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Effect of polyelectrolyte conditioning on the enhanced dewatering of activated sludge by application of an electric field during the expression phase

机译:在表达阶段通过施加电场,聚电解质调节对活性污泥增强脱水的影响

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Activated sludge is known to be poorly dewaterable due to its high surface charge density and the extreme solids compressibility, even after polyelectrolyte conditioning. The application of an electric field during pressure dewatering (PDW) of sludge can enhance the dewaterability by the electroosmosis effect. A comparative study was conducted to investigate the additional effect of an electric field, applied during the expression phase, on the dewatering course of polyelectrolyte conditioned sludge, compared to mere PDW. It was found that the application of an electric field markedly improved the dewatering kinetics for all sludge samples, regardless of the conditioning treatment. Although the conditioning polyelectrolyte characteristics and dose had a major effect on the PDW of sludge, the conditioning history did not have a significant effect on the electroosmotic water transport efficiency during the sludge expression phase. By means of on-line streaming potential measurements and fractionated filtrate electrophoretic mobility measurements, it could be demonstrated that even at high polyelectrolyte doses, leading to positively charged sludge floes, negative surface charges were still present inside the sludge matrix. During the expression of the sludge cake, when liquid is forced to move through the floc inside pores, these negative surface charges hampered PDW, but enhanced electroosmotic dewatering. Electroosmosis is therefore an appropriate technique to remove the water fraction that is associated with these negative surface charges.
机译:已知活性污泥由于其高的表面电荷密度和极高的固体可压缩性而难​​以脱水,即使在聚电解质条件下也是如此。在污泥的压力脱水(PDW)期间施加电场可以通过电渗效应增强脱水能力。与单纯的PDW相比,进行了一项比较研究,以研究在表达阶段施加的电场对聚电解质条件污泥的脱水过程的附加影响。结果发现,无论采用何种处理方法,施加电场都能显着改善所有污泥样品的脱水动力学。尽管调节聚电解质的特性和剂量对污泥的PDW有很大影响,但调节历史对污泥表达阶段的电渗水传输效率没有显着影响。通过在线流电势测量和分级滤液电泳迁移率测量,可以证明即使在高聚电解质剂量下,导致带正电的污泥絮凝物,污泥基质内部仍存在负表面电荷。在污泥饼的表达过程中,当液体被迫通过毛孔内部的絮凝物流动时,这些负表面电荷会阻碍PDW,但会增强电渗脱水作用。因此,电渗是去除与这些负表面电荷相关的水部分的合适技术。

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