,Smollen和Kafaar于1995年开发了电渗滤带。机械设备类似于带式压滤机,但带是不锈钢编织带,其作用是电极。在这项研究中,使用活化,厌氧消化和溶解的气浮污泥在中试规模下测试了该技术的可行性。研究的参数包括施加的电压,聚电解质的用量和污泥的进料速度。 15至25伏之间的施加电压显着提高了活化和厌氧消化的污泥中的脱水程度。在溶解的空气浮选污泥中施加电压不能提高脱水效率,除非将其储存为脱气的。发现该技术与带压机一样对聚电解质剂量敏感。电渗带式过滤器的性能对进料速度敏感,但在未增稠的废活性污泥(固体含量为0.61%)下表现良好,导致滤饼固体含量超过20%。

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