Abst'/> A comparative study of electro-dewatering process performance for activated and digested wastewater sludge
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A comparative study of electro-dewatering process performance for activated and digested wastewater sludge

机译:活性污泥和消化污泥电脱水工艺性能的比较研究

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AbstractElectro-dewatering (EDW) is an alternative emerging and energy-efficient technology that provides improved liquid/solids separations in the dewatering of wastewater sludge. The EDW technology is not only an innovative dewatering method for significantly reducing the volume of wastewater sludge before re-utilization or disposal, but is also a promising emerging method which may potentially be used for decontamination purposes. In this study, the influence of the sludge properties (e.g. electrical conductivity, zeta potential, specific cake resistance, among others) on their mechanical and electrical behaviour in terms of dewaterability and electro-dewaterability, the applied current (current density from 20 to 80 A/m2), and filter cloth position relative to the electrode was investigated. A two-sided filter press at lab-scale with moving anode was used, and the treatment performance of the EDW process on two different types of wastewater sludge (activated and digested) was thoroughly assessed from both an electrochemical viewpoint and in terms of the dewatering rate. The results showed that the conditioned digested sludge was more easily dewatered by mechanical dewatering (MDW) with 34–35% (w%) of dry solids content compared to 19–20% (w%) for the activated sludge, thanks to the lower content of both the microbial extracellular polymeric substances (EPS) and the volatile suspended solids fraction.For the EDW results, the electrical conductivity of the sludge was pivotal to the dryness of the final solids and therefore also to the dewatering kinetics. The results demonstrated that the activated sludge arrived at an equilibrium much faster (after approximately 3600 s) compared with digested sludge, thanks to its lower electrical conductivity (0.8 mS/cm) providing a greater voltage drop across the cathode and therefore more repulsion of the solids from the cathode leading to continuously high filtrate flowrate. Also the EDW performance was analysed by comparing the ratio of the filtrate volume collected at the anode to the volume collected at the cathode side. For digested sludge at 5 bar, 40 A/m2different positions of the filter cloth were tested but these configurations barely impacted the EDW performance, despite having a significant impact on the energy requirements. At industrial scale, it would be useful to position the filter cloths at some distance from the electrodes, but this study shows that this benefit may be quickly outweighed by the loss in EDW energy efficiency.Graphical abstractDisplay OmittedHighlightsThe EDW performance was analysed for two contrasting wastewater sludge.Activated sludge had a mechanical dewatering resistance 28% higher.The Volume ratio (VAnode/VCathode) is a new performance measure for EDW.EDW has a stronger impact on the activated sludge giving lower volume ratios.The sludge electrical conductivity was the key property affecting EDW kinetics.
机译: 摘要 电脱水(EDW)是一种新兴的节能技术,可在废水污泥脱水中提供改进的液/固分离。 EDW技术不仅是一种创新的脱水方法,可在重新利用或处置之前显着减少废水污泥的体积,而且还是一种很有前途的新兴方法,有可能用于净化目的。在这项研究中,污泥特性(例如电导率,ζ电势,比饼电阻等)对它们的机械和电气性能的影响,包括脱水性和电脱水性,施加的电流(电流密度从20到80) A / m 2 ),并研究滤布相对于电极的位置。使用带有移动阳极的实验室规模的双面压滤机,并且从电化学角度和脱水方面全面评估了EDW工艺对两种不同类型废水污泥(活化和消化)的处理性能。率。结果表明,经过处理的污泥更易于通过机械脱水(MDW)进行脱水,干燥固体含量为34–35%(w%),而活性污泥为19–20%(w%),这是由于较低的微生物细胞外聚合物(EPS)和挥发性悬浮固体部分的含量。 对于EDW结果,电污泥的电导率对最终固体的干燥至关重要,因此对脱水动力学也至关重要。结果表明,与消化后的污泥相比,活性污泥达到平衡要快得多(约3600 s),这归因于其较低的电导率(0.8mS / cm)在阴极上提供了更大的电压降,因此对阴极的排斥力更大来自阴极的固体,导致滤液流量不断提高。通过比较在阳极收集的滤液体积与在阴极侧收集的体积之比来分析EDW性能。对于5 bar的消化污泥,虽然测试了40 A / m 2 滤布的不同位置,但这些配置对EDW性能几乎没有影响,尽管有很大的影响关于能源需求。在工业规模上,将滤布放置在距离电极一定距离的位置很有用,但这项研究表明,EDW能量效率的损失可能很快超过了这种益处。 图形摘要 省略显示 突出显示 < C e:para id =“ p0010” view =“ all”>分析了两种截然不同的废水污泥的EDW性能。 活性污泥的机械脱水阻力提高了28%。 体积比(V 阳极 / V 阴极)是EDW的一项新性能指标。 EDW的影响更大 污泥的电导率是影响EDW动力学的关键特性。

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