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电脱水处理废水污泥:操作条件的影响及其相互作用效应。

Electro-dewatering of wastewater sludge: influence of the operating conditions and their interactions effects.

机构信息

Laboratoire de Thermique Energétique et Procédés (EAD 1932), ENSGTI, Pau, France.

出版信息

Water Res. 2011 Apr;45(9):2795-810. doi: 10.1016/j.watres.2011.02.029. Epub 2011 Mar 3.

Abstract

Electric field-assisted dewatering, also called electro-dewatering (EDW), is a technology in which a conventional dewatering mechanism such a pressure dewatering is combined with electrokinetic effects to realize an improved liquid/solids separation, to increase the final dry solids content and to accelerate the dewatering process with low energy consumption compared to thermal drying. The application of these additional fields can be applied to either or both dewatering stages (filtration and/or compression), or as a pre-or post-treatment of the dewatering process. In this study, the performance of the EDW on wastewater sludge was investigated. Experiments were carried out on a laboratory filtration/compression cell, provided with electrodes, in order to apply an electrical field. The chosen operating conditions pressure (200-1200 kPa) and voltage (10-50 V) are sufficient to remove a significant proportion of the water that cannot be removed using mechanical dewatering technologies alone. A response surface methodology (RSM) was used to evaluate the effects of the processing parameters of EDW on (i) the final dry solids content, which is a fundamental dewatering parameter and an excellent indicator of the extent of EDW and (ii) the energy consumption calculated for each additional mass of water removed. A two-factor central composite design was used to establish the optimum conditions for the EDW of wastewater sludge. Experiments showed that the use of an electric field combined with mechanical compression requires less than 10 and 25% of the theoretical thermal drying energy for the low and moderate voltages cases, respectively.

摘要

电场辅助脱水,也称为电动脱水(EDW),是一种将传统的脱水机制(如压力脱水)与电动效应相结合的技术,以实现改进的固液分离,提高最终的干固体含量,并与热干燥相比,以低能耗加速脱水过程。这些附加场的应用可以应用于脱水阶段(过滤和/或压缩)的任一个或两个阶段,或者作为脱水过程的预处理或后处理。在这项研究中,研究了 EDW 对废水污泥的性能。在实验室过滤/压缩室中进行了实验,该室配备了电极,以施加电场。选择的操作条件压力(200-1200kPa)和电压(10-50V)足以去除仅使用机械脱水技术无法去除的大量水分。响应面法(RSM)用于评估 EDW 的处理参数对(i)最终干固体含量的影响,这是一个基本的脱水参数,也是 EDW 程度的极好指标,以及(ii)为去除每额外质量的水而计算的能耗的影响。采用两因素中心复合设计确定废水污泥 EDW 的最佳条件。实验表明,对于低电压和中等电压情况,电场与机械压缩的组合使用分别需要不到理论热干燥能量的 10%和 25%。

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