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Comparison of performance of continuous-flow and batch electrocoagulators: A case study for eliminating reactive blue 21 using iron electrodes

机译:连续流式和间歇式电凝器性能的比较:以铁电极消除活性蓝21的案例研究

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摘要

A batch electrocoagulator was developed for optimal removal of reactive blue 21 from wastewater. The data from the batch reactor were then used to develop a continuous-flow reactor with similar performance for reduction of chemical oxygen demand (COD) and color removal. In the 1.8-L batch system, COD removal of 90% and color removal of 95% were achieved using a current density of 30 A/m(2), electrode area of 0.10 m(2), and electrocoagulation time of 7 min. The continuous-flow electrocoagulator consisted of two hollow iron tubes put together in a concentric configuration with a working volume of 1.5 L and an effective electrode area of 0.15 m(2). By keeping the current density and the applied electric charge the same in both the batch and the continuous-flow systems, the COD and color removals and energy consumption of both systems were the same within 10%. However, the color and COD removals by the batch reactor were higher than those of the continuous-flow electrocoagulator because the distribution of electroactive species in the batch reactor was more effective than that in the tube-in-tube electrocoagulator. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了一种间歇式电凝器,用于最佳地去除废水中的活性蓝21。然后,将间歇式反应器的数据用于开发具有类似性能的连续流反应器,以减少化学需氧量(COD)和脱色。在1.8 L批处理系统中,使用30 A / m(2)的电流密度,0.10 m(2)的电极面积和7分钟的电凝时间可实现90%的COD去除和95%的颜色去除。连续流动电凝器由两个空心铁管组成,两个空心铁管以同心圆形状组合在一起,工作容积为1.5 L,有效电极面积为0.15 m(2)。通过在批处理和连续流系统中保持电流密度和施加的电荷相同,两个系统的COD和脱色率以及能耗均在10%以内。但是,由于间歇式反应器中电活性物质的分布比管内式电凝器更有效,因此间歇式反应器的色度和COD去除率高于连续流电凝器。 (C)2015 Elsevier B.V.保留所有权利。

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