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A novel continuous electroflotation cell design for industrial effluent treatment

机译:一种用于工业流出处理的新型连续电絮凝电池设计

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摘要

The performance of a continuous flow electroflotation (EF) unit designed for industrial effluents treatment was investigated. The employment of synthetic wastewater composed of some heavy metal ions (Cr~(3+), Cu~(2+) and Pb~(2+)), soluble dyes (Acid Red 1 and Basic Violet 3), and ultrafine particles (copper metal and copper oxide) was set for studying the cell parameters. The affecting parameters of the EF unit which are current density and type and ionic strength (conductivity) and feed flow rate were studied. The continuous flow EF unit was employed for the treatment of different industrial effluents which was supplied by Textile, Tannery and Wood factories. For synthetic wastewater, the removal efficiency of industrial effluents increased with increasing current density and ionic strength. DC current causes passivation of the anode, thus AC current was preferred. The lower feed flow rate increased the removal efficiency but consumed more power. The removal efficiency was achieved up to 95% at 25 °C, 5 V and an AC current intensity of 1 A with a feed flow rate of 50 ml/min (3 1/h). The energy consumption was 1.67 kWh/m~3. For different industrial effluents, the removal efficiency approached up to 90%, at 25 °C, 5 V and an AC current intensity of about 1 A and a 30 ml/min feed flow rate. The energy consumption was about 3 kWh/ m3. The removal efficiency could be increased up to about 99% by a further cleaning step with total energy consumption of about 6 kWh/m~3.
机译:研究了为工业污水处理设计的连续流电流滤波(EF)单元的性能。由一些重金属离子(Cr〜(3+),Cu〜(2+)和PB〜(2+),可溶性染料(酸红色1和碱性3)和超细颗粒组成的合成废水设定铜金属和氧化铜,用于研究细胞参数。研究了作为电流密度和型和离子强度(电导率)和进料流速的EF单元的影响参数。连续流动EF单元用于处理不同的工业污水,这些工业污水是由纺织,制革和木材工厂供应的。对于合成废水,随着电流密度和离子强度的增加,工业流出物的去除效率增加。直流电流导致阳极钝化,因此优选AC电流。较低的进料流量增加了去除效率,但消耗了更多的功率。将去除效率在25℃,5V和10A的AC电流强度下达到95%,进给流速为50mL / min(31 / h)。能量消耗为1.67千瓦时/ m〜3。对于不同的工业污水,去除效率高达90%,在25℃,5V和AC电流强度为约1a和30ml / min进给流速。能量消耗约为3千瓦时/ m3。通过进一步的清洁步骤,可以将去除效率增加至约99%,其总能量消耗约为6千瓦时/ m〜3。

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