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Electrocoagulation for the removal of phenol and aldehyde contaminants from resin effluent

机译:电凝去除树脂废水中的苯酚和醛类污染物

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This paper is a report on a study which aimed to investigate the effect of different current density, pH, temperature, and cathode-anode combination on the removal of phenol and aldehyde in two samples of actual resin effluent through the process of electrocoagulation using solar energy. Current density 60 A/m2 and pH 6 proved to be the best levels for both contaminants. As for the effect of temperature, although the highest degree of phenol and aldehyde removal was achieved at 15°C, 25°C was taken to be the optimum temperature for economic reasons. The Fe-Fe combination of electrodes was found to be the best as it led to nearly 93% of phenol removal and approximately 95% of aldehyde removal. Also, the effect of electrode combination on energy consumption was studied. It was observed that the Fe-Fe combination consumed the least amount of energy (0.7-4.3 kWh/m~3 of wastewater in the case of phenol and 0.8-4 kWh/m~3 of wastewater in the case aldehyde). Moreover, the Fe-Fe combination brought about the best results in terms of chemical oxygen demand removal: 93% in both cases. Finally, an economic analysis was performed for the electrocoagulation process.
机译:本文是一项研究报告,旨在研究不同的电流密度,pH,温度和阴极-阳极组合对通过太阳能电凝过程中的两种实际树脂废水样品中苯酚和醛的去除效果。电流密度60 A / m2和pH 6被证明是两种污染物的最佳水平。关于温度的影响,尽管在15℃下获得最高程度的苯酚和醛去除,但是出于经济原因,将25℃作为最佳温度。发现电极的Fe-Fe组合是最好的,因为它可导致近93%的苯酚去除和约95%的醛去除。此外,还研究了电极组合对能量消耗的影响。观察到Fe-Fe组合消耗的能量最少(苯酚为0.7-4.3 kWh / m〜3,醛为0.8-4 kWh / m〜3)。而且,Fe-Fe组合在去除化学需氧量方面带来了最佳结果:在两种情况下均为93%。最后,对电凝过程进行了经济分析。

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